Jean-Marie MUNARON

Isotopes Stables / Elements Traces (Accessoirement Secretaire de F. Le Loc'h)

Ingénieur d'Études
IRD Ouest

Affectation

Laboratoire LEMAR

Discovery

Contact

355235 ACL munaron 1 apa 50 date desc 1 Munaron, J.-M. 185440 https://www-iuem.univ-brest.fr/lemar/wp-content/plugins/zotpress/
%7B%22status%22%3A%22success%22%2C%22updateneeded%22%3Afalse%2C%22instance%22%3Afalse%2C%22meta%22%3A%7B%22request_last%22%3A0%2C%22request_next%22%3A0%2C%22used_cache%22%3Atrue%7D%2C%22data%22%3A%5B%7B%22key%22%3A%22K8JP8IXR%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Le%20Croizier%20et%20al.%22%2C%22parsedDate%22%3A%222024-12-01%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELe%20Croizier%2C%20G.%2C%20Hoyos-Padilla%2C%20M.%2C%20Amezcua-Martinez%2C%20F.%2C%20Aquino-Baleyto%2C%20M.%2C%20Le%20Grand%2C%20F.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Mathieu-Resuge%2C%20M.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Ory%2C%20A.%2C%20Sardenne%2C%20F.%2C%20Schaal%2C%20G.%2C%20%26amp%3B%20Lorrain%2C%20A.%20%282024%29.%20Can%20biochemical%20tracers%20reveal%20ontogenetic%20trophic%20shift%20and%20individual%20prey%20selection%20in%20white%20sharks%20from%20Guadalupe%20Island%2C%20Northeast%20Pacific%3F%20%3Ci%3EENVIRONMENTAL%20RESEARCH%3C%5C%2Fi%3E%2C%20%3Ci%3E262%3C%5C%2Fi%3E%2C%20119507.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.envres.2024.119507%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.envres.2024.119507%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DK8JP8IXR%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Can%20biochemical%20tracers%20reveal%20ontogenetic%20trophic%20shift%20and%20individual%20prey%20selection%20in%20white%20sharks%20from%20Guadalupe%20Island%2C%20Northeast%20Pacific%3F%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gael%22%2C%22lastName%22%3A%22Le%20Croizier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mauricio%22%2C%22lastName%22%3A%22Hoyos-Padilla%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Felipe%22%2C%22lastName%22%3A%22Amezcua-Martinez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Marc%22%2C%22lastName%22%3A%22Aquino-Baleyto%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fabienne%22%2C%22lastName%22%3A%22Le%20Grand%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Margaux%22%2C%22lastName%22%3A%22Mathieu-Resuge%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Arthur%22%2C%22lastName%22%3A%22Ory%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fany%22%2C%22lastName%22%3A%22Sardenne%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gauthier%22%2C%22lastName%22%3A%22Schaal%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%5D%2C%22abstractNote%22%3A%22Refining%20the%20role%20of%20apex%20predators%20in%20marine%20food%20webs%20is%20a%20necessary%20step%20in%20predicting%20the%20consequences%20of%20their%20global%20decline%20under%20the%20footprint%20of%20fishing%20activities.%20White%20sharks%20%28%20Carcharodon%20carcharias%29%20%29%20are%20vulnerable%20predators%2C%20performing%20large%20migrations%20and%20able%20to%20forage%20on%20a%20variety%20of%20prey%20in%20different%20habitats.%20In%20the%20Northeast%20Pacific%2C%20juvenile%20and%20adult%20white%20sharks%20are%20found%20seasonally%20at%20the%20same%20aggregation%20sites%2C%20such%20as%20Guadalupe%20Island%20off%20Mexico.%20While%20adults%20are%20thought%20to%20target%20local%20pinniped%20colonies%2C%20very%20few%20predator-prey%20interactions%20have%20been%20documented%20and%20the%20diet%20of%20juveniles%20in%20this%20area%20remains%20poorly%20understood.%20Here%20we%20used%20carbon%5C%2Fnitrogen%20stable%20isotopes%20and%20fatty%20acids%20to%20characterize%20the%20trophic%20ecology%20of%20white%20sharks%20at%20Guadalupe%20Island.%20In%20contrast%20to%20the%20ontogenetic%20trophic%20shift%20paradigm%2C%20we%20detected%20no%20influence%20of%20size%20on%20muscle%20stable%20isotope%20and%20fatty%20acid%20composition%2C%20revealing%20no%20significant%20dietary%20variation%20between%20juvenile%20and%20adult%20sharks.%20Stable%20isotopes%20did%20not%20allow%20definitive%20conclusions%20to%20be%20drawn%20regarding%20the%20diet%20of%20white%20sharks%20at%20Guadalupe%20Island%2C%20due%20to%20significant%20variability%20in%20the%20contribution%20of%20different%20potential%20prey%20depending%20on%20the%20trophic%20discrimination%20factors%20used.%20However%2C%20most%20sharks%20were%20rich%20in%20polyunsaturated%20fatty%20acids%20%28such%20as%20long-chain%20omega%203%29%2C%20suggesting%20a%20local%20diet%20of%20mainly%20pelagic%20prey%20%28potentially%20large%20fish%20or%20cephalopods%29.%20A%20few%20individuals%20appeared%20to%20show%20recent%20consumption%20of%20pinnipeds%2C%20with%20higher%20proportions%20of%20saturated%20and%20monounsaturated%20fatty%20acids.%20These%20individual%20differences%20in%20fatty%20acid%20composition%20could%20reflect%20an%20ecological%20trade-off%20between%20consumption%20of%20prey%20rich%20in%20fat%20%28marine%20mammals%29%20versus%20prey%20rich%20in%20polyunsaturated%20fatty%20acids%20%28pelagic%20prey%29%2C%20respectively%20meeting%20the%20energetic%20and%20physiological%20needs%20of%20white%20sharks.%20Although%20ontogenetic%20trophic%20changes%20were%20not%20able%20to%20be%20discerned%2C%20our%20results%20provide%20new%20insights%20into%20the%20physiological%20drivers%20of%20predator-prey%20interactions%2C%20which%20can%20benefit%20the%20definition%20of%20conservation%20strategies%20in%20a%20changing%20ocean.%22%2C%22date%22%3A%22DEC%201%202024%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.envres.2024.119507%22%2C%22ISSN%22%3A%220013-9351%2C%201096-0953%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001334220400001%22%2C%22collections%22%3A%5B%227BD5VS8S%22%2C%22MXS8HMWQ%22%5D%2C%22dateModified%22%3A%222024-10-25T11%3A43%3A31Z%22%7D%7D%2C%7B%22key%22%3A%22NYT8HN96%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Medieu%20et%20al.%22%2C%22parsedDate%22%3A%222024-02-21%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EMedieu%2C%20A.%2C%20Point%2C%20D.%2C%20Sonke%2C%20J.%20E.%2C%20Angot%2C%20H.%2C%20Allain%2C%20V.%2C%20Bodin%2C%20N.%2C%20Adams%2C%20D.%20H.%2C%20Bignert%2C%20A.%2C%20Streets%2C%20D.%20G.%2C%20Buchanan%2C%20P.%20B.%2C%20Heimbuerger-Boavida%2C%20L.-E.%2C%20Pethybridge%2C%20H.%2C%20Gillikin%2C%20D.%20P.%2C%20Menard%2C%20F.%2C%20Choy%2C%20C.%20A.%2C%20Itai%2C%20T.%2C%20Bustamante%2C%20P.%2C%20Dhurmeea%2C%20Z.%2C%20Ferriss%2C%20B.%20E.%2C%20%26%23x2026%3B%20Lorrain%2C%20A.%20%282024%29.%20Stable%20Tuna%20Mercury%20Concentrations%20since%201971%20Illustrate%20Marine%20Inertia%20and%20the%20Need%20for%20Strong%20Emission%20Reductions%20under%20the%20Minamata%20Convention.%20%3Ci%3EENVIRONMENTAL%20SCIENCE%20%26amp%3B%20TECHNOLOGY%20LETTERS%3C%5C%2Fi%3E.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1021%5C%2Facs.estlett.3c00949%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1021%5C%2Facs.estlett.3c00949%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DNYT8HN96%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Stable%20Tuna%20Mercury%20Concentrations%20since%201971%20Illustrate%20Marine%20Inertia%20and%20the%20Need%20for%20Strong%20Emission%20Reductions%20under%20the%20Minamata%20Convention%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anais%22%2C%22lastName%22%3A%22Medieu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Point%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jeroen%20E.%22%2C%22lastName%22%3A%22Sonke%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Helene%22%2C%22lastName%22%3A%22Angot%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valerie%22%2C%22lastName%22%3A%22Allain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nathalie%22%2C%22lastName%22%3A%22Bodin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Douglas%20H.%22%2C%22lastName%22%3A%22Adams%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anders%22%2C%22lastName%22%3A%22Bignert%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%20G.%22%2C%22lastName%22%3A%22Streets%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Pearse%20B.%22%2C%22lastName%22%3A%22Buchanan%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Lars-Eric%22%2C%22lastName%22%3A%22Heimbuerger-Boavida%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Heidi%22%2C%22lastName%22%3A%22Pethybridge%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%20P.%22%2C%22lastName%22%3A%22Gillikin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Menard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22C.%20Anela%22%2C%22lastName%22%3A%22Choy%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Takaaki%22%2C%22lastName%22%3A%22Itai%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Paco%22%2C%22lastName%22%3A%22Bustamante%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Zahirah%22%2C%22lastName%22%3A%22Dhurmeea%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Bridget%20E.%22%2C%22lastName%22%3A%22Ferriss%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Bernard%22%2C%22lastName%22%3A%22Bourles%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jeremie%22%2C%22lastName%22%3A%22Habasque%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anouk%22%2C%22lastName%22%3A%22Verheyden%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Laure%22%2C%22lastName%22%3A%22Laffont%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Olivier%22%2C%22lastName%22%3A%22Gauthier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%5D%2C%22abstractNote%22%3A%22Humans%20are%20exposed%20to%20toxic%20methylmercury%20mainly%20by%20consuming%20marine%20fish.%20While%20reducing%20mercury%20emissions%20and%20releases%20aims%20to%20protect%20human%20health%2C%20it%20is%20unclear%20how%20this%20affects%20methylmercury%20concentrations%20in%20seawater%20and%20marine%20biota.%20We%20compiled%20existing%20and%20newly%20acquired%20mercury%20concentrations%20in%20tropical%20tunas%20from%20the%20global%20ocean%20to%20explore%20multidecadal%20mercury%20variability%20between%201971%20and%202022.%20We%20show%20the%20strong%20inter-annual%20variability%20of%20tuna%20mercury%20concentrations%20at%20the%20global%20scale%2C%20after%20correcting%20for%20bioaccumulation%20effects.%20We%20found%20increasing%20mercury%20concentrations%20in%20skipjack%20in%20the%20late%201990s%20in%20the%20northwestern%20Pacific%2C%20likely%20resulting%20from%20concomitant%20increasing%20Asian%20mercury%20emissions.%20Elsewhere%2C%20stable%20long-term%20trends%20of%20tuna%20mercury%20concentrations%20contrast%20with%20an%20overall%20decline%20in%20global%20anthropogenic%20mercury%20emissions%20and%20deposition%20since%20the%201970s.%20Modeling%20suggests%20that%20this%20limited%20response%20observed%20in%20tunas%20likely%20reflects%20the%20inertia%20of%20surface%20ocean%20mercury%20with%20respect%20to%20declining%20emissions%2C%20as%20it%20is%20supplied%20by%20legacy%20mercury%20that%20accumulated%20in%20the%20subsurface%20ocean%20over%20centuries.%20To%20achieve%20measurable%20declines%20in%20mercury%20concentrations%20in%20highly%20consumed%20pelagic%20fish%20in%20the%20near%20future%2C%20aggressive%20emission%20reductions%20and%20long-term%20and%20continuous%20mercury%20monitoring%20in%20marine%20biota%20are%20needed.%22%2C%22date%22%3A%222024%20FEB%2021%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1021%5C%2Facs.estlett.3c00949%22%2C%22ISSN%22%3A%222328-8930%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001173980800001%22%2C%22collections%22%3A%5B%2222KMVUMD%22%2C%22MXS8HMWQ%22%5D%2C%22dateModified%22%3A%222024-03-29T11%3A46%3A48Z%22%7D%7D%2C%7B%22key%22%3A%223VQRCTVT%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Charles%20et%20al.%22%2C%22parsedDate%22%3A%222024-02%22%2C%22numChildren%22%3A1%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ECharles%2C%20F.%2C%20Labrune%2C%20C.%2C%20Lantoine%2C%20F.%2C%20Lescure%2C%20L.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Amouroux%2C%20J.-M.%2C%20Labatut%2C%20P.%2C%20%26amp%3B%20Le%20Loc%26%23x2019%3Bh%2C%20F.%20%282024%29.%20Seasonal%20stratification%20leads%20to%20changes%20within%20the%20benthic%20food%20web%20of%20the%20Gulf%20of%20Lions%20%28northwestern%20Mediterranean%29.%20%3Ci%3EREGIONAL%20STUDIES%20IN%20MARINE%20SCIENCE%3C%5C%2Fi%3E%2C%20%3Ci%3E70%3C%5C%2Fi%3E%2C%20103359.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.rsma.2023.103359%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.rsma.2023.103359%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D3VQRCTVT%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Seasonal%20stratification%20leads%20to%20changes%20within%20the%20benthic%20food%20web%20of%20the%20Gulf%20of%20Lions%20%28northwestern%20Mediterranean%29%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Charles%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Celine%22%2C%22lastName%22%3A%22Labrune%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Lantoine%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Lyvia%22%2C%22lastName%22%3A%22Lescure%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Michel%22%2C%22lastName%22%3A%22Amouroux%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Paul%22%2C%22lastName%22%3A%22Labatut%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%5D%2C%22abstractNote%22%3A%22Due%20to%20its%20extensive%20continental%20shelf%2C%20the%20Gulf%20of%20Lions%2C%20situated%20in%20the%20northwestern%20Mediterranean%20Sea%2C%20plays%20a%20crucial%20role%20in%20providing%20ecological%20services%20amidst%20various%20natural%20and%20anthropogenic%20pressures.%20Exposed%20to%20the%20impacts%20of%20climate%20change%20and%20suitable%20for%20marine%20energy%20development%20projects%2C%20the%20conservation%20of%20marine%20biodiversity%20in%20this%20environment%20raises%20significant%20concerns.%20To%20detect%20any%20potential%20disturbances%20in%20the%20functioning%20of%20the%20terrigenous%20mud%20community%20on%20the%20continental%20shelf%2C%20we%20conducted%20stable%20carbon%20and%20nitrogen%20isotope%20analyses%20on%20suspended%20particulate%20organic%20matter%2C%20sediments%2C%20and%20benthic%20fauna.%20Since%20seasonality%20is%20a%20structuring%20factor%20for%20the%20functioning%20of%20such%20an%20oligotrophic%20ecosystem%2C%20we%20conducted%20two%20sampling%20campaigns%20in%202018%20to%20capture%20contrasting%20scenarios%20of%20water%20column%20stratification%20-%20one%20in%20April%20during%20well%20-mixed%20conditions%20and%20high%20phytoplankton%20production%2C%20and%20another%20in%20September%20at%20the%20end%20of%20the%20summer%20thermal%20stratification%20period%20characterized%20by%20low%20primary%20productivity.%20Stable%20isotope%20analysis%20revealed%20changes%20in%20the%20structure%20of%20the%20benthic%20food%20web%20in%20response%20to%20seasonal%20stratification%20of%20the%20water%20column.%20While%20isotopic%20niches%20of%20taxa%20remained%20evenly%20distributed%2C%20the%20total%20niche%20space%20contracted%20between%20sampling%20dates%2C%20primarily%20affecting%20low%20trophic%20level%20consumers.%20The%20observed%20contraction%20aligns%20with%20that%20reported%20at%20the%20base%20of%20the%20pelagic%20food%20web.%20These%20results%20enhance%20our%20understanding%20of%20the%20functioning%20of%20the%20continental%20shelf%20of%20the%20Gulf%20of%20Lions.%20The%20intense%20trawling%20pressure%20on%20the%20study%20site%20affected%20sampling.%20In%20this%20context%2C%20this%20research%20contributes%20not%20only%20to%20the%20knowledge%20of%20seasonal%20trophic%20variations%20but%20also%20provides%20a%20reference%20state%20to%20understand%20the%20future%20of%20this%20Mediterranean%20continental%20shelf.%22%2C%22date%22%3A%22FEB%202024%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.rsma.2023.103359%22%2C%22ISSN%22%3A%222352-4855%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001154739500001%22%2C%22collections%22%3A%5B%22MXS8HMWQ%22%5D%2C%22dateModified%22%3A%222024-02-16T12%3A48%3A57Z%22%7D%7D%2C%7B%22key%22%3A%22I4FQRQFW%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Sardenne%20et%20al.%22%2C%22parsedDate%22%3A%222024-02%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ESardenne%2C%20F.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Bodin%2C%20N.%2C%20Mve-Beh%2C%20J.-H.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Mbega%2C%20J.-D.%2C%20Nzigou%2C%20A.%20R.%2C%20Sadio%2C%20O.%2C%20Budzinski%2C%20H.%2C%20%26amp%3B%20Leboulanger%2C%20C.%20%282024%29.%20Persistent%20organic%20pollutants%20and%20trace%20metals%20in%20selected%20marine%20organisms%20from%20the%20Akanda%20National%20Park%2C%20Gabon%20%28Central%20Africa%29.%20%3Ci%3EMARINE%20POLLUTION%20BULLETIN%3C%5C%2Fi%3E%2C%20%3Ci%3E199%3C%5C%2Fi%3E%2C%20116009.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2023.116009%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2023.116009%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DI4FQRQFW%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Persistent%20organic%20pollutants%20and%20trace%20metals%20in%20selected%20marine%20organisms%20from%20the%20Akanda%20National%20Park%2C%20Gabon%20%28Central%20Africa%29%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fany%22%2C%22lastName%22%3A%22Sardenne%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nathalie%22%2C%22lastName%22%3A%22Bodin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Herve%22%2C%22lastName%22%3A%22Mve-Beh%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Daniel%22%2C%22lastName%22%3A%22Mbega%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aime%20Roger%22%2C%22lastName%22%3A%22Nzigou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Oumar%22%2C%22lastName%22%3A%22Sadio%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Helene%22%2C%22lastName%22%3A%22Budzinski%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Christophe%22%2C%22lastName%22%3A%22Leboulanger%22%7D%5D%2C%22abstractNote%22%3A%22Akanda%20National%20Park%20%28ANP%29%20is%20composed%20of%20mangrove%20ecosystems%20bordering%20Libreville%2C%20Gabon%27s%20capital.%20The%20contamination%20of%20aquatic%20resources%20from%20the%20ANP%20by%20persistent%20organic%20pollutants%20%28POPs%29%20and%20trace%20metals%20%28TMs%29%20was%20never%20evaluated.%20To%20provide%20a%20basis%20for%20their%20monitoring%20in%20the%20ANP%2C%20five%20species%20%28two%20fish%2C%20two%20mollusks%2C%20and%20one%20crustacean%29%20were%20analyzed%20from%20three%20sampling%20sites%20in%202017.%20Contamination%20levels%20for%20POPs%20and%20TMs%20were%20below%20maximum%20acceptable%20limits%20for%20seafood%2C%20including%20Cd%20and%20Pb.%20No%20DDT%20was%20found%20in%20any%20sample.%20Inter-specific%20differences%20were%20more%20obvious%20than%20the%20differences%20among%20sites%2C%20although%20the%20results%20may%20be%20biased%20by%20an%20unbalanced%20sampling%20design.%20The%20oyster%20Crassostrea%20gasar%20was%20the%20most%20contaminated%20species%2C%20making%20this%20species%20a%20good%20candidate%20to%20assess%20environmental%20contamination%20in%20the%20area.%20The%20studied%20species%20also%20contained%20essential%20elements%2C%20such%20as%20Fe%2C%20Zn%20and%20Mn%20at%20interesting%20levels%20in%20a%20nutritional%20point%20of%20view.%22%2C%22date%22%3A%222024%20FEB%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.marpolbul.2023.116009%22%2C%22ISSN%22%3A%220025-326X%2C%201879-3363%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001158542400001%22%2C%22collections%22%3A%5B%227BD5VS8S%22%2C%22MXS8HMWQ%22%5D%2C%22dateModified%22%3A%222024-03-07T12%3A59%3A47Z%22%7D%7D%2C%7B%22key%22%3A%22CCDQYE9L%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Leger-Pigout%20et%20al.%22%2C%22parsedDate%22%3A%222024-01-08%22%2C%22numChildren%22%3A1%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELeger-Pigout%2C%20M.%2C%20Navarro%2C%20E.%2C%20Menard%2C%20F.%2C%20Ruitton%2C%20S.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Guasco%2C%20S.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Thibault%2C%20D.%2C%20Changeux%2C%20T.%2C%20Connan%2C%20S.%2C%20Stiger-Pouvreau%2C%20V.%2C%20Thibaut%2C%20T.%2C%20%26amp%3B%20Michotey%2C%20V.%20%282024%29.%20Predominant%20heterotrophic%20diazotrophic%20bacteria%20are%20involved%20in%20Sargassum%20proliferation%20in%20the%20Great%20Atlantic%20Sargassum%20Belt.%20%3Ci%3EISME%20JOURNAL%3C%5C%2Fi%3E%2C%20%3Ci%3E18%3C%5C%2Fi%3E%281%29%2C%20wrad026.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1093%5C%2Fismejo%5C%2Fwrad026%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1093%5C%2Fismejo%5C%2Fwrad026%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DCCDQYE9L%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Predominant%20heterotrophic%20diazotrophic%20bacteria%20are%20involved%20in%20Sargassum%20proliferation%20in%20the%20Great%20Atlantic%20Sargassum%20Belt%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mateo%22%2C%22lastName%22%3A%22Leger-Pigout%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Elisabeth%22%2C%22lastName%22%3A%22Navarro%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Menard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sandrine%22%2C%22lastName%22%3A%22Ruitton%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sophie%22%2C%22lastName%22%3A%22Guasco%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Delphine%22%2C%22lastName%22%3A%22Thibault%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thomas%22%2C%22lastName%22%3A%22Changeux%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Solene%22%2C%22lastName%22%3A%22Connan%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valerie%22%2C%22lastName%22%3A%22Stiger-Pouvreau%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Thibaut%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valerie%22%2C%22lastName%22%3A%22Michotey%22%7D%5D%2C%22abstractNote%22%3A%22Since%202011%2C%20the%20Caribbean%20coasts%20have%20been%20subject%20to%20episodic%20influxes%20of%20floating%20Sargassum%20seaweed%20of%20unprecedented%20magnitude%20originating%20from%20a%20new%20area%20%5C%22the%20Great%20Atlantic%20Sargassum%20Belt%5C%22%20%28GASB%29%2C%20leading%20in%20episodic%20influxes%20and%20mass%20strandings%20of%20floating%20Sargassum.%20For%20the%20biofilm%20of%20both%20holopelagic%20and%20benthic%20Sargassum%20as%20well%20as%20in%20the%20surrounding%20waters%2C%20we%20characterized%20the%20main%20functional%20groups%20involved%20in%20the%20microbial%20nitrogen%20cycle.%20The%20abundance%20of%20genes%20representing%20nitrogen%20fixation%20%28nifH%29%2C%20nitrification%20%28amoA%29%2C%20and%20denitrification%20%28nosZ%29%20showed%20the%20predominance%20of%20diazotrophs%2C%20particularly%20within%20the%20GASB%20and%20the%20Sargasso%20Sea.%20In%20both%20location%2C%20the%20biofilm%20associated%20with%20holopelagic%20Sargassum%20harboured%20a%20more%20abundant%20proportion%20of%20diazotrophs%20than%20the%20surrounding%20water.%20The%20mean%20delta%2015N%20value%20of%20the%20GASB%20seaweed%20was%20very%20negative%20%28-2.04%20parts%20per%20thousand%29%2C%20and%20lower%20than%20previously%20reported%2C%20reinforcing%20the%20hypothesis%20that%20the%20source%20of%20nitrogen%20comes%20from%20the%20nitrogen-fixing%20activity%20of%20diazotrophs%20within%20this%20new%20area%20of%20proliferation.%20Analysis%20of%20the%20diversity%20of%20diazotrophic%20communities%20revealed%20for%20the%20first%20time%20the%20predominance%20of%20heterotrophic%20diazotrophic%20bacteria%20belonging%20to%20the%20phylum%20Proteobacteria%20in%20holopelagic%20Sargassum%20biofilms.%20The%20nifH%20sequences%20belonging%20to%20Vibrio%20genus%20%28Gammaproteobacteria%29%20and%20Filomicrobium%20sp.%20%28Alphaproteobacteria%29%20were%20the%20most%20abundant%20and%20reached%2C%20respectively%2C%20up%20to%2046.0%25%20and%2033.2%25%20of%20the%20community.%20We%20highlighted%20the%20atmospheric%20origin%20of%20the%20nitrogen%20used%20during%20the%20growth%20of%20holopelagic%20Sargassum%20within%20the%20GASB%20and%20a%20contribution%20of%20heterotrophic%20nitrogen-fixing%20bacteria%20to%20a%20part%20of%20the%20Sargassum%20proliferation.%22%2C%22date%22%3A%22JAN%208%202024%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1093%5C%2Fismejo%5C%2Fwrad026%22%2C%22ISSN%22%3A%221751-7362%2C%201751-7370%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001154533300001%22%2C%22collections%22%3A%5B%2222KMVUMD%22%2C%22MXS8HMWQ%22%5D%2C%22dateModified%22%3A%222024-02-16T12%3A48%3A57Z%22%7D%7D%2C%7B%22key%22%3A%22FYEBBCTG%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Viana%20et%20al.%22%2C%22parsedDate%22%3A%222023-12-15%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EViana%2C%20A.%20P.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Fredou%2C%20T.%2C%20Lucena-Fredou%2C%20F.%2C%20Menard%2C%20F.%2C%20Lagane%2C%20C.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Lira%2C%20A.%20S.%2C%20dos%20Santos%2C%20I.%20G.%20S.%2C%20Ferreira%2C%20V.%2C%20Gonzalez%2C%20J.%20G.%2C%20%26amp%3B%20Point%2C%20D.%20%282023%29.%20Mercury%20biomagnification%20and%20trophic%20structure%20patterns%20in%20neotropical%20coastal%20estuaries%20impacted%20by%20a%20Chlor-alkali%20plant%20in%20northeast%20Brazil.%20%3Ci%3EREGIONAL%20STUDIES%20IN%20MARINE%20SCIENCE%3C%5C%2Fi%3E%2C%20%3Ci%3E66%3C%5C%2Fi%3E%2C%20103105.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.rsma.2023.103105%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.rsma.2023.103105%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DFYEBBCTG%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Mercury%20biomagnification%20and%20trophic%20structure%20patterns%20in%20neotropical%20coastal%20estuaries%20impacted%20by%20a%20Chlor-alkali%20plant%20in%20northeast%20Brazil%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Andrea%20P.%22%2C%22lastName%22%3A%22Viana%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Flavia%22%2C%22lastName%22%3A%22Lucena-Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Menard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Christelle%22%2C%22lastName%22%3A%22Lagane%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alex%20S.%22%2C%22lastName%22%3A%22Lira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Itala%20G.%20S.%22%2C%22lastName%22%3A%22dos%20Santos%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valdimere%22%2C%22lastName%22%3A%22Ferreira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Julio%20G.%22%2C%22lastName%22%3A%22Gonzalez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Point%22%7D%5D%2C%22abstractNote%22%3A%22The%20present%20study%20reports%20the%20concentration%20of%20HgT%20and%20MeHg%20in%20sediments%20and%20food%20webs%20in%20estuarine%20and%20coastal%20areas%20of%20Northeast%20Brazil%2C%20which%20have%20been%20subject%20to%20different%20impacts%2C%20mainly%20by%20chlorine%20and%20alkali%20companies.%20The%20results%20showed%20that%20the%20HgT%20in%20the%20sediment%20varied%20from%201.7%20to%201186%20ng%20g%28-1%29%20and%20from%203.3%20to%202163%20ng%20g%28-1%29%20in%20the%20organisms.%20A%20strong%20positive%20relationship%20between%20the%20levels%20of%20Hg%20in%20the%20sediment%20and%20the%20organisms%20was%20detected.%20Methylmercury%20represented%2042%20to%2099%25%20in%20the%20muscles%20of%20fish%20and%20invertebrates.%20Biomagnification%20processes%20were%20identified%20for%20all%20study%20areas%20evaluated%20according%20the%20trophic%20magnification%20factor%20%28TMF%29%2C%20which%20ranged%20from%203.1%20to%2012.3.%20We%20found%20significant%20negative%20correlations%20with%20delta%20C-13%20values%20and%20mercury%20concentrations%20and%20positive%20correlations%20between%20delta%20N-15%20values%20and%20mercury%2C%20typical%20of%20Hg%20trophodynamics.%20This%20suggests%20a%20direct%20impact%20of%20the%20level%20of%20site-specific%20contamination%20on%20local%20food%20web%20and%20the%20ecosystem%2C%20making%20continuous%20monitoring%20studies%20necessary%20to%20assess%20food%20security%20and%20the%20risks%20that%20the%20riverine%20community%20is%20exposed%20as%20a%20result%20of%20ingesting%20mercury%20contaminated%20fish.%20%28c%29%202023%20Elsevier%20B.V.%20All%20rights%20reserved.%22%2C%22date%22%3A%22DEC%2015%202023%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.rsma.2023.103105%22%2C%22ISSN%22%3A%222352-4855%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001054829800001%22%2C%22collections%22%3A%5B%22IMMDEEP2%22%5D%2C%22dateModified%22%3A%222023-09-28T15%3A24%3A30Z%22%7D%7D%2C%7B%22key%22%3A%22CS3VBQ44%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Le%20Croizier%20et%20al.%22%2C%22parsedDate%22%3A%222023-11-01%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELe%20Croizier%2C%20G.%2C%20Lorrain%2C%20A.%2C%20Hoyos-Padilla%2C%20M.%2C%20Ketchum%2C%20J.%20T.%2C%20Amezcua-Martinez%2C%20F.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Schaal%2C%20G.%2C%20%26amp%3B%20Point%2C%20D.%20%282023%29.%20Do%20marine%20protected%20areas%20influence%20mercury%20exposure%3F%20Insights%20from%20a%20shark%20community%20in%20the%20tropical%20Northeast%20Pacific.%20%3Ci%3EENVIRONMENTAL%20POLLUTION%3C%5C%2Fi%3E%2C%20%3Ci%3E336%3C%5C%2Fi%3E%2C%20122352.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.envpol.2023.122352%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.envpol.2023.122352%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DCS3VBQ44%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Do%20marine%20protected%20areas%20influence%20mercury%20exposure%3F%20Insights%20from%20a%20shark%20community%20in%20the%20tropical%20Northeast%20Pacific%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gael%22%2C%22lastName%22%3A%22Le%20Croizier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mauricio%22%2C%22lastName%22%3A%22Hoyos-Padilla%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22James%20T.%22%2C%22lastName%22%3A%22Ketchum%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Felipe%22%2C%22lastName%22%3A%22Amezcua-Martinez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gauthier%22%2C%22lastName%22%3A%22Schaal%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Point%22%7D%5D%2C%22abstractNote%22%3A%22Biomass%20depletion%20caused%20by%20overfishing%20is%20likely%20to%20alter%20the%20structure%20of%20food%20webs%20and%20impact%20mercury%20transfer%20to%20marine%20predators.%20Although%20marine%20protected%20areas%20%28MPAs%29%20are%20spared%20from%20fishing%20pressure%2C%20their%20influence%20on%20biota%20mercury%20levels%20is%20poorly%20understood.%20Here%2C%20we%20used%20carbon%20and%20nitrogen%20stable%20isotope%20compositions%20as%20well%20as%20mercury%20concentrations%20in%20fin%20clips%20to%20characterize%20foraging%20habitat%20and%20mercury%20exposure%20of%20a%20shark%20community%20composed%20of%20migratory%20and%20resident%20species%20of%20the%20Revillagigedo%20archipelago%2C%20an%20offshore%20MPA%20in%20the%20Northeast%20Pacific%20off%20Mexico.%20We%20found%20that%20the%20probability%20of%20finding%20migratory%20sharks%20in%20the%20isotopic%20niche%20of%20Revillagigedo-resident%20sharks%20was%20low%2C%20likely%20reflecting%20the%20use%20of%20habitats%20outside%20the%20archipelago%20by%20highly%20mobile%20species.%20Community-wide%20variations%20in%20mercury%20were%20primarily%20explained%20by%20shark%20length%2C%20revealing%20that%20bioaccumulation%20was%20the%20main%20driver%20of%20Hg%20concentrations.%20We%20failed%20to%20detect%20a%20clear%20effect%20of%20foraging%20habitat%20on%20shark%20mercury%20exposure%2C%20which%20may%20be%20related%20to%20migratory%20species%20using%20both%20exploited%20and%20protected%20areas%20when%20moving%20outside%20the%20Revillagigedo%20MPA.%20More%20similar%20studies%20on%20the%20potential%20mitigation%20of%20Hg%20contamination%20by%20MPAs%20are%20needed%20in%20the%20future%20if%20fishing%20pressure%20increases%20to%20satisfy%20the%20growing%20global%20human%20population.%22%2C%22date%22%3A%22NOV%201%202023%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.envpol.2023.122352%22%2C%22ISSN%22%3A%220269-7491%2C%201873-6424%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001066400400001%22%2C%22collections%22%3A%5B%22IMMDEEP2%22%2C%227BD5VS8S%22%5D%2C%22dateModified%22%3A%222023-10-12T12%3A30%3A06Z%22%7D%7D%2C%7B%22key%22%3A%22A4KKEAGK%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Sardenne%20et%20al.%22%2C%22parsedDate%22%3A%222023-11%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ESardenne%2C%20F.%2C%20Raynon%2C%20T.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20van%20der%20Lingen%2C%20C.%20D.%2C%20Sadio%2C%20O.%2C%20Diop%2C%20K.%2C%20Brosset%2C%20P.%2C%20Lebigre%2C%20C.%2C%20Soudant%2C%20P.%2C%20Vagner%2C%20M.%2C%20%26amp%3B%20Pecquerie%2C%20L.%20%282023%29.%20Lipid-correction%20models%20for%20613C%20values%20across%20small%20pelagic%20fishes%20%28Clupeiformes%29%20from%20the%20Atlantic%20Ocean.%20%3Ci%3EMARINE%20ENVIRONMENTAL%20RESEARCH%3C%5C%2Fi%3E%2C%20%3Ci%3E192%3C%5C%2Fi%3E%2C%20106213.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marenvres.2023.106213%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marenvres.2023.106213%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DA4KKEAGK%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Lipid-correction%20models%20for%20613C%20values%20across%20small%20pelagic%20fishes%20%28Clupeiformes%29%20from%20the%20Atlantic%20Ocean%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fany%22%2C%22lastName%22%3A%22Sardenne%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thomas%22%2C%22lastName%22%3A%22Raynon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Carl%20D.%22%2C%22lastName%22%3A%22van%20der%20Lingen%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Oumar%22%2C%22lastName%22%3A%22Sadio%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Khady%22%2C%22lastName%22%3A%22Diop%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Pablo%22%2C%22lastName%22%3A%22Brosset%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Christophe%22%2C%22lastName%22%3A%22Lebigre%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Philippe%22%2C%22lastName%22%3A%22Soudant%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Marie%22%2C%22lastName%22%3A%22Vagner%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Laure%22%2C%22lastName%22%3A%22Pecquerie%22%7D%5D%2C%22abstractNote%22%3A%22The%20interpretation%20of%20delta%20C-13%20values%20in%20trophic%20ecology%20requires%20standardization%20of%20the%20lipid%20content%20of%20organisms%20estimated%20through%20their%20C%3AN%20ratio.%20To%20avoid%20time-consuming%20lipid%20extractions%2C%20the%20use%20of%20mathematical%20corrections%20has%20been%20developed%20for%20many%20years%2C%20and%20the%20conclusions%20generally%20point%20in%20the%20direction%20of%20species-specific%20adjustment%20of%20the%20models.%20This%20study%20aimed%20at%20defining%20the%20maximum%20taxonomic%20level%20required%20to%20obtain%20the%20best%20corrected%20delta%20C-13%20values%20in%20small%20pelagic%20fish%20of%20the%20order%20Clupeiformes.%20delta%20C-13%20values%20of%20six%20species%20were%20analyzed%20bulk%20and%20lipid-free%2C%20and%20were%20used%20to%20fit%20and%20validate%20linear%20and%20mass-balance%20models%20at%20different%20taxonomic%20levels.%20Despite%20a%20species%20effect%20combined%20with%20the%20C%3AN%20ratio%20effect%2C%20the%20corrected%20delta%20C-13%20values%20produced%20by%20a%20global%20model%20for%20the%20Clupeiformes%20were%20as%20good%20as%20or%20better%20when%20compared%20to%20lipid-free%20samples%20than%20those%20produced%20by%20species-specific%20models%2C%20paving%20the%20way%20for%20possible%20generalization%20to%20other%20species%20in%20this%20order.%20At%20the%20order%20level%2C%20the%20linear%20model%20outperformed%20the%20mass-balance%20model.%22%2C%22date%22%3A%22NOV%202023%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.marenvres.2023.106213%22%2C%22ISSN%22%3A%220141-1136%2C%201879-0291%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001100567500001%22%2C%22collections%22%3A%5B%22IMMDEEP2%22%5D%2C%22dateModified%22%3A%222023-12-14T13%3A33%3A40Z%22%7D%7D%2C%7B%22key%22%3A%227KAEKJHH%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Schull%20et%20al.%22%2C%22parsedDate%22%3A%222023-09%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ESchull%2C%20Q.%2C%20Beauvieux%2C%20A.%2C%20Viblanc%2C%20V.%20A.%2C%20Metral%2C%20L.%2C%20Leclerc%2C%20L.%2C%20Romero%2C%20D.%2C%20Pernet%2C%20F.%2C%20Quere%2C%20C.%2C%20Munaron%2C%20D.%2C%20McKindsey%2C%20C.%20W.%2C%20Saraux%2C%20C.%2C%20%26amp%3B%20Bourjea%2C%20J.%20%282023%29.%20An%20integrative%20perspective%20on%20fish%20health%3A%20Environmental%20and%20anthropogenic%20pathways%20affecting%20fish%20stress.%20%3Ci%3EMARINE%20POLLUTION%20BULLETIN%3C%5C%2Fi%3E%2C%20%3Ci%3E194%3C%5C%2Fi%3E%2C%20115318.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2023.115318%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2023.115318%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D7KAEKJHH%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22An%20integrative%20perspective%20on%20fish%20health%3A%20Environmental%20and%20anthropogenic%20pathways%20affecting%20fish%20stress%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Quentin%22%2C%22lastName%22%3A%22Schull%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anais%22%2C%22lastName%22%3A%22Beauvieux%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Vincent%20A.%22%2C%22lastName%22%3A%22Viblanc%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Luisa%22%2C%22lastName%22%3A%22Metral%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Lina%22%2C%22lastName%22%3A%22Leclerc%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Diego%22%2C%22lastName%22%3A%22Romero%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fabrice%22%2C%22lastName%22%3A%22Pernet%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Claudie%22%2C%22lastName%22%3A%22Quere%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Dominique%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Christopher%20W.%22%2C%22lastName%22%3A%22McKindsey%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Claire%22%2C%22lastName%22%3A%22Saraux%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jerome%22%2C%22lastName%22%3A%22Bourjea%22%7D%5D%2C%22abstractNote%22%3A%22Multifactorial%20studies%20assessing%20the%20cumulative%20effects%20of%20natural%20and%20anthropogenic%20stressors%20on%20individual%20stress%20response%20are%20crucial%20to%20understand%20how%20organisms%20and%20populations%20cope%20with%20environmental%20change.%20We%20tested%20direct%20and%20indirect%20causal%20pathways%20through%20which%20environmental%20stressors%20affect%20the%20stress%20response%20of%20wild%20gilthead%20seabream%20in%20Mediterranean%20costal%20lagoons%20using%20an%20integrative%20PLS-PM%20approach.%20We%20integrated%20information%20on%2010%20environmental%20variables%20and%2036%20physiological%20variables%20into%20seven%20latent%20variables%20reflecting%20lagoons%20features%20and%20fish%20health.%20These%20variables%20concerned%20fish%20lipid%20reserves%2C%20somatic%20structure%2C%20inorganic%20contaminant%20loads%2C%20and%20individual%20trophic%20and%20stress%20response%20levels.%20This%20modelling%20approach%20allowed%20explaining%2030%20%25%20of%20the%20variance%20within%20these%2046%20variables%20considered.%20More%20importantly%2C%2054%20%25%20of%20fish%20stress%20response%20was%20explained%20by%20the%20dependent%20lagoon%20features%2C%20fish%20age%2C%20fish%20diet%2C%20fish%20reserve%2C%20fish%20structure%20and%20fish%20contaminant%20load%20latent%20variables%20included%20in%20our%20model.%20This%20integrative%20study%20sheds%20light%20on%20how%20individuals%20deal%20with%20contrasting%20environments%20and%20multiple%20ecological%20pressures.%22%2C%22date%22%3A%22SEP%202023%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.marpolbul.2023.115318%22%2C%22ISSN%22%3A%220025-326X%2C%201879-3363%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A001052835700001%22%2C%22collections%22%3A%5B%22IMMDEEP2%22%2C%227BD5VS8S%22%5D%2C%22dateModified%22%3A%222023-09-07T16%3A04%3A12Z%22%7D%7D%2C%7B%22key%22%3A%22YXRVRJYR%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Denis%20et%20al.%22%2C%22parsedDate%22%3A%222023-05-12%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EDenis%2C%20J.%2C%20Bouaziz%2C%20R.%2C%20Draredja%2C%20B.%2C%20Munaron%2C%20J.%20M.%2C%20Borhane%20Djebar%2C%20A.%2C%20Amara%2C%20R.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20%26amp%3B%20Ben%20Rais%20Lasram%2C%20F.%20%282023%29.%20Fish%20food-web%20structure%20of%20a%20southern%20Mediterranean%20lagoon%20%28El%20Mellah%20Lagoon%2C%20Algeria%29%3A%20what%20we%20can%20learn%20from%20stable%20isotope%20analysis.%20%3Ci%3EMediterranean%20Marine%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E24%3C%5C%2Fi%3E%282%29%2C%20211%26%23x2013%3B228.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.12681%5C%2Fmms.30180%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.12681%5C%2Fmms.30180%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DYXRVRJYR%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Fish%20food-web%20structure%20of%20a%20southern%20Mediterranean%20lagoon%20%28El%20Mellah%20Lagoon%2C%20Algeria%29%3A%20what%20we%20can%20learn%20from%20stable%20isotope%20analysis%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jeremy%22%2C%22lastName%22%3A%22Denis%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Rym%22%2C%22lastName%22%3A%22Bouaziz%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Brahim%22%2C%22lastName%22%3A%22Draredja%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%20Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Abdellah%22%2C%22lastName%22%3A%22Borhane%20Djebar%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Rachid%22%2C%22lastName%22%3A%22Amara%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fran%5Cu00e7ois%22%2C%22lastName%22%3A%22Le%20Loc%5Cu2019h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frida%22%2C%22lastName%22%3A%22Ben%20Rais%20Lasram%22%7D%5D%2C%22abstractNote%22%3A%22The%20structure%20of%20a%20fish%20food-web%20was%20described%20for%20the%20first%20time%20in%20a%20coastal%20lagoon%20in%20the%20southern%20Mediterranean%20Sea%20by%20analysing%20stable%20carbon%20and%20nitrogen%20isotopes%20of%20fish%20species%20and%20their%20potential%20food%20sources.%20The%20El%20Mellah%20Lagoon%20%28EML%29%20located%20in%20extreme%20north-eastern%20Algeria%2C%20is%20the%20only%20coastal%20lagoon%20in%20the%20southern%20Mediterranean%20with%20low%20human%20pressure%20due%20to%20few%20human%20activities%20and%20its%20protected%20status%20under%20the%20Ramsar%20Convention.%20We%20investigated%20the%20structure%20of%20the%20fish%20food-web%20in%20the%20spring%20at%20four%20stations%20in%20the%20lagoon%20that%20differed%20in%20their%20proximity%20to%20rivers%20and%20the%20channel%2C%20which%20connects%20to%20the%20sea.%20The%20results%20provided%20insight%20into%20ecological%20functions%20of%20EML%20as%20a%20feeding%20area%20for%20all%20fish%20species%20caught%20in%20the%20lagoon%2C%20in%20particular%20marine%20migrant%20juveniles%20and%20resident%20species.%20The%20%5Cu03b413C%20results%20highlighted%20the%20importance%20of%20marine%20organic%20matter%20on%20the%20functioning%20of%20the%20EML%20fish%20food-web%2C%20to%20which%20organic%20matter%20in%20marine%20sediments%20and%20likely%20microphytobenthos%20contribute%20most.%20Our%20study%20also%20revealed%20the%20importance%20of%20seagrass%20%28Ruppia%20sp.%29%20for%20detritivorous%20fish%20%28i.e.%2C%20Mugilidae%20species%29%20and%20for%20their%20potential%20to%20shelter%20a%20wide%20variety%20of%20benthic%20invertebrates%20that%20are%20potential%20food%20sources%20for%20benthivorous%20fish.%20Our%20study%20revealed%20the%20small%20influence%20of%20freshwater%20inputs%20on%20the%20functioning%20of%20the%20EML%20food-web%20and%20that%20juvenile%20marine%20fish%20may%20use%20the%20lagoon%20for%20reasons%20other%20than%20feeding%2C%20most%20likely%20to%20avoid%20predation%20and%20obtain%20physiological%20advantages.%22%2C%22date%22%3A%222023-05-12%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%2210.12681%5C%2Fmms.30180%22%2C%22ISSN%22%3A%221791-6763%2C%201108-393X%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fejournals.epublishing.ekt.gr%5C%2Findex.php%5C%2Fhcmr-med-mar-sc%5C%2Farticle%5C%2Fview%5C%2F30180%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22IMMDEEP2%22%5D%2C%22dateModified%22%3A%222024-02-15T12%3A44%3A31Z%22%7D%7D%2C%7B%22key%22%3A%22A4GPX5HA%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Faure%20et%20al.%22%2C%22parsedDate%22%3A%222023-04%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EFaure%2C%20J.%2C%20Gasco%2C%20N.%2C%20Bonillo%2C%20C.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Cherel%2C%20Y.%2C%20%26amp%3B%20Peron%2C%20C.%20%282023%29.%20Feeding%20ecology%20of%20two%20deep-sea%20skates%20bycaught%20on%20demersal%20longlines%20off%20Kerguelen%20Islands%2C%20Southern%20Indian%20Ocean.%20%3Ci%3EDeep-Sea%20Research%20Part%20I-Oceanographic%20Research%20Papers%3C%5C%2Fi%3E%2C%20%3Ci%3E194%3C%5C%2Fi%3E%2C%20103980.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.dsr.2023.103980%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.dsr.2023.103980%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DA4GPX5HA%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Feeding%20ecology%20of%20two%20deep-sea%20skates%20bycaught%20on%20demersal%20longlines%20off%20Kerguelen%20Islands%2C%20Southern%20Indian%20Ocean%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Johanna%22%2C%22lastName%22%3A%22Faure%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nicolas%22%2C%22lastName%22%3A%22Gasco%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Celine%22%2C%22lastName%22%3A%22Bonillo%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Yves%22%2C%22lastName%22%3A%22Cherel%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Clara%22%2C%22lastName%22%3A%22Peron%22%7D%5D%2C%22abstractNote%22%3A%22Elasmobranchs%2C%20and%20particularly%20skates%20%28Rajiforms%29%2C%20are%20commonly%20caught%20in%20fisheries%20worldwide%20as%20targeted%20catch%20or%20bycatch.%20Their%20life%20history%20traits%20make%20them%20particularly%20sensitive%20to%20elevated%20fishing%20mortality%2C%20especially%20in%20slow-growing%20deep-sea%20species.%20Knowledge%20of%20their%20ecology%20is%20key%20to%20ensure%20effective%20conservation%20and%20miti-gation%20measures%2C%20especially%20dietary%20references%20to%20understand%20trophic%20relationships%20within%20the%20ecosystem.%20This%20study%20presents%20the%20first%20comprehensive%20description%20of%20diet%20composition%20and%20trophic%20position%20of%20two%20skate%20species%20%28Bathyraja%20eatonii%20and%20B.%20irrasa%29%20caught%20as%20bycatch%20in%20the%20French%20Patagonian%20toothfish%20%28Dissostichus%20eleginoides%29%20fishery%20in%20the%20Indian%20sector%20of%20the%20Southern%20Ocean%20%28Kerguelen%20waters%29.%20Stomach%20content%20and%20stable%20isotopic%20analyses%20were%20performed%20on%20both%20species%20according%20to%20sex%20and%20maturity%20stage.%20DNA%20barcoding%20analysis%20was%20performed%20on%20prey%20tissue%20samples%20to%20identify%20or%20confirm%20identification%20of%20prey%20items%20found%20in%20stomachs.%20Overall%2C%20both%20skate%20species%20were%20generalist%20feeders%20with%20high%20815N%20values.%20The%20higher%20815N%20values%20of%20B.%20irrasa%20result%20in%20a%20higher%20estimated%20trophic%20position%20than%20B.%20eatonii.%20The%20diet%20of%20B.%20eatonii%20mainly%20consisted%20of%20fish%2C%20pelagic%20crusta-ceans%20and%20squids%2C%20while%20B.%20irrasa%20preyed%20more%20on%20benthic%20crustaceans%2C%20fish%20and%20annelids.%20While%20sex%20had%20no%20effect%20on%20diet%20and%20trophic%20position%20for%20both%20species%2C%20maturity%20stage%20influenced%20the%20prey%20composition%20of%20B.%20irrasa.%20An-nelids%20and%20isopods%20were%20prevalent%20in%20the%20stomachs%20of%20immature%20individuals%20of%20B.%20irrasa%2C%20while%20mature%20individuals%20fed%20more%20on%20decapods%20and%20fish.%20Our%20results%20revealed%20a%20wide%20range%20of%20prey%20items%20for%20these%20two%20generalist%20predators%20%28%3E57%20species%29.%20Understanding%20the%20diet%2C%20trophic%20position%20and%20trophic%20relationships%20of%20B.%20eatonii%20and%20B.%20irrasa%20is%20critical%20to%20a%20better%20comprehension%20of%20the%20impact%20of%20the%20exploitation%20of%20top%20predators%20on%20the%20subantarctic%20demersal%20ecosystem.%22%2C%22date%22%3A%22APR%202023%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.dsr.2023.103980%22%2C%22ISSN%22%3A%220967-0637%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A000995847600001%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22IMMDEEP2%22%5D%2C%22dateModified%22%3A%222023-06-19T08%3A11%3A28Z%22%7D%7D%2C%7B%22key%22%3A%22Z4WZJVRC%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Pelage%20et%20al.%22%2C%22parsedDate%22%3A%222022-09-30%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EPelage%2C%20L.%2C%20Ferreira%2C%20V.%2C%20Lucena-Fredou%2C%20F.%2C%20Ferreira%2C%20G.%20V.%20B.%2C%20Gonzalez%2C%20J.%20G.%2C%20Viana%2C%20A.%20P.%2C%20Lira%2C%20A.%20S.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Fredou%2C%20T.%2C%20Mernard%2C%20F.%2C%20%26amp%3B%20Le%20Loc%26%23x2019%3Bh%2C%20F.%20%282022%29.%20Estuarine%20food%20web%20structure%20and%20relative%20importance%20of%20organic%20matter%20sources%20for%20fish%20in%20a%20highly%20connected%20Northeastern%20Brazil%20ecotone.%20%3Ci%3EEstuarine%20Coastal%20and%20Shelf%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E275%3C%5C%2Fi%3E%2C%20107972.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2022.107972%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2022.107972%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DZ4WZJVRC%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Estuarine%20food%20web%20structure%20and%20relative%20importance%20of%20organic%20matter%20sources%20for%20fish%20in%20a%20highly%20connected%20Northeastern%20Brazil%20ecotone%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Latifa%22%2C%22lastName%22%3A%22Pelage%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valdimere%22%2C%22lastName%22%3A%22Ferreira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Flavia%22%2C%22lastName%22%3A%22Lucena-Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Guilherme%20V.%20B.%22%2C%22lastName%22%3A%22Ferreira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Julio%20Guazzelli%22%2C%22lastName%22%3A%22Gonzalez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Andrea%20Pontes%22%2C%22lastName%22%3A%22Viana%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alex%20Souza%22%2C%22lastName%22%3A%22Lira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Mernard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%5D%2C%22abstractNote%22%3A%22The%20lack%20of%20knowledge%20about%20highly%20anthropised%20tropical%20ecosystems%20poses%20a%20problem%20for%20their%20conservation.%20Using%20carbon%20and%20nitrogen%20stable%20isotopes%2C%20we%20studied%20the%20food%20web%20structure%20of%20the%20estuarine%20ecotone%20of%20the%20Santa%20Cruz%20Channel%20%28SCC%29%2C%20which%20constitutes%20a%20critical%20habitat%20for%20many%20socio-economically%20important%20species%20in%20northeast%20Brazil.%20Therefore%2C%20we%20assessed%20the%20spatial%20%28estuary%5C%2Fcoast%29%20and%20seasonal%20%28dry%5C%2Frainy%29%20isotopic%20variation%20of%20basal%20food%20sources%2C%20invertebrates%20and%20fishes.%20We%20also%20used%20Bayesian%20mixing%20models%20to%20trace%20the%20origin%20%28estuary%20vs%20coast%29%20of%20the%20organic%20matter%20sources%20supporting%20SCC%20fishes%20food%20webs%20according%20to%20their%20feeding%20habits.%20We%20found%20a%20wide%20range%20of%20delta%20C-13%20and%20delta%20N-15%20values%20for%20basal%20sources%2C%20invertebrates%2C%20and%20fish%20in%20coastal%20and%20estuarine%20envi-ronments%2C%20but%20isotopic%20compositions%20showed%20greater%20variability%20in%20the%20estuary.%20This%20illustrated%20the%20heterogeneity%20of%20primary%20producers%20and%20sources%20in%20estuaries%2C%20intensified%20by%20SCC%20morphology%2C%20as%20both%20accesses%20to%20the%20sea%20provide%20strong%20mixing%20between%20riverine%20and%20marine%20inputs.%20Additionally%2C%20we%20found%20differences%20between%20fish%20isotope%20compositions%20according%20to%20their%20guilds.%20Coastal%20basal%20sources%20significantly%20support%20zoobenthivorous%2C%20piscivorous%20and%20zooplanktivorous%20fish%20estuarine%20food%20webs.%20Conversely%2C%20detritivores%20are%20supported%20by%20enriched%20sources%20of%20organic%20matter%2C%20especially%20during%20the%20dry%20season%2C%20which%20may%20be%20derived%20from%20terrestrial%20inputs.%20As%20contaminated%20land-based%20inputs%20can%20affect%20food%20webs%20and%20coastal%20fisheries%2C%20developing%20a%20management%20plan%20that%20includes%20all%20interconnected%20habitats%20is%20necessary.%22%2C%22date%22%3A%22SEP%2030%202022%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.ecss.2022.107972%22%2C%22ISSN%22%3A%220272-7714%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Fsummary%5C%2F5d5acb86-7d9d-4bb3-a351-b2c1d2433d11-4a6a0e88%5C%2Frelevance%5C%2F1%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22449H35DA%22%5D%2C%22dateModified%22%3A%222022-10-13T07%3A00%3A17Z%22%7D%7D%2C%7B%22key%22%3A%22S8CY2V9W%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Barbosa%20et%20al.%22%2C%22parsedDate%22%3A%222022-07%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EBarbosa%2C%20R.%20V.%2C%20Point%2C%20D.%2C%20Medieu%2C%20A.%2C%20Allain%2C%20V.%2C%20Gillikin%2C%20D.%20P.%2C%20Couturier%2C%20L.%20I.%20E.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Roupsard%2C%20F.%2C%20%26amp%3B%20Lorrain%2C%20A.%20%282022%29.%20Mercury%20concentrations%20in%20tuna%20blood%20and%20muscle%20mirror%20seawater%20methylmercury%20in%20the%20Western%20and%20Central%20Pacific%20Ocean.%20%3Ci%3EMarine%20Pollution%20Bulletin%3C%5C%2Fi%3E%2C%20%3Ci%3E180%3C%5C%2Fi%3E%2C%20113801.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2022.113801%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2022.113801%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DS8CY2V9W%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Mercury%20concentrations%20in%20tuna%20blood%20and%20muscle%20mirror%20seawater%20methylmercury%20in%20the%20Western%20and%20Central%20Pacific%20Ocean%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Romina%20V.%22%2C%22lastName%22%3A%22Barbosa%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Point%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anais%22%2C%22lastName%22%3A%22Medieu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valerie%22%2C%22lastName%22%3A%22Allain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%20P.%22%2C%22lastName%22%3A%22Gillikin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Lydie%20I.%20E.%22%2C%22lastName%22%3A%22Couturier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Roupsard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%5D%2C%22abstractNote%22%3A%22Understanding%20the%20relationship%20between%20mercury%20in%20seafood%20and%20the%20distribution%20of%20oceanic%20methylmercury%20is%20key%20to%20understand%20human%20mercury%20exposure.%20Here%2C%20we%20determined%20mercury%20concentrations%20in%20muscle%20and%20blood%20of%20bigeye%20and%20yellowfin%20tunas%20from%20the%20Western%20and%20Central%20Pacific.%20Results%20showed%20similar%20latitudinal%20patterns%20in%20tuna%20blood%20and%20muscle%2C%20indicating%20that%20both%20tissues%20are%20good%20candidates%20for%20mercury%20monitoring.%20Complementary%20tuna%20species%20analyses%20indicated%20species-%20and%20tissue-%20specific%20mercury%20patterns%2C%20highlighting%20differences%20in%20physiologic%20processes%20of%20mercury%20uptake%20and%20accumulation%20associated%20with%20tuna%20vertical%20habitat.%20Tuna%20mercury%20content%20was%20correlated%20to%20ambient%20seawater%20methylmercury%20concentrations%2C%20with%20blood%20being%20enriched%20at%20a%20higher%20rate%20than%20muscle%20with%20increasing%20habitat%20depth.%20The%20consideration%20of%20a%20significant%20uptake%20of%20dissolved%20methylmercury%20from%20seawater%20in%20tuna%2C%20in%20addition%20to%20assimilation%20from%20food%2C%20might%20be%20interesting%20to%20test%20in%20models%20to%20represent%20the%20spatiotemporal%20evolutions%20of%20mercury%20in%20tuna%20under%20different%20mercury%20emission%20scenarios.%22%2C%22date%22%3A%22JUL%202022%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.marpolbul.2022.113801%22%2C%22ISSN%22%3A%220025-326X%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Fsummary%5C%2F56dae3db-ccf8-431b-b933-f3d7bb77c8c5-5ed56525%5C%2Frelevance%5C%2F1%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22449H35DA%22%2C%227BD5VS8S%22%5D%2C%22dateModified%22%3A%222022-11-26T10%3A13%3A17Z%22%7D%7D%2C%7B%22key%22%3A%22LB4VUS98%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Le%20Croizier%20et%20al.%22%2C%22parsedDate%22%3A%222022-04%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELe%20Croizier%2C%20G.%2C%20Point%2C%20D.%2C%20Renedo%2C%20M.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Espinoza%2C%20P.%2C%20Amezcua-Martinez%2C%20F.%2C%20Bertrand%2C%20S.%20L.%2C%20%26amp%3B%20Lorrain%2C%20A.%20%282022%29.%20Mercury%20concentrations%2C%20biomagnification%20and%20isotopic%20discrimination%20factors%20in%20two%20seabird%20species%20from%20the%20Humboldt%20Current%20ecosystem.%20%3Ci%3EMarine%20Pollution%20Bulletin%3C%5C%2Fi%3E%2C%20%3Ci%3E177%3C%5C%2Fi%3E%2C%20113481.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2022.113481%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2022.113481%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DLB4VUS98%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Mercury%20concentrations%2C%20biomagnification%20and%20isotopic%20discrimination%20factors%20in%20two%20seabird%20species%20from%20the%20Humboldt%20Current%20ecosystem%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gael%22%2C%22lastName%22%3A%22Le%20Croizier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Point%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Marina%22%2C%22lastName%22%3A%22Renedo%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Pepe%22%2C%22lastName%22%3A%22Espinoza%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Felipe%22%2C%22lastName%22%3A%22Amezcua-Martinez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sophie%20Lanco%22%2C%22lastName%22%3A%22Bertrand%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%5D%2C%22abstractNote%22%3A%22Assessing%20mercury%20%28Hg%29%20biomagnification%20requires%20the%20description%20of%20prey-predator%20relationships%2C%20for%20each%20species%20and%20ecosystem%2C%20usually%20based%20on%20carbon%20and%20nitrogen%20isotope%20analyses.%20Here%2C%20we%20analyzed%20two%20seabirds%20from%20the%20Humboldt%20Current%20ecosystem%2C%20the%20Guanay%20cormorant%20%28Phalacrocorax%20bougainvillii%29%20and%20the%20Peruvian%20booby%20%28Sula%20variegata%29%2C%20as%20well%20as%20their%20main%20prey%2C%20the%20Peruvian%20anchovy%20%28Engraulis%20ringens%29.%20We%20reported%20Hg%20concentrations%2C%20Hg%20biomagnification%20%28BMF%29%20and%20isotopic%20discrimination%20factors%20%28delta%20C-13%20and%20delta%20N-15%29%20in%20seabird%20whole%20blood.%20BMFs%20and%20delta%20C-13%20in%20our%20study%20%28on%20wild%20birds%20where%20diet%20was%20not%20controlled%29%20were%20similar%20to%20other%20piscivorous%20seabirds%20previously%20studied%20in%20captive%20settings%2C%20but%20delta%20N-15%20were%20lower%20than%20most%20captive%20experiments.%20We%20observed%20lower%20Hg%20concentrations%20in%20Humboldt%20seabirds%20compared%20to%20other%20oligotrophic%20ecosystems%2C%20possibly%20due%20to%20Hg%20biodilution%20in%20the%20high%20biomass%20of%20the%20first%20trophic%20levels.%20This%20work%20calls%20for%20a%20better%20characterization%20of%20Hg%20trophic%20dynamics%20in%20productive%20upwelling%20ecosystems.%22%2C%22date%22%3A%22APR%202022%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.marpolbul.2022.113481%22%2C%22ISSN%22%3A%220025-326X%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Fsummary%5C%2Ff98f8474-06a5-4e0a-b856-8a43c9a6af5d-345b31cd%5C%2Frelevance%5C%2F1%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22449H35DA%22%2C%227BD5VS8S%22%5D%2C%22dateModified%22%3A%222022-04-28T11%3A07%3A00Z%22%7D%7D%2C%7B%22key%22%3A%22U9CLZNUA%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Cavalcanti%20Limeira%20et%20al.%22%2C%22parsedDate%22%3A%222022%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ECavalcanti%20Limeira%2C%20A.%20G.%2C%20Fredou%2C%20T.%2C%20Cavalcanti%20Soares%2C%20A.%20P.%2C%20Lira%2C%20A.%20S.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Segundo%20Viana%2C%20G.%20F.%2C%20Rosa-Filho%2C%20J.%20S.%2C%20Munaron%2C%20J.%20M.%2C%20%26amp%3B%20Lucena-Fredou%2C%20F.%20%282022%29.%20Trophic%20ecology%20and%20resource%20partitioning%20of%20Haemulidae%20species%20along%20the%20Northeastern%20Brazilian%20continental%20shelf.%20%3Ci%3ENeotropical%20Ichthyology%3C%5C%2Fi%3E%2C%20%3Ci%3E20%3C%5C%2Fi%3E%283%29%2C%20e220001.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1590%5C%2F1982-0224-2022-0001%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1590%5C%2F1982-0224-2022-0001%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DU9CLZNUA%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20ecology%20and%20resource%20partitioning%20of%20Haemulidae%20species%20along%20the%20Northeastern%20Brazilian%20continental%20shelf%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Adamo%20Gabriel%22%2C%22lastName%22%3A%22Cavalcanti%20Limeira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Andrey%20Paulo%22%2C%22lastName%22%3A%22Cavalcanti%20Soares%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alex%20Souza%22%2C%22lastName%22%3A%22Lira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Girlene%20Fabia%22%2C%22lastName%22%3A%22Segundo%20Viana%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jose%20Souto%22%2C%22lastName%22%3A%22Rosa-Filho%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%20Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Flavia%22%2C%22lastName%22%3A%22Lucena-Fredou%22%7D%5D%2C%22abstractNote%22%3A%22In%20the%20Southeastern%20Tropical%20Atlantic%2C%20Haemulidae%20family%20play%20an%20important%20role%20both%20environmentally%2C%20acting%20as%20a%20link%20between%20lower%20and%20higher%20trophic%20levels%2C%20and%20socioeconomically%2C%20being%20widely%20caught%20by%20artisanal%20fleets.%20This%20study%20aimed%20to%20describe%20the%20trophic%20ecology%20of%20three%20grunt%20species%20%28Haemulon%20aurolineatum%2C%20H.%20plumierii%20and%20H.%20squamipinna%29%20considering%20spatial%2C%20temporal%20and%20ontogenetic%20aspects%2C%20integrating%20stomach%20content%20and%20stable%20isotopes%20analysis.%20Sampling%20occurred%20in%2026%20stations%20along%20the%20Northeast%20of%20Brazil%20%2804%20degrees-%2009%20degrees%20S%29%2C%20in%20August%202015%20and%20April%202017%2C%20using%20bottom%20trawling%20net.%20There%20was%20greater%20feeding%20intensity%20at%20night%2C%20at%20latitudes%20below%2008%20degrees%20S%20and%20in%20the%20inner%20continental%20shelf.%20Higher%20values%20of%20d%281%295N%20were%20reported%20for%20H.%20aurolineatum%20and%20H.%20plumierii%20collected%20near%20coastline.%20The%20isotopic%20niche%20breadth%20indicated%20that%20H.%20aurolineatum%20has%20a%20narrower%20diet%20than%20H.%20plumierii.%20For%20the%20three%20species%2C%20the%20trophic%20level%20ranged%20between%20three%20and%20four.%20Considering%20stomach%20content%20and%20isotopic%20niche%2C%20diet%20was%20similar%20comparing%20species.%20This%20trophic%20ecology%20pattern%20reveals%20a%20likewise%20use%20of%20the%20habitat%2C%20which%20may%20be%20essential%20for%20identifying%20priority%20areas%20for%20conservation%20on%20an%20ecosystem%20basis%2C%20especially%20in%20rich%20reef%20zones%20that%20are%20subject%20to%20several%20increasing%20pressures%2C%20such%20as%20those%20in%20Northeast%20Brazil.%22%2C%22date%22%3A%222022%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1590%5C%2F1982-0224-2022-0001%22%2C%22ISSN%22%3A%221679-6225%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A000891322000003%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22449H35DA%22%5D%2C%22dateModified%22%3A%222023-04-17T12%3A45%3A58Z%22%7D%7D%2C%7B%22key%22%3A%22AVE2CPNR%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Gonzalez%20et%20al.%22%2C%22parsedDate%22%3A%222021-07-05%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EGonzalez%2C%20J.%20G.%2C%20Darnaude%2C%20A.%20M.%2C%20Duarte-Neto%2C%20P.%20J.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20de%20Lima%2C%20M.%20C.%2C%20Menard%2C%20F.%2C%20Ferreira%2C%20V.%2C%20Fredou%2C%20F.%20L.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20%26amp%3B%20Fredou%2C%20T.%20%282021%29.%20Trophic%20ecology%20of%20the%20juveniles%20of%20two%20jack%20species%20%28Caranx%20latus%20and%20C.%20hippos%29%20in%20contrasted%20tropical%20estuaries.%20%3Ci%3EEstuarine%20Coastal%20and%20Shelf%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E255%3C%5C%2Fi%3E%2C%20107370.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2021.107370%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2021.107370%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DAVE2CPNR%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20ecology%20of%20the%20juveniles%20of%20two%20jack%20species%20%28Caranx%20latus%20and%20C.%20hippos%29%20in%20contrasted%20tropical%20estuaries%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Julio%20Guazzelli%22%2C%22lastName%22%3A%22Gonzalez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Audrey%20M.%22%2C%22lastName%22%3A%22Darnaude%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Paulo%20J.%22%2C%22lastName%22%3A%22Duarte-Neto%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mayara%20Constantino%22%2C%22lastName%22%3A%22de%20Lima%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Menard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valdimere%22%2C%22lastName%22%3A%22Ferreira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Flavia%20Lucena%22%2C%22lastName%22%3A%22Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Fredou%22%7D%5D%2C%22abstractNote%22%3A%22Jacks%20are%20highly%20prized%20tropical%20marine%20fish.%20Most%20of%20them%20complete%20their%20whole%20life%20cycle%20at%20sea%20but%20some%20use%20estuaries%20at%20the%20juvenile%20stage%20before%20moving%20back%20to%20coastal%20waters%20and%20joining%20the%20adult%20exploited%20stocks.%20Little%20is%20known%20about%20jacks%20%26%20rsquo%3B%20trophic%20ecology%20in%20estuaries%2C%20although%20their%20juveniles%20%26%20rsquo%3B%20ability%20to%20successfully%20exploit%20available%20resources%20in%20these%20productive%20environments%20may%20strongly%20affect%20stock%20recruitment%20success%20in%20the%20species%20concerned.%20In%20this%20study%2C%20stomach%20content%20and%20stable%20isotope%20analyses%20were%20combined%20to%20investigate%20diet%20and%20food%20niche%20overlap%20of%20juveniles%20from%20two%20sympatric%20species%20of%20jacks%20%28Caranx%20latus%20and%20C.%20hippos%29%20in%20three%20contrasted%20estuaries%20%28Suape%2C%20Sirinhae%20%26%20acute%3Bm%20and%20Santa%20Cruz%29%20spread%20along%20the%20northeastern%20Brazilian%20coast.%20Overall%2C%20although%20the%20juveniles%20of%20C.%20latus%20exhibited%20a%20more%20piscivorous%20diet%20than%20those%20of%20C.%20hippos%2C%20the%20two%20species%20had%20very%20similar%20isotopic%20niches%2C%20with%20mean%20delta%2013C%20and%20delta%2015N%20values%20of%20-19.35%20%2B%5C%2F-%202.10%25o%20and%2011.03%20%2B%5C%2F-%201.11%25o%20and%20of%20-19.10%20%2B%5C%2F-%201.82%25o%20and%2010.21%20%2B%5C%2F-%201.21%25o%2C%20for%20C.%20hippos%20and%20C.%20latus%20respectively.%20In%20all%20the%20estuaries%20sampled%2C%20both%20species%20mostly%20ate%20fish%20%28Ni%20%3D%2020.1%20%26%20ndash%3B46.2%25%2C%20Wi%20%3D%2060.1%20%26%20ndash%3B75.1%25%2C%20essentially%20Gobiidae%20and%20Clupeidae%29%20and%20crustaceans%20%28Ni%20%3D%2026.0%20%26%20ndash%3B65.9%25%2C%20Wi%20%3D%2023.3%20%26%20ndash%3B38.2%25%2C%20mainly%20Penaeidae%20shrimps%29.%20As%20a%20result%2C%20the%20overlap%20between%20their%20global%20estuarine%20isotopic%20niches%20was%20%3E68%25.%20However%2C%20diet%20composition%20for%20the%20two%20species%20varied%20among%20estuaries%2C%20indicating%20that%20their%20juveniles%20partly%20adapt%20their%20food%20preferences%20to%20local%20prey%20availability.%20Notably%2C%20prey%20preferences%20differed%20significantly%20between%20the%20two%20species%20only%20in%20the%20Santa%20Cruz%20estuary%2C%20where%20delta%2015N%20values%20were%20the%20highest%20for%20both%20species.%20Conversely%2C%20interspecific%20differences%20in%20delta%2013C%20ratios%20were%20greater%20in%20the%20Suape%20and%20the%20Sirinhae%20%26%20acute%3Bm%20estuaries%2C%20likely%20reflecting%20a%20wider%20diversity%20in%20the%20carbon%20sources%20sustaining%20local%20food%20webs.%20Thus%2C%20combined%20differences%20in%20juvenile%20diet%20and%20food%20web%20structure%20at%20each%20location%20resulted%20in%20much-reduced%20local%20isotopic%20niche%20overlaps%20between%20the%20two%20species%20%28from%2027%25%20in%20Suape%20to%2057%25%20in%20Santa%20Cruz%29.%20These%20results%20have%20important%20implications%20for%20resource%20and%20ecosystem%20management%20in%20northeastern%20Brazil%20and%20call%20for%20systematic%20cross-site%20comparisons%20when%20evaluating%20fish%20ecology%20and%20resource%20partitioning%20within%20estuarine%20systems.%22%2C%22date%22%3A%22JUL%205%202021%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.ecss.2021.107370%22%2C%22ISSN%22%3A%220272-7714%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0272771421002237%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22PCQMC87R%22%5D%2C%22dateModified%22%3A%222022-04-04T08%3A45%3A45Z%22%7D%7D%2C%7B%22key%22%3A%222DICTUTU%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Gonzalez%20et%20al.%22%2C%22parsedDate%22%3A%222021-07-05%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EGonzalez%2C%20J.%20G.%2C%20Darnaude%2C%20A.%20M.%2C%20Duarte-Neto%2C%20P.%20J.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20de%20Lima%2C%20M.%20C.%2C%20Menard%2C%20F.%2C%20Ferreira%2C%20V.%2C%20Fredou%2C%20F.%20L.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20%26amp%3B%20Fredou%2C%20T.%20%282021%29.%20Trophic%20ecology%20of%20the%20juveniles%20of%20two%20jack%20species%20%28Caranx%20latus%20and%20C.%20hippos%29%20in%20contrasted%20tropical%20estuaries.%20%3Ci%3EEstuarine%20Coastal%20and%20Shelf%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E255%3C%5C%2Fi%3E%2C%20107370.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2021.107370%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2021.107370%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D2DICTUTU%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20ecology%20of%20the%20juveniles%20of%20two%20jack%20species%20%28Caranx%20latus%20and%20C.%20hippos%29%20in%20contrasted%20tropical%20estuaries%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Julio%20Guazzelli%22%2C%22lastName%22%3A%22Gonzalez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Audrey%20M.%22%2C%22lastName%22%3A%22Darnaude%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Paulo%20J.%22%2C%22lastName%22%3A%22Duarte-Neto%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mayara%20Constantino%22%2C%22lastName%22%3A%22de%20Lima%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Menard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valdimere%22%2C%22lastName%22%3A%22Ferreira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Flavia%20Lucena%22%2C%22lastName%22%3A%22Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Fredou%22%7D%5D%2C%22abstractNote%22%3A%22Jacks%20are%20highly%20prized%20tropical%20marine%20fish.%20Most%20of%20them%20complete%20their%20whole%20life%20cycle%20at%20sea%20but%20some%20use%20estuaries%20at%20the%20juvenile%20stage%20before%20moving%20back%20to%20coastal%20waters%20and%20joining%20the%20adult%20exploited%20stocks.%20Little%20is%20known%20about%20jacks%27%20trophic%20ecology%20in%20estuaries%2C%20although%20their%20juveniles%27%20ability%20to%20successfully%20exploit%20available%20resources%20in%20these%20productive%20environments%20may%20strongly%20affect%20stock%20recruitment%20success%20in%20the%20species%20concerned.%20In%20this%20study%2C%20stomach%20content%20and%20stable%20isotope%20analyses%20were%20combined%20to%20investigate%20diet%20and%20food%20niche%20overlap%20of%20juveniles%20from%20two%20sympatric%20species%20of%20jacks%20%28Caranx%20latus%20and%20C.%20hippos%29%20in%20three%20contrasted%20estuaries%20%28Suape%2C%20Sirinhae%20%26%20acute%3Bm%20and%20Santa%20Cruz%29%20spread%20along%20the%20northeastern%20Brazilian%20coast.%20Overall%2C%20although%20the%20juveniles%20of%20C.%20latus%20exhibited%20a%20more%20piscivorous%20diet%20than%20those%20of%20C.%20hippos%2C%20the%20two%20species%20had%20very%20similar%20isotopic%20niches%2C%20with%20mean%20delta%2013C%20and%20delta%2015N%20values%20of%20-19.35%20%2B%5C%2F-%202.10%25o%20and%2011.03%20%2B%5C%2F-%201.11%25o%20and%20of%20-19.10%20%2B%5C%2F-%201.82%25o%20and%2010.21%20%2B%5C%2F-%201.21%25o%2C%20for%20C.%20hippos%20and%20C.%20latus%20respectively.%20In%20all%20the%20estuaries%20sampled%2C%20both%20species%20mostly%20ate%20fish%20%28Ni%20%3D%2020.1-46.2%25%2C%20Wi%20%3D%2060.1-75.1%25%2C%20essentially%20Gobiidae%20and%20Clupeidae%29%20and%20crustaceans%20%28Ni%20%3D%2026.0-65.9%25%2C%20Wi%20%3D%2023.3-38.2%25%2C%20mainly%20Penaeidae%20shrimps%29.%20As%20a%20result%2C%20the%20overlap%20between%20their%20global%20estuarine%20isotopic%20niches%20was%20%3E68%25.%20However%2C%20diet%20composition%20for%20the%20two%20species%20varied%20among%20estuaries%2C%20indicating%20that%20their%20juveniles%20partly%20adapt%20their%20food%20preferences%20to%20local%20prey%20availability.%20Notably%2C%20prey%20preferences%20differed%20significantly%20between%20the%20two%20species%20only%20in%20the%20Santa%20Cruz%20estuary%2C%20where%20delta%2015N%20values%20were%20the%20highest%20for%20both%20species.%20Conversely%2C%20interspecific%20differences%20in%20delta%2013C%20ratios%20were%20greater%20in%20the%20Suape%20and%20the%20Sirinhae%20%26%20acute%3Bm%20estuaries%2C%20likely%20reflecting%20a%20wider%20diversity%20in%20the%20carbon%20sources%20sustaining%20local%20food%20webs.%20Thus%2C%20combined%20differences%20in%20juvenile%20diet%20and%20food%20web%20structure%20at%20each%20location%20resulted%20in%20much-reduced%20local%20isotopic%20niche%20overlaps%20between%20the%20two%20species%20%28from%2027%25%20in%20Suape%20to%2057%25%20in%20Santa%20Cruz%29.%20These%20results%20have%20important%20implications%20for%20resource%20and%20ecosystem%20management%20in%20northeastern%20Brazil%20and%20call%20for%20systematic%20cross-site%20comparisons%20when%20evaluating%20fish%20ecology%20and%20resource%20partitioning%20within%20estuarine%20systems.%22%2C%22date%22%3A%22JUL%205%202021%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.ecss.2021.107370%22%2C%22ISSN%22%3A%220272-7714%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.webofscience.com%5C%2Fwos%5C%2Fwoscc%5C%2Ffull-record%5C%2FWOS%3A000653046900006%22%2C%22collections%22%3A%5B%22PCQMC87R%22%5D%2C%22dateModified%22%3A%222023-04-17T12%3A58%3A32Z%22%7D%7D%2C%7B%22key%22%3A%22VXZ8U4IR%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Bouaziz%20et%20al.%22%2C%22parsedDate%22%3A%222021-05%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EBouaziz%2C%20R.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Rolet%2C%20C.%2C%20Veillet%2C%20G.%2C%20Munaron%2C%20J.%20M.%2C%20Rabhi%2C%20K.%2C%20Djebar%2C%20A.%20B.%2C%20Amara%2C%20R.%2C%20%26amp%3B%20Lasram%2C%20F.%20B.%20R.%20%282021%29.%20Structure%20and%20seasonal%20variability%20in%20fish%20food%20webs%20in%20a%20small%20macrotidal%20estuary%20%28Canche%20estuary%2C%20Eastern%20English%20Channel%29%20based%20on%20stable%20carbon%20and%20nitrogen%20isotope%20analysis.%20%3Ci%3ERegional%20Studies%20in%20Marine%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E44%3C%5C%2Fi%3E%2C%20101694.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.rsma.2021.101694%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.rsma.2021.101694%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DVXZ8U4IR%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Structure%20and%20seasonal%20variability%20in%20fish%20food%20webs%20in%20a%20small%20macrotidal%20estuary%20%28Canche%20estuary%2C%20Eastern%20English%20Channel%29%20based%20on%20stable%20carbon%20and%20nitrogen%20isotope%20analysis%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Rym%22%2C%22lastName%22%3A%22Bouaziz%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Celine%22%2C%22lastName%22%3A%22Rolet%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Guillaume%22%2C%22lastName%22%3A%22Veillet%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%20Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Khalef%22%2C%22lastName%22%3A%22Rabhi%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Abdellah%20Borhane%22%2C%22lastName%22%3A%22Djebar%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Rachid%22%2C%22lastName%22%3A%22Amara%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frida%20Ben%20Rais%22%2C%22lastName%22%3A%22Lasram%22%7D%5D%2C%22abstractNote%22%3A%22Estuaries%20are%20highly%20important%20nursery%20habitats%20for%20a%20range%20of%20fish%20species%20because%20they%20provide%20refuge%20and%20food%2C%20especially%20for%20juveniles.%20However%2C%20the%20importance%20of%20specific%20salinity%20zones%20and%20adjacent%20shallow%20marine%20habitats%20%28subtidal%20and%20surf%20zones%29%20for%20fish%20feeding%20is%20not%20well%20understood%2C%20particularly%20in%20small%20macrotidal%20estuaries.%20Using%20the%20example%20of%20the%20Canche%20estuary%2C%20which%20is%20considered%20a%20reference%20for%20small%20macrotidal%20estuaries%20in%20France%2C%20we%20investigated%20the%20structure%20and%20seasonal%20variability%20in%20fish%20food%20webs%20based%20on%20stable%20carbon%20and%20nitrogen%20isotope%20analysis.%20Our%20results%20provide%20a%20new%20vision%20of%20the%20Canche%20estuary%2C%20which%20has%20been%20considered%20a%20major%20feeding%20ground%20for%20all%20marine%20fish%20that%20spend%20time%20there.%20Based%20on%20delta%20C-13%20results%2C%20our%20results%20revealed%20that%20organic%20matter%20of%20terrestrial%20origin%20has%20little%20influence%20on%20functioning%20of%20the%20Canche%20food%20web%2C%20except%20for%20flounders%20in%20the%20upstream%20area%20of%20the%20estuary.%20Conversely%2C%20microphytobenthos%20and%20marine%20particulate%20organic%20matter%20contribute%20most%20to%20the%20food%20web%20of%20fish%20in%20the%20estuary.%20Our%20study%20also%20revealed%20that%20some%20fish%20species%20visit%20the%20estuary%20for%20reasons%20other%20than%20feeding%2C%20such%20as%20to%20avoid%20predation%20or%20because%20they%20are%20carried%20by%20the%20tide.%20This%20work%20confirmed%20the%20suitability%20of%20using%20stable%20isotopes%20to%20trace%20fish%20fidelity%20to%20feeding%20grounds%20less%20than%2010%20km%20apart.%20%28C%29%202021%20Elsevier%20B.V.%20All%20rights%20reserved.%22%2C%22date%22%3A%22MAY%202021%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.rsma.2021.101694%22%2C%22ISSN%22%3A%222352-4855%22%2C%22url%22%3A%22%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22PCQMC87R%22%5D%2C%22dateModified%22%3A%222021-07-03T08%3A05%3A39Z%22%7D%7D%2C%7B%22key%22%3A%2239HG8J9N%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Pelage%20et%20al.%22%2C%22parsedDate%22%3A%222021-04-05%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EPelage%2C%20L.%2C%20Gonzalez%2C%20J.%20G.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Ferreira%2C%20V.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Lucena-Fr%26%23xE9%3Bdou%2C%20F.%2C%20%26amp%3B%20Fr%26%23xE9%3Bdou%2C%20T.%20%282021%29.%20Importance%20of%20estuary%20morphology%20for%20ecological%20connectivity%20with%20their%20adjacent%20coast%3A%20A%20case%20study%20in%20Brazilian%20tropical%20estuaries.%20%3Ci%3EEstuarine%2C%20Coastal%20and%20Shelf%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E251%3C%5C%2Fi%3E%2C%20107184.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2021.107184%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2021.107184%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D39HG8J9N%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Importance%20of%20estuary%20morphology%20for%20ecological%20connectivity%20with%20their%20adjacent%20coast%3A%20A%20case%20study%20in%20Brazilian%20tropical%20estuaries%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Latifa%22%2C%22lastName%22%3A%22Pelage%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J%5Cu00falio%20Guazzelli%22%2C%22lastName%22%3A%22Gonzalez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fran%5Cu00e7ois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valdimere%22%2C%22lastName%22%3A%22Ferreira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fl%5Cu00e1via%22%2C%22lastName%22%3A%22Lucena-Fr%5Cu00e9dou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Fr%5Cu00e9dou%22%7D%5D%2C%22abstractNote%22%3A%22Coastal%20habitats%20are%20interlinked%20by%20ecological%20connectivity%2C%20defined%20as%20the%20exchange%20of%20organic%20matter%20or%20organisms%20between%20habitats.%20The%20degree%20of%20this%20connectivity%20will%20depend%20in%20particular%20on%20the%20geometric%20properties%20of%20the%20landscape.%20The%20increasing%20anthropogenic%20alterations%20in%20estuaries%20therefore%20raises%20the%20need%20to%20understand%20how%20their%20morphological%20characteristics%20influence%20fluxes%20between%20habitats.%20We%20used%20stable%20isotopes%20to%20investigate%20the%20variability%20of%20ecological%20connectivity%20between%20three%20estuaries%20and%20their%20adjacent%20coastal%20areas%20by%20tracking%20the%20origin%20of%20the%20organic%20matter%20%28estuarine%20vs%20coastal%29%20underlying%20the%20diet%20of%20the%20migrant%20species%20Eucinostomus%20argenteus.%20The%20chosen%20estuaries%20were%20geomorphologically%20distinct%2C%20exhibiting%2C%20in%20particular%2C%20differences%20in%20their%20degree%20of%20connection%20to%20the%20sea%2C%20corresponding%20to%20the%20morphological%20features%20%28shape%2C%20mouth%20width%29%20controlling%20key%20physico-chemical%20variables%20in%20this%20habitat%20%28e.g.%20salinity%29.%20The%20sampling%20of%20the%20basal%20food%20sources%20contributing%20to%20the%20food%20web%20was%20performed%20in%20the%20three%20estuaries%20and%20in%20their%20adjacent%20coasts.%20The%20variability%20in%20stable%20isotope%20ratios%20between%20estuaries%20was%20examined%20for%20both%20fish%20and%20sources%20of%20organic%20matter.%20In%20the%20three%20estuaries%2C%20Bayesian%20models%20were%20applied%20for%20each%20season%20%28dry%20and%20rainy%29%20to%20quantify%20the%20relative%20contribution%20of%20sources%20from%20estuarine%20and%20coastal%20environments%20supporting%20the%20diet%20of%20the%20silver%20mojarra.%20The%20share%20of%20coastal%20organic%20matter%20increased%20with%20the%20degree%20of%20sea%20connection%2C%20indicating%20that%20the%20properties%20of%20the%20seascape%20can%20regulate%20the%20intensity%20of%20interactions%20between%20ecosystems.%20Variations%20in%20ecological%20connectivity%20are%20likely%20to%20affect%20the%20functioning%20of%20ecosystems%20as%20they%20influence%20trophic%20pathways%20and%20energy%20flows%20between%20adjacent%20habitats.%20Morphological%20modifications%20could%20thus%20significantly%20disturb%20ecosystems%20by%20altering%20the%20structure%20of%20food%20web%2C%20thereby%20affecting%20certain%20ecosystem%20services%20such%20as%20the%20availability%20of%20living%20marine%20resources.%22%2C%22date%22%3A%222021-04-05%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.ecss.2021.107184%22%2C%22ISSN%22%3A%220272-7714%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0272771421000202%22%2C%22collections%22%3A%5B%22PCQMC87R%22%5D%2C%22dateModified%22%3A%222023-04-17T13%3A08%3A03Z%22%7D%7D%2C%7B%22key%22%3A%22537AI3G2%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Lira%20et%20al.%22%2C%22parsedDate%22%3A%222021-02-08%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELira%2C%20A.%20S.%2C%20Lucena-Fredou%2C%20F.%2C%20Menard%2C%20F.%2C%20Fredou%2C%20T.%2C%20Gonzalez%2C%20J.%20G.%2C%20Ferreira%2C%20V.%2C%20Rosa%20Filho%2C%20J.%20S.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20%26amp%3B%20Le%20Loc%26%23x2019%3Bh%2C%20F.%20%282021%29.%20Trophic%20structure%20of%20a%20nektobenthic%20community%20exploited%20by%20a%20multispecific%20bottom%20trawling%20fishery%20in%20Northeastern%20Brazil.%20%3Ci%3EPlos%20One%3C%5C%2Fi%3E%2C%20%3Ci%3E16%3C%5C%2Fi%3E%282%29%2C%20e0246491.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1371%5C%2Fjournal.pone.0246491%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1371%5C%2Fjournal.pone.0246491%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D537AI3G2%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20structure%20of%20a%20nektobenthic%20community%20exploited%20by%20a%20multispecific%20bottom%20trawling%20fishery%20in%20Northeastern%20Brazil%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alex%20Souza%22%2C%22lastName%22%3A%22Lira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Flavia%22%2C%22lastName%22%3A%22Lucena-Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Menard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Julio%20Guazzelli%22%2C%22lastName%22%3A%22Gonzalez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valdimere%22%2C%22lastName%22%3A%22Ferreira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jose%20Souto%22%2C%22lastName%22%3A%22Rosa%20Filho%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%5D%2C%22abstractNote%22%3A%22We%20used%20complementary%20stable%20isotope%20%28SIA%29%20and%20stomach%20content%20%28SCA%29%20analyses%20to%20investigate%20feeding%20relationships%20among%20species%20of%20the%20nektobenthic%20communities%20and%20the%20potential%20ecological%20effects%20of%20the%20bottom%20trawling%20of%20a%20coastal%20ecosystem%20in%20northeastern%20Brazil.%20Carbon%20%28delta%20C-13%29%20and%20nitrogen%20%28delta%20N-15%29%20compositions%20were%20determined%20for%20five%20basal%20sources%20and%2028%20consumers%2C%20from%20zooplankton%20to%20shrimp%20and%20fish%20species.%20Fishes%20and%20basal%20sources%20showed%20a%20broad%20range%20of%20delta%20N-15%20%28fishes%3A%206.49-14.94%20parts%20per%20thousand%3B%20sources%3A%202.58-6.79%20parts%20per%20thousand%29%20and%20delta%20C-13%20values%20%28fishes%3A%20-23.86%20to%20-13.71%20parts%20per%20thousand%3B%20sources%3A%20-24.32%20to%20-13.53%20parts%20per%20thousand%29%2C%20while%20shrimps%20and%20crabs%20exhibited%20similar%20nitrogen%20and%20carbon%20ratios.%20Six%20trophic%20consumer%20groups%20were%20determined%20among%20zooplankton%2C%20crustaceans%20and%20fishes%20by%20SIA%2C%20with%20trophic%20pathways%20associated%20mostly%20with%20benthic%20sources.%20SCA%20results%20indicated%20a%20preference%20for%20benthic%20invertebrates%2C%20mainly%20worms%2C%20crabs%20and%20shrimps%2C%20as%20prey%20for%20the%20fish%20fauna%2C%20highlighting%20their%20importance%20in%20the%20food%20web.%20In%20overall%2C%20differences%20between%20SCA%20and%20the%20SIA%20approaches%20were%20observed%2C%20except%20for%20groups%20composed%20mainly%20for%20shrimps%20and%20some%20species%20of%20high%20delta%20N-15%20values%2C%20mostly%20piscivorous%20and%20zoobenthivores.%20Given%20the%20absence%20of%20regulation%20for%20bottom%20trawling%20activities%20in%20the%20area%2C%20the%20cumulative%20effects%20of%20trawling%20on%20population%20parameters%2C%20species%20composition%2C%20potentially%20decreasing%20the%20abundance%20of%20benthic%20preys%20%28e.g.%2C%20shrimps%2C%20worms%20and%20crabs%29%20may%20lead%20to%20changes%20in%20the%20trophic%20structure%20potentially%20affect%20the%20food%20web%20and%20the%20sustainability%20of%20the%20fishery.%22%2C%22date%22%3A%22FEB%208%202021%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1371%5C%2Fjournal.pone.0246491%22%2C%22ISSN%22%3A%221932-6203%22%2C%22url%22%3A%22%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22PCQMC87R%22%5D%2C%22dateModified%22%3A%222021-03-26T09%3A37%3A29Z%22%7D%7D%2C%7B%22key%22%3A%22MPQZCB2A%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Sardenne%20et%20al.%22%2C%22parsedDate%22%3A%222021-02%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ESardenne%2C%20F.%2C%20Bodin%2C%20N.%2C%20Barret%2C%20L.%2C%20Blamey%2C%20L.%2C%20Govinden%2C%20R.%2C%20Gabriel%2C%20K.%2C%20Mangroo%2C%20R.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Bideau%2C%20A.%2C%20Grand%2C%20F.%20L.%2C%20Sabino%2C%20M.%2C%20Bustamante%2C%20P.%2C%20%26amp%3B%20Rowat%2C%20D.%20%282021%29.%20Diet%20of%20spiny%20lobsters%20from%20Mahe%20Island%20reefs%2C%20Seychelles%20inferred%20by%20trophic%20tracers.%20%3Ci%3ERegional%20Studies%20in%20Marine%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E42%3C%5C%2Fi%3E%2C%20101640.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.rsma.2021.101640%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.rsma.2021.101640%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DMPQZCB2A%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Diet%20of%20spiny%20lobsters%20from%20Mahe%20Island%20reefs%2C%20Seychelles%20inferred%20by%20trophic%20tracers%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fany%22%2C%22lastName%22%3A%22Sardenne%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nathalie%22%2C%22lastName%22%3A%22Bodin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Leo%22%2C%22lastName%22%3A%22Barret%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Laura%22%2C%22lastName%22%3A%22Blamey%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Rodney%22%2C%22lastName%22%3A%22Govinden%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Kettyna%22%2C%22lastName%22%3A%22Gabriel%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Rosabella%22%2C%22lastName%22%3A%22Mangroo%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Antoine%22%2C%22lastName%22%3A%22Bideau%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fabienne%20Le%22%2C%22lastName%22%3A%22Grand%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Magali%22%2C%22lastName%22%3A%22Sabino%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Paco%22%2C%22lastName%22%3A%22Bustamante%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Rowat%22%7D%5D%2C%22abstractNote%22%3A%22Spiny%20lobsters%20%28Panulirus%20longipes%2C%20P.%20penicillatus%20and%20P.%20versicolor%29%20are%20an%20important%20resource%20in%20Seychelles%2C%20where%20they%20inhabit%20coastal%20carbonate%20and%20granite%20reefs%20that%20have%20been%20impacted%20by%20multiple%20coral%20bleaching%20events%20over%20the%20past%20two%20decades.%20Little%20is%20known%20about%20their%20biology%20and%20ecology%20in%20this%20region.%20Interspecific%20competition%20for%20food%20resources%20was%20previously%20suggested%2C%20but%20no%20quantitative%20data%20on%20the%20diet%20of%20spiny%20lobsters%20were%20available.%20Using%20carbon%20and%20nitrogen%20stable%20isotope%20compositions%20and%20fatty%20acid%20profiles%20of%20three%20spiny%20lobster%20species%20and%20their%20potential%20prey%2C%20a%20Bayesian%20mixing%20model%20for%20diet%20estimation%20was%20applied%20to%20compare%20the%20diet%20proportions%20of%20spiny%20lobsters%20among%20species%20and%20between%20reef%20types%20%28carbonate%20and%20granite%20reefs%29.%20Model%20outputs%20suggested%20the%20three%20lobster%20species%20consume%20mainly%20crustaceans%20%28Anomoura%20hermit%20crabs%3B%20half%20of%20the%20diet%29%2C%20then%20Echinoidea%20%28sea%20urchins%29%2C%20algae%20and%20molluscs.%20P.%20versicolor%20was%20found%20to%20consume%20slightly%20more%20molluscs%20and%20algae%20than%20the%20two%20other%20studied%20species%2C%20which%20was%20consistent%20with%20its%20lower%20trophic%20level%20%282.4%20vs%202.8%20for%20the%20two%20other%20species%29.%20Trophic%20level%20did%20not%20increase%20with%20carapace%20length%20of%20spiny%20lobsters%2C%20but%20large%20individuals%20had%20higher%20carbon%20isotopic%20values%20suggesting%20that%20they%20might%20feed%20closer%20to%20the%20coast%20or%20more%20on%20detritus%20feeders%20than%20their%20smaller%20congeners.%20Diets%20of%20spiny%20lobsters%20were%20fairly%20similar%20between%20carbonate%20and%20granite%20reefs%2C%20except%20that%20lobster%20inhabiting%20granite%20reefs%20consumed%20more%20sea%20urchins.%20While%20our%20overall%20findings%20were%20consistent%20with%20gut%20contents%20of%20Panulirus%20spp.%20from%20other%20world%20regions%2C%20they%20should%20be%20confirmed%2C%20as%20the%20discrimination%20of%20several%20prey%20based%20on%20trophic%20tracers%20was%20low%2C%20which%20increased%20mixing%20model%20uncertainty.%20%28C%29%202021%20Elsevier%20B.V.%20All%20rights%20reserved.%22%2C%22date%22%3A%22FEB%202021%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.rsma.2021.101640%22%2C%22ISSN%22%3A%222352-4855%22%2C%22url%22%3A%22%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22PCQMC87R%22%5D%2C%22dateModified%22%3A%222021-06-20T15%3A01%3A30Z%22%7D%7D%2C%7B%22key%22%3A%22BFV34D75%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Figueiredo%20et%20al.%22%2C%22parsedDate%22%3A%222020-12-01%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EFigueiredo%2C%20G.%20G.%20A.%20A.%20de%2C%20Schwamborn%2C%20R.%2C%20Bertrand%2C%20A.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20%26amp%3B%20Le%20Loc%26%23x2019%3Bh%2C%20F.%20%282020%29.%20Body%20size%20and%20stable%20isotope%20composition%20of%20zooplankton%20in%20the%20western%20tropical%20Atlantic.%20%3Ci%3EJournal%20of%20Marine%20Systems%3C%5C%2Fi%3E%2C%20%3Ci%3E212%3C%5C%2Fi%3E%2C%20103449.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.jmarsys.2020.103449%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.jmarsys.2020.103449%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DBFV34D75%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Body%20size%20and%20stable%20isotope%20composition%20of%20zooplankton%20in%20the%20western%20tropical%20Atlantic%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gabriela%20Guerra%20Ara%5Cu00fajo%20Abrantes%20de%22%2C%22lastName%22%3A%22Figueiredo%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ralf%22%2C%22lastName%22%3A%22Schwamborn%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Arnaud%22%2C%22lastName%22%3A%22Bertrand%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fran%5Cu00e7ois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%5D%2C%22abstractNote%22%3A%22Size-based%20approaches%20are%20paramount%20tools%20for%20the%20study%20of%20marine%20food%20webs.%20Here%2C%20we%20investigated%20the%20relationship%20between%20zooplankton%20body%20size%2C%20stable%20isotope%20composition%20and%20trophic%20level%20%28TL%29%20along%20a%20large-scale%20onshore-offshore%20gradient%20in%20the%20western%20tropical%20Atlantic.%20Samples%20were%20obtained%20on%20the%20Brazilian%20continental%20shelf%2C%20slope%20and%20in%20oceanic%20waters%20%28off%20Fernando%20de%20Noronha%20archipelago%20and%20Rocas%20Atoll%29%20in%20September%20and%20October%202015.%20Zooplankton%20was%20sieved%20into%20five%20size%20fractions.%20Zooplankton%20was%20dominated%20by%20copepods%2C%20except%20for%20the%20largest%20%28%3E2000%5Cu00a0%5Cu03bcm%29%20size%20fraction%2C%20that%20showed%20a%20high%20biovolume%20of%20chaetognaths%2C%20decapods%2C%20and%20fish%20larvae.%20Maximum%20zooplankton%20abundance%20and%20biovolume%20was%20found%20at%20the%20continental%20slope.%20POM%20showed%20consistently%20lower%20%5Cu03b413C%20than%20zooplankton%2C%20indicating%20a%20selective%20use%20of%2013C-rich%20primary%20food%20sources%20by%20zooplankton.%20Particulate%20organic%20matter%20%28POM%29%20was%20more%2013C-enriched%20in%20shelf%20areas%20%28average%3A%20%5Cu221222.8%2C%20%5Cu221223.6%20and%5Cu00a0%5Cu2212%5Cu00a024.3%5Cu2030%20at%20the%20shelf%2C%20slope%20and%20oceanic%20islands%2C%20respectively%29%2C%20probably%20due%20to%20the%20higher%20abundance%20of%20diatoms%20nearshore.%20POM%20had%20%5Cu03b415N%20values%20between%202.5%20and%206.9%5Cu2030%20%28average%3A%204.0%2C%204.9%20and%204.2%5Cu2030%20at%20the%20shelf%2C%20slope%20and%20oceanic%20islands%2C%20respectively%29.%20Zooplankton%20%5Cu03b415N%20and%20TL%20increased%20with%20body%20size.%20The%20%5Cu03b415N%20of%20the%20200%5Cu2013500%5Cu00a0%5Cu03bcm%20size%20fraction%20was%20used%20as%20baseline%20for%20TL%20estimation.%20Oceanic%20areas%20%28average%20baseline%20%5Cu03b415N%5Cu00a0%3D%5Cu00a05.8%5Cu2030%5Cu00a0%5Cu00b1%5Cu00a00.52%2C%20n%5Cu00a0%3D%5Cu00a014%29%20showed%20a%20higher%20baseline%20%5Cu03b415N%20than%20the%20shelf%20%28average%5Cu00a0%3D%5Cu00a03.9%5Cu2030%5Cu00a0%5Cu00b1%5Cu00a00.69%2C%20n%5Cu00a0%3D%5Cu00a09%29%20and%20the%20slope%20areas%20%28average%5Cu00a0%3D%5Cu00a03.1%5Cu2030%5Cu00a0%5Cu00b1%5Cu00a00.93%2C%20n%5Cu00a0%3D%5Cu00a09%29.%20In%20spite%20of%20differing%20baselines%2C%20the%20%5Cu03b415N%20data%20produced%20a%20consistent%20pattern%20of%20log-linear%20increase%20in%20TL%20with%20increasing%20size%2C%20in%20all%20areas.%20The%20choice%20of%20input%20trophic%20enrichment%20factor%20%28TEF%29%20values%20only%20slightly%20changed%20the%20log10%20%28body%20size%29%20vs%20TL%20slopes%2C%20but%20this%20choice%20had%20a%20considerable%20effect%20on%20the%20estimates%20of%20predator%5C%2Fprey%20size%20ratio%20%28PPSR%29%20and%20predator%5C%2Fprey%20mass%20ratio%20%28PPMR%29.%20Using%20a%20TEF%20above%202.3%20leads%20to%20unrealistic%20PPSR%20and%20PPMR%20estimates.%20Overall%20average%20slope%20was%200.59%5Cu00a0%5Cu00b1%5Cu00a00.08%20TL%20%5Cu03bcm%5Cu22121%20with%20TEF%5Cu00a0%3D%5Cu00a02.3%20and%200.42%5Cu00a0%5Cu00b1%5Cu00a00.07%20TL%20%5Cu03bcm%5Cu22121%20with%20TEF%5Cu00a0%3D%5Cu00a03.2.%22%2C%22date%22%3A%22December%201%2C%202020%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.jmarsys.2020.103449%22%2C%22ISSN%22%3A%220924-7963%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0924796320301457%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22Y5CNVM8Y%22%5D%2C%22dateModified%22%3A%222021-05-29T17%3A08%3A55Z%22%7D%7D%2C%7B%22key%22%3A%2242KBLPFU%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Sardenne%20et%20al.%22%2C%22parsedDate%22%3A%222020-12%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ESardenne%2C%20F.%2C%20Bodin%2C%20N.%2C%20Medieu%2C%20A.%2C%20Antha%2C%20M.%2C%20Arrisol%2C%20R.%2C%20Le%20Grand%2C%20F.%2C%20Bideau%2C%20A.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20%26amp%3B%20Chassot%2C%20E.%20%282020%29.%20Benefit-risk%20associated%20with%20the%20consumption%20of%20fish%20bycatch%20from%20tropical%20tuna%20fisheries.%20%3Ci%3EEnvironmental%20Pollution%3C%5C%2Fi%3E%2C%20%3Ci%3E267%3C%5C%2Fi%3E%2C%20115614.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.envpol.2020.115614%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.envpol.2020.115614%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D42KBLPFU%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Benefit-risk%20associated%20with%20the%20consumption%20of%20fish%20bycatch%20from%20tropical%20tuna%20fisheries%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fany%22%2C%22lastName%22%3A%22Sardenne%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nathalie%22%2C%22lastName%22%3A%22Bodin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anais%22%2C%22lastName%22%3A%22Medieu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Marisa%22%2C%22lastName%22%3A%22Antha%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Rona%22%2C%22lastName%22%3A%22Arrisol%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fabienne%22%2C%22lastName%22%3A%22Le%20Grand%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Antoine%22%2C%22lastName%22%3A%22Bideau%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Emmanuel%22%2C%22lastName%22%3A%22Chassot%22%7D%5D%2C%22abstractNote%22%3A%22Mercury%2C%20omega-3%20%28docosahexaenoic%20acid%2C%20DHA%20and%20eicosapentaenoic%20acid%2C%20EPA%29%20and%20macronutrients%20%28fat%20and%20proteins%29%20were%20quantified%20on%20a%20wet%20weight%20%28ww%29%20basis%20in%2020%20species%20of%20fish%20taken%20as%20bycatch%20in%20tropical%20tuna%20fisheries.%20Based%20on%20a%20hazard%20quotient%20taking%20into%20account%20mercury%20and%20omega-3%20contents%2C%20a%20benefit-risk%20assessment%20for%20the%20consumption%20of%20these%20pelagic%20species%20was%20conducted%20for%20three%20people%20categories%3A%20young%20children%2C%20children%20and%20adults.%20All%20fish%20bycatch%20were%20found%20to%20be%20an%20excellent%20source%20of%20proteins%20%28min%20-max%20%3D%2014.4-25.2%20g%5C%2F100%20g%20fillet%29%2C%20had%20low%20omega-6%5C%2Fomega-3%20ratios%20%28%3C1%2C%20except%20for%20silky%20shark%29%2C%20and%20had%20mercury%20content%20below%20the%20safety%20limits%20defined%20by%20sanitary%20agencies.%20Silky%20shark%20and%20Istiophoridae%20had%20the%20highest%20mercury%20contents%20%28min%20-max%20%3D%200.029-0.317%20ppm%20ww%29.%20Omega-3%20contents%20were%20the%20lowest%20in%20silky%20shark%20%280.2%200.2%20mg%5C%2F100%20g%20fillet%29%20and%20the%20highest%20in%20striped%20marlin%20%283.6%20%2B%5C%2F-%203.2%20g%5C%2F%20100%20g%20fillet%29.%20Billfishes%20%28Istiophoridae%2C%20including%20striped%20marlin%29%2C%20minor%20tunas%20%28Scombridae%29%2C%20and%20Carangidae%20had%20the%20highest%20omega-3%20contents%20%28min%20-max%20%3D%200.68-7.28%20g%5C%2F100%20g%20fillet%29.%20The%20highest%20hazard%20quotient%20values%20obtained%20for%20silky%20shark%20and%20great%20barracuda%20reflected%20a%20lower%20nutritional%20benefit%20%28i.e.%2C%20low%20omega-3%20source%29%20than%20risk%20%28i.e.%2C%20mercury%20exposure%29%2C%20making%20them%20not%20advisable%20for%20consumption.%20Eight%20species%20had%20low%20hazard%20quotients%2C%20and%20among%20them%20cottonmouth%20jack%20and%20flat%20needlefish%20were%20found%20of%20high%20health%20interest%20%28high%20protein%2C%20moderate%20fat%20contents%2C%20and%20low%20omega-6%5C%2Fomega-3%20ratio%29.%20A%20daily%20serving%20portion%20of%2085-200%20g%20%28according%20to%20people%20category%29%20can%20be%20recommended%20for%20these%20species.%20Batfish%2C%20and%20to%20a%20lower%20extent%20pompano%20dolphinfish%20and%20brassy%20chub%2C%20can%20also%20be%20consumed%20safely%20and%20would%20provide%20greater%20health%20benefits%20than%20risks.%20These%20results%20advocate%20for%20a%20better%20access%20of%20these%20species%20to%20local%20populations.%20%28C%29%202020%20Elsevier%20Ltd.%20All%20rights%20reserved.%22%2C%22date%22%3A%22DEC%202020%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.envpol.2020.115614%22%2C%22ISSN%22%3A%220269-7491%22%2C%22url%22%3A%22%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22Y5CNVM8Y%22%5D%2C%22dateModified%22%3A%222021-03-31T14%3A39%3A56Z%22%7D%7D%2C%7B%22key%22%3A%22XMZ5I7DD%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Le%20Croizier%20et%20al.%22%2C%22parsedDate%22%3A%222020-08-01%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELe%20Croizier%2C%20G.%2C%20Lorrain%2C%20A.%2C%20Schaal%2C%20G.%2C%20Ketchum%2C%20J.%2C%20Hoyos-Padilla%2C%20M.%2C%20Besnard%2C%20L.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20%26amp%3B%20Point%2C%20D.%20%282020%29.%20Trophic%20resources%20and%20mercury%20exposure%20of%20two%20silvertip%20shark%20populations%20in%20the%20Northeast%20Pacific%20Ocean.%20%3Ci%3EChemosphere%3C%5C%2Fi%3E%2C%20%3Ci%3E253%3C%5C%2Fi%3E%2C%20126645.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.chemosphere.2020.126645%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.chemosphere.2020.126645%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DXMZ5I7DD%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20resources%20and%20mercury%20exposure%20of%20two%20silvertip%20shark%20populations%20in%20the%20Northeast%20Pacific%20Ocean%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ga%5Cu00ebl%22%2C%22lastName%22%3A%22Le%20Croizier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gauthier%22%2C%22lastName%22%3A%22Schaal%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22James%22%2C%22lastName%22%3A%22Ketchum%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mauricio%22%2C%22lastName%22%3A%22Hoyos-Padilla%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Lucien%22%2C%22lastName%22%3A%22Besnard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fran%5Cu00e7ois%22%2C%22lastName%22%3A%22Le%20Loc%5Cu2019h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Point%22%7D%5D%2C%22abstractNote%22%3A%22Worldwide%20shark%20populations%20have%20experienced%20rapid%20declines%20over%20the%20last%20decades%2C%20mainly%20due%20to%20overfishing.%20Marine%20protected%20areas%20%28MPAs%29%20have%20thus%20become%20an%20indispensable%20tool%20for%20the%20protection%20of%20these%20marine%20predators.%20Two%20recently-created%20MPAs%20in%20the%20Northeast%20Pacific%20Ocean%2C%20the%20Revillagigedo%20National%20Park%20and%20Clipperton%20Atoll%2C%20are%20characterized%20by%20different%20trophic%20structures%20potentially%20influencing%20the%20trophic%20niche%20and%20contaminant%20exposure%20of%20resident%20sharks%20in%20these%20two%20sites.%20In%20this%20context%2C%20we%20used%20carbon%20%28%5Cu03b413C%29%20and%20nitrogen%20%28%5Cu03b415N%29%20stable%20isotope%20analyzes%20as%20well%20as%20total%20mercury%20concentrations%20%28%5BTHg%5D%29%20to%20assess%20the%20effect%20of%20foraging%20site%20on%20the%20trophic%20niche%20and%20Hg%20levels%20of%20juvenile%20silvertip%20%28ST%29%20sharks%20Carcharhinus%20albimarginatus.%20Analyzing%20fin%20clip%20samples%20from%20Revillagigedo%20and%20Clipperton%2C%20we%20found%20that%20shark%20%5Cu03b415N%20varied%20spatially%20in%20relation%20to%20%5Cu03b415N%20baselines%2C%20suggesting%20similar%20trophic%20position%20in%20both%20MPAs.%20Moreover%2C%20%5Cu03b413C%20values%20indicated%20that%20ST%20sharks%20from%20Revillagigedo%20would%20feed%20on%20different%20food%20webs%20%28i.e.%20both%20benthic%20and%20pelagic%29%20while%20individuals%20from%20Clipperton%20would%20only%20rely%20on%20benthic%20food%20webs.%20These%20differences%20between%20MPAs%20led%20to%20a%20weak%20overlap%20of%20isotopic%20niches%20between%20the%20two%20populations%2C%20highlighting%20the%20site%20residency%20of%20juvenile%20ST%20sharks.%20Within%20each%20population%2C%20%5BTHg%5D%20was%20not%20correlated%20with%20trophic%20tracers%20%28%5Cu03b415N%20and%20%5Cu03b413C%29%20and%20was%20also%20similar%20between%20populations.%20This%20study%20revealed%20no%20influence%20of%20site%20or%20food%20web%20in%20%5BTHg%5D%20and%20raises%20the%20question%20of%20the%20origin%20of%20Hg%20exposure%20for%20reef%20shark%20populations%20in%20the%20Northeast%20Pacific%20Ocean.%22%2C%22date%22%3A%22August%201%2C%202020%22%2C%22language%22%3A%22en%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.chemosphere.2020.126645%22%2C%22ISSN%22%3A%220045-6535%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0045653520308389%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22Y5CNVM8Y%22%5D%2C%22dateModified%22%3A%222021-05-29T17%3A27%3A11Z%22%7D%7D%2C%7B%22key%22%3A%225B7Y3N3W%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Thibault%20et%20al.%22%2C%22parsedDate%22%3A%222020-03%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EThibault%2C%20M.%2C%20Duprey%2C%20N.%2C%20Gillikin%2C%20D.%20P.%2C%20Th%26%23xE9%3Bbault%2C%20J.%2C%20Douillet%2C%20P.%2C%20Chauvaud%2C%20L.%2C%20Amice%2C%20E.%2C%20Munaron%2C%20J.%20M.%2C%20%26amp%3B%20Lorrain%2C%20A.%20%282020%29.%20Bivalve%20%26%23x3B4%3B15N%20isoscapes%20provide%20a%20baseline%20for%20urban%20nitrogen%20footprint%20at%20the%20edge%20of%20a%20World%20Heritage%20coral%20reef.%20%3Ci%3EMarine%20Pollution%20Bulletin%3C%5C%2Fi%3E%2C%20%3Ci%3E152%3C%5C%2Fi%3E%2C%20110870.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2019.110870%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.marpolbul.2019.110870%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D5B7Y3N3W%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Bivalve%20%5Cu03b415N%20isoscapes%20provide%20a%20baseline%20for%20urban%20nitrogen%20footprint%20at%20the%20edge%20of%20a%20World%20Heritage%20coral%20reef%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22M.%22%2C%22lastName%22%3A%22Thibault%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22N.%22%2C%22lastName%22%3A%22Duprey%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22D.%20P.%22%2C%22lastName%22%3A%22Gillikin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J.%22%2C%22lastName%22%3A%22Th%5Cu00e9bault%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22P.%22%2C%22lastName%22%3A%22Douillet%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22L.%22%2C%22lastName%22%3A%22Chauvaud%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22E.%22%2C%22lastName%22%3A%22Amice%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J.%20M.%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22A.%22%2C%22lastName%22%3A%22Lorrain%22%7D%5D%2C%22abstractNote%22%3A%22Eutrophication%20is%20a%20major%20threat%20to%20world%27s%20coral%20reefs.%20Here%2C%20we%20mapped%20the%20distribution%20of%20the%20anthropogenic%20nitrogen%20footprint%20around%20Noumea%2C%20a%20coastal%20city%20surrounded%20by%2015%2C743%20km%282%29%20of%20UNESCO%20listed%20reefs.%20We%20measured%20the%20delta%20N-15%20signature%20of%20348%20long-lived%20benthic%20bivalves%20from%2012%20species%20at%2027%20sites%20and%20interpolated%20these%20to%20generate%20a%20delta%20N-15%20isoscape.%20We%20evaluated%20the%20influence%20of%20water%20residence%20times%20on%20nitrogen%20enrichment%20and%20predicted%20an%20eutrophication%20risk%20at%20the%20UNESCO%20core%20area.%20Nitrogen%20isoscapes%20revealed%20a%20strong%20spatial%20gradient%20%284.3%20to%2011.7%20parts%20per%20thousand%29%20from%20the%20outer%20lagoon%20to%20three%20highly%20exposed%20bays%20of%20Noumea.%20Several%20protected%20reefs%20would%20benefit%20from%20an%20improved%20management%20of%20wastewater%20outputs%2C%20while%20one%20bay%20in%20the%20UNESCO%20core%20area%20may%20suffer%20a%20high%20eutrophication%20risk%20in%20the%20future.%20Our%20study%20reinforces%20the%20usefulness%20of%20using%20benthic%20animals%20to%20characterize%20the%20anthropogenic%20N-footprint%20and%20provide%20a%20necessary%20baseline%20for%20both%20ecologists%20and%20policy%20makers.%22%2C%22date%22%3A%22MAR%202020%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.marpolbul.2019.110870%22%2C%22ISSN%22%3A%220025-326X%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0025326X19310264%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22Y5CNVM8Y%22%5D%2C%22dateModified%22%3A%222022-03-28T06%3A46%3A13Z%22%7D%7D%2C%7B%22key%22%3A%22L6MYSRPZ%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Gonzalez%20et%20al.%22%2C%22parsedDate%22%3A%222019-10-15%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EGonzalez%2C%20J.%20G.%2C%20Menard%2C%20F.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20de%20Andrade%2C%20H.%20A.%2C%20Viana%2C%20A.%20P.%2C%20Ferreira%2C%20V.%2C%20Fredou%2C%20F.%20L.%2C%20Lira%2C%20A.%20S.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20%26amp%3B%20Fredou%2C%20T.%20%282019%29.%20Trophic%20resource%20partitioning%20of%20two%20snook%20fish%20species%20%28Centropomidae%29%20in%20tropical%20estuaries%20in%20Brazil%20as%20evidenced%20by%20stable%20isotope%20analysis.%20%3Ci%3EEstuarine%20Coastal%20and%20Shelf%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E226%3C%5C%2Fi%3E%2C%20UNSP%20106287.%20fdi%3A010076603.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2019.106287%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.ecss.2019.106287%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DL6MYSRPZ%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20resource%20partitioning%20of%20two%20snook%20fish%20species%20%28Centropomidae%29%20in%20tropical%20estuaries%20in%20Brazil%20as%20evidenced%20by%20stable%20isotope%20analysis%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Julio%20Guazzelli%22%2C%22lastName%22%3A%22Gonzalez%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Menard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Humber%20Agrelli%22%2C%22lastName%22%3A%22de%20Andrade%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Andrea%20Pontes%22%2C%22lastName%22%3A%22Viana%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Valdimere%22%2C%22lastName%22%3A%22Ferreira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Flavia%20Lucena%22%2C%22lastName%22%3A%22Fredou%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Alex%20Souza%22%2C%22lastName%22%3A%22Lira%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Thierry%22%2C%22lastName%22%3A%22Fredou%22%7D%5D%2C%22abstractNote%22%3A%22We%20investigated%20the%20trophic%20niches%20and%20the%20resource%20partitioning%20of%20two%20snook%20species%2C%20the%20common%20%28Centropomus%20undecimalis%29%20and%20the%20fat%20snook%20%28C.%20parallelus%29%2C%20in%20four%20tropical%20estuaries%20of%20the%20northeastern%20Brazil%2C%20using%20stable%20isotope%20analyses%20of%20carbon%20%28delta%20C-13%29%20and%20nitrogen%20%28delta%20N-15%29.%20Fish%20specimens%2C%20mainly%20juveniles%2C%20basal%20resources%20and%20a%20primary%20consumer%20were%20collected%20in%202015%20during%20dry%20and%20rainy%20seasons%20in%20all%20estuaries%2C%20which%20exhibited%20differences%20in%20system%20size%2C%20geomorphologic%20shapes%2C%20levels%20of%20sea%20access%20and%20anthropic%20pressures.%20Potential%20effect%20of%20factors%20like%20fish%20body%20length%2C%20estuary%20and%20seasonality%20on%20isotope%20ratios%20were%20investigated.%20Positive%20relationships%20between%20the%20size%20of%20fish%20and%20delta%20N-15%20values%20were%20found%2C%20regardless%20the%20species.%20Our%20results%20indicated%20that%20snooks%20can%20be%20characterized%20as%20secondary%20consumers%20and%20have%20close%20trophic%20niches%20in%20most%20estuaries.%20Trophic%20overlaps%20were%20more%20pronounced%20within%20the%20largest%20estuaries%20%28Catuama%20and%20Santa%20Cruz%29%2C%20whereas%20smaller%20systems%20that%20have%20restricted%20connections%20to%20the%20sea%20presented%20low%20isotopic%20niche%20overlap%20between%20both%20species%20%28Suape%20and%20Sirinhaem%29.%20Moreover%2C%20a%20higher%20variability%20of%20delta%20C-13%20and%20delta%20N-15%20values%20in%20snooks%20was%20found%20in%20larger%20estuaries%20undergoing%20stronger%20influences%20from%20coastal%20adjacent%20waters.%20Although%20we%20were%20not%20able%20to%20detect%20clear%20seasonal%20effects%2C%20greater%20isotopic%20overlaps%20were%20found%20during%20the%20rainy%20season.%20Despite%20the%20lack%20of%20intrinsic%20differences%20in%20life%20history%20traits%2C%20both%20species%2C%20dominated%20by%20juveniles%2C%20shared%20similar%20trophic%20niches%20in%20these%20environments.%22%2C%22date%22%3A%22OCT%2015%202019%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.ecss.2019.106287%22%2C%22ISSN%22%3A%220272-7714%22%2C%22url%22%3A%22%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22ZV9XYGXT%22%5D%2C%22dateModified%22%3A%222020-10-29T13%3A57%3A59Z%22%7D%7D%2C%7B%22key%22%3A%22HFY7C3ZH%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Thabet%20et%20al.%22%2C%22parsedDate%22%3A%222019-05%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EThabet%2C%20I.%2C%20Bourgeois%2C%20K.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Abdennadher%2C%20A.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Gharsalli%2C%20M.%2C%20Romdhane%2C%20M.%20S.%2C%20%26amp%3B%20Ben%20Rais%20Lasram%2C%20F.%20%282019%29.%20Trophic%20ecology%20of%20Scopoli%26%23x2019%3Bs%20shearwaters%20during%20breeding%20in%20the%20Zembra%20Archipelago%20%28northern%20Tunisia%29.%20%3Ci%3EMarine%20Biology%3C%5C%2Fi%3E%2C%20%3Ci%3E166%3C%5C%2Fi%3E%285%29%2C%2061.%20%3Ca%20class%3D%27zp-ItemURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1007%5C%2Fs00227-019-3509-1%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1007%5C%2Fs00227-019-3509-1%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DHFY7C3ZH%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20ecology%20of%20Scopoli%27s%20shearwaters%20during%20breeding%20in%20the%20Zembra%20Archipelago%20%28northern%20Tunisia%29%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Intissar%22%2C%22lastName%22%3A%22Thabet%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Karen%22%2C%22lastName%22%3A%22Bourgeois%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aida%22%2C%22lastName%22%3A%22Abdennadher%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Manel%22%2C%22lastName%22%3A%22Gharsalli%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Mohamed%20Salah%22%2C%22lastName%22%3A%22Romdhane%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frida%22%2C%22lastName%22%3A%22Ben%20Rais%20Lasram%22%7D%5D%2C%22abstractNote%22%3A%22While%20breeding%2C%20seabirds%20are%20central-place%20foragers%20requiring%20resources%20to%20sustain%20high-energy%20requirements.%20Therefore%2C%20during%20this%20period%2C%20they%20are%20particularly%20sensitive%20to%20food-resource%20availability%2C%20which%20can%20vary%20within%20and%20between%20years.%20Intra-%20and%20inter-annual%20variations%20in%20Scopoli%27s%20shearwater%20%28Calonectris%20diomedea%29%20trophic%20ecology%20were%20investigated%20at%20its%20largest%20colony%20%28Zembra%20Island%2C%2037%20degrees%2007%2733%20%27%27%20N%2C%2010%20degrees%2048%2723%20%27%27%20E%2C%20Mediterranean%20Sea%29.%20Carbon%20and%20nitrogen%20isotope%20values%20were%20analysed%20in%20the%20blood%20%28adults%20and%20chicks%29%20and%20feathers%20%28adult%20wing%29%20during%20pre-laying%2C%20incubation%2C%20and%20chick-rearing%20in%202015%20and%202016%20to%20assess%20variations%20in%20stable%20isotope%20composition%2C%20isotopic%20niches%2C%20trophic%20levels%2C%20and%20diet%20inferred%20from%20isotope%20mixing%20models.%20Scopoli%27s%20shearwaters%20showed%20variations%20in%20isotopes%20throughout%20the%20breeding%20season%20and%20among%20years%2C%20with%20incubation%20showing%20the%20highest%20delta%20C-13%20and%20delta%20N-15%20values%2C%20trophic%20levels%2C%20inter-annual%20isotopic%20niche%20consistency%2C%20and%20the%20most%20specific%20and%20narrowest%20isotopic%20niche.%20The%20difference%20in%20blood%20delta%20C-13%20values%20between%20adults%20and%20chicks%20suggested%20trophic%20habitat%20segregation%3A%20adults%20feed%20inshore%2C%20while%20chicks%20are%20fed%20more%20oceanic%20prey.%20Stable-isotope%20mixing%20models%20based%20on%20three%20potential%20prey%20groups%20revealed%20that%20the%20diet%20could%20consist%20mainly%20of%20pelagic%20fish%20and%20crustaceans%20throughout%20the%20breeding%20season%2C%20whereas%20non-pelagic%20fish%20and%20cephalopods%20could%20be%20consumed%20more%20sporadically%2C%20mainly%20during%20incubation.%20Feather%20delta%20N-15%20values%20suggested%20that%20the%20adult%20diets%20contained%20more%20zooplankton%20in%202014.%20These%20results%20demonstrated%20the%20Scopoli%27s%20shearwater%20trophic%20ecology%20plasticity%20in%20response%20to%20the%20variable%20nutritional%20demands%20of%20breeding%20phases%20and%20changes%20in%20prey%20availability.%20Scopoli%27s%20shearwaters%20may%2C%20thus%2C%20be%20valuable%20bio-indicators%20of%20small%20pelagic%20fish%20populations%20considered%20critically%20depleted%20in%20the%20Mediterranean.%22%2C%22date%22%3A%22MAY%202019%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1007%5C%2Fs00227-019-3509-1%22%2C%22ISSN%22%3A%220025-3162%22%2C%22url%22%3A%22https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1007%5C%2Fs00227-019-3509-1%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22ZV9XYGXT%22%5D%2C%22dateModified%22%3A%222020-10-29T13%3A50%3A40Z%22%7D%7D%2C%7B%22key%22%3A%2274XLGFIH%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Le%20Croizier%20et%20al.%22%2C%22parsedDate%22%3A%222019-02-10%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELe%20Croizier%2C%20G.%2C%20Schaal%2C%20G.%2C%20Point%2C%20D.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20Machu%2C%20E.%2C%20Fall%2C%20M.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Boye%2C%20A.%2C%20Walter%2C%20P.%2C%20Lae%2C%20R.%2C%20%26amp%3B%20Tito-de-Morais%2C%20L.%20%282019%29.%20Stable%20isotope%20analyses%20revealed%20the%20influence%20of%20foraging%20habitat%20on%20mercury%20accumulation%20in%20tropical%20coastal%20marine%20fish.%20%3Ci%3EScience%20of%20the%20Total%20Environment%3C%5C%2Fi%3E%2C%20%3Ci%3E650%3C%5C%2Fi%3E%2C%202129%26%23x2013%3B2140.%20fdi%3A010074333%26%23x202F%3B%3B%26%23xA0%3B%20https%3A%5C%2F%5C%2Farchimer.ifremer.fr%5C%2Fdoc%5C%2F00458%5C%2F57013%5C%2F.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.scitotenv.2018.09.330%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.scitotenv.2018.09.330%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D74XLGFIH%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Stable%20isotope%20analyses%20revealed%20the%20influence%20of%20foraging%20habitat%20on%20mercury%20accumulation%20in%20tropical%20coastal%20marine%20fish%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gael%22%2C%22lastName%22%3A%22Le%20Croizier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gauthier%22%2C%22lastName%22%3A%22Schaal%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Point%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Francois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Eric%22%2C%22lastName%22%3A%22Machu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Massal%22%2C%22lastName%22%3A%22Fall%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aurelien%22%2C%22lastName%22%3A%22Boye%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Pierre%22%2C%22lastName%22%3A%22Walter%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raymond%22%2C%22lastName%22%3A%22Lae%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Luis%22%2C%22lastName%22%3A%22Tito-de-Morais%22%7D%5D%2C%22abstractNote%22%3A%22Bioaccumulation%20of%20toxic%20metal%20elements%20including%20mercury%20%28Hg%29%20can%20be%20highly%20variable%20in%20marine%20fish%20species.%20Metal%20concentration%20is%20influenced%20by%20various%20species-specific%20physiological%20and%20ecological%20traits%2C%20including%20individual%20diet%20composition%20and%20foraging%20habitat.%20The%20impact%20of%20trophic%20ecology%20and%20habitat%20preference%20on%20Hg%20accumulation%20was%20analyzed%20through%20total%20Hg%20concentration%20and%20stable%20isotope%20ratios%20of%20carbon%20%28delta%20C-13%29%20and%20nitrogen%20%28delta%20N-15%29%20in%20the%20muscle%20of%20132%20fish%20belonging%20to%2023%20different%20species%20from%20the%20Senegalese%20coast%20%28West%20Africa%29%2C%20where%20the%20marine%20ecosystem%20is%20submitted%20to%20nutrient%20inputs%20from%20various%20sources%20such%20as%20upwelling%20or%20rivers.%20Species-specific%20ecological%20traits%20were%20first%20investigated%20and%20results%20showed%20that%20vertical%20%28i.e.%20water%20column%20distribution%29%20and%20horizontal%20habitat%20%28i.e.%20distance%20from%20the%20coast%29%20led%20to%20differential%20Hg%20accumulation%20among%20species.%20Coastal%20and%20demersal%20fish%20were%20more%20contaminated%20than%20offshore%20and%20pelagic%20species.%20Individual%20characteristics%20therefore%20revealed%20an%20increase%20of%20Hg%20concentration%20in%20muscle%20that%20paralleled%20trophic%20level%20for%20some%20locations.%20Considering%20all%20individuals%2C%20the%20main%20carbon%20source%20was%20significantly%20correlated%20with%20Hg%20concentration%2C%20again%20revealing%20a%20higher%20accumulation%20for%20fish%20foraging%20in%20nearshore%20and%20benthic%20habitats.%20The%20large%20intraspecific%20variability%20observed%20in%20stable%20isotope%20signatures%20highlights%20the%20need%20to%20conduct%20ecotoxicological%20studies%20at%20the%20individual%20level%20to%20ensure%20a%20thorough%20understanding%20of%20mechanisms%20driving%20metal%20accumulation%20in%20marine%20fish.%20For%20individuals%20from%20a%20same%20species%20and%20site%2C%20Hg%20variation%20was%20mainly%20explained%20by%20fish%20length%2C%20in%20accordance%20with%20the%20bioaccumulation%20of%20Hg%20over%20time.%20Finally%2C%20Hg%20concentrations%20in%20fish%20muscle%20are%20discussed%20regarding%20their%20human%20health%20impact.%20No%20individual%20exceeded%20the%20current%20maximum%20acceptable%20limit%20for%20seafood%20consumption%20set%20by%20both%20the%20European%20Union%20and%20the%20Food%20and%20Agriculture%20Organization%20of%20the%20United%20Nations.%20However%2C%20overconsumption%20of%20some%20coastal%20demersal%20species%20analyzed%20here%20could%20be%20of%20concern%20regarding%20human%20exposure%20to%20mercury.%20%28C%29%202018%20Elsevier%20B.V.%20All%20rights%20reserved.%22%2C%22date%22%3A%22FEB%2010%202019%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.scitotenv.2018.09.330%22%2C%22ISSN%22%3A%220048-9697%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0048969718337872%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22ZV9XYGXT%22%5D%2C%22dateModified%22%3A%222020-10-29T13%3A51%3A04Z%22%7D%7D%2C%7B%22key%22%3A%22F57G5UC7%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Le%20Croizier%20et%20al.%22%2C%22parsedDate%22%3A%222019-02%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELe%20Croizier%2C%20G.%2C%20Lacroix%2C%20C.%2C%20Artigaud%2C%20S.%2C%20Le%20Floch%2C%20S.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Raffray%2C%20J.%2C%20Penicaud%2C%20V.%2C%20Rouget%2C%20M.-L.%2C%20Lae%2C%20R.%2C%20%26amp%3B%20Tito-de-Morais%2C%20L.%20%282019%29.%20Metal%20subcellular%20partitioning%20determines%20excretion%20pathways%20and%20sensitivity%20to%20cadmium%20toxicity%20in%20two%20marine%20fish%20species.%20%3Ci%3EChemosphere%3C%5C%2Fi%3E%2C%20%3Ci%3E217%3C%5C%2Fi%3E%2C%20754%26%23x2013%3B762.%20fdi%3A010074913%26%23x202F%3B%3B%20https%3A%5C%2F%5C%2Farchimer.ifremer.fr%5C%2Fdoc%5C%2F00464%5C%2F57606%5C%2F.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.chemosphere.2018.10.212%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.chemosphere.2018.10.212%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DF57G5UC7%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Metal%20subcellular%20partitioning%20determines%20excretion%20pathways%20and%20sensitivity%20to%20cadmium%20toxicity%20in%20two%20marine%20fish%20species%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gael%22%2C%22lastName%22%3A%22Le%20Croizier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Camille%22%2C%22lastName%22%3A%22Lacroix%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sebastien%22%2C%22lastName%22%3A%22Artigaud%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Stephane%22%2C%22lastName%22%3A%22Le%20Floch%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean%22%2C%22lastName%22%3A%22Raffray%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Virginie%22%2C%22lastName%22%3A%22Penicaud%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Marie-Laure%22%2C%22lastName%22%3A%22Rouget%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raymond%22%2C%22lastName%22%3A%22Lae%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Luis%22%2C%22lastName%22%3A%22Tito-de-Morais%22%7D%5D%2C%22abstractNote%22%3A%22Subcellular%20cadmium%20%28Cd%29%20partitioning%20was%20investigated%20in%20the%20liver%20of%20two%20marine%20fish%20species%2C%20the%20European%20sea%20bass%20Dicentrarchus%20labrax%20and%20the%20Senegalese%20sole%20Solea%20senegalensis%2C%20dietary%20exposed%20to%20an%20environmentally%20realistic%20Cd%20dose%20for%20two%20months%20followed%20by%20a%20two-month%20depuration.%20The%20two%20species%20displayed%20different%20handling%20strategies%20during%20the%20depuration%20period.%20Cd%20was%20largely%20bound%20to%20detoxifying%20fractions%20such%20as%20heat%20stable%20proteins%20%28HSP%29%20including%20metallothioneins%20%28MT%29%20in%20sea%20bass%2C%20while%20Cd%20was%20more%20linked%20to%20sensitive%20fractions%20such%20as%20organelles%20in%20sole.%20Whole%20liver%20concentrations%20and%20subcellular%20partitioning%20were%20also%20determined%20for%20essential%20elements.%20The%20greatest%20impairment%20of%20essential%20metal%20homeostasis%20due%20to%20Cd%20exposure%20was%20found%20in%20sole.%20These%20elements%20followed%20the%20Cd%20partitioning%20pattern%2C%20suggesting%20that%20they%20are%20involved%20in%20antioxidant%20responses%20against%20Cd%20toxicity.%20Cd%20consumption%20diminished%20sole%20growth%20in%20terms%20of%20body%20weight%2C%20probably%20due%20to%20lipid%20storage%20impairment.%20The%20contrasting%20partitioning%20patterns%20showed%20by%20the%20two%20species%20might%20imply%20different%20pathways%20for%20Cd%20elimination%20from%20the%20liver.%20In%20sea%20bass%2C%20MT-bound%20Cd%20would%20be%20excreted%20through%20bile%20or%20released%20into%20blood%2C%20crossing%20the%20cell%20membrane%20via%20a%20protein%20transporter.%20In%20sole%2C%20MRG-bound%20Cd%20would%20be%20sequestered%20by%20organelles%20before%20being%20released%20into%20the%20blood%20via%20vesicular%20exocytosis.%20These%20distinct%20strategies%20in%20cellular%20Cd%20handling%20in%20the%20liver%20might%20account%20for%20differential%20sensitivity%20to%20Cd%20toxicity%20and%20differential%20Cd%20excretion%20pathways%20between%20the%20two%20marine%20fish%20species.%20%28C%29%202018%20Elsevier%20Ltd.%20All%20rights%20reserved.%22%2C%22date%22%3A%22FEB%202019%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.chemosphere.2018.10.212%22%2C%22ISSN%22%3A%220045-6535%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0045653518320873%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22ZV9XYGXT%22%5D%2C%22dateModified%22%3A%222020-10-29T13%3A51%3A45Z%22%7D%7D%2C%7B%22key%22%3A%22KJN6L6F5%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Espinoza%20et%20al.%22%2C%22parsedDate%22%3A%222017-04%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EEspinoza%2C%20P.%2C%20Lorrain%2C%20A.%2C%20Menard%2C%20F.%2C%20Cherel%2C%20Y.%2C%20Tremblay-Boyer%2C%20L.%2C%20Argu%26%23xEB%3Blles%2C%20J.%2C%20Tafur%2C%20R.%2C%20Bertrand%2C%20S.%2C%20Tremblay%2C%20Y.%2C%20Ayon%2C%20P.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Richard%2C%20P.%2C%20%26amp%3B%20Bertrand%2C%20A.%20%282017%29.%20Trophic%20structure%20in%20the%20northern%20Humboldt%20Current%20system%3A%20new%20perspectives%20from%20stable%20isotope%20analysis.%20%3Ci%3EMarine%20Biology%3C%5C%2Fi%3E%2C%20%3Ci%3E164%3C%5C%2Fi%3E%284%29%2C%2086.%20fdi%3A010069458.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1007%5C%2Fs00227-017-3119-8%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1007%5C%2Fs00227-017-3119-8%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DKJN6L6F5%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20structure%20in%20the%20northern%20Humboldt%20Current%20system%3A%20new%20perspectives%20from%20stable%20isotope%20analysis%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Pepe%22%2C%22lastName%22%3A%22Espinoza%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Frederic%22%2C%22lastName%22%3A%22Menard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Yves%22%2C%22lastName%22%3A%22Cherel%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Laura%22%2C%22lastName%22%3A%22Tremblay-Boyer%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Juan%22%2C%22lastName%22%3A%22Argu%5Cu00eblles%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ricardo%22%2C%22lastName%22%3A%22Tafur%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sophie%22%2C%22lastName%22%3A%22Bertrand%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Yann%22%2C%22lastName%22%3A%22Tremblay%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Patricia%22%2C%22lastName%22%3A%22Ayon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J.-M.%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Pierre%22%2C%22lastName%22%3A%22Richard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Arnaud%22%2C%22lastName%22%3A%22Bertrand%22%7D%5D%2C%22abstractNote%22%3A%22The%20northern%20Humboldt%20Current%20system%20%28NHCS%29%20is%20the%20most%20productive%20eastern%20boundary%20upwelling%20system%20%28EBUS%29%20in%20terms%20of%20fish%20productivity%20despite%20having%20a%20moderate%20primary%20production%20compared%20with%20other%20EBUS.%20To%20understand%20this%20apparent%20paradox%2C%20an%20updated%20vision%20of%20the%20trophic%20relationships%20in%20the%20NHCS%20is%20required.%20Using%20delta%20C-13%20and%20delta%20N-15%20as%20a%20proxy%20of%20foraging%20habitat%20and%20trophic%20position%2C%20respectively%2C%20we%20focused%20on%20thirteen%20relevant%20taxonomic%20groups%20from%20zooplankton%20to%20air-breathing%20top%20predators%20collected%20off%20Peru%20from%202008%20to%202011.%20Estimates%20of%20trophic%20position%20%28TP%29%20for%20the%20anchoveta%20Engraulis%20ringens%20were%20high%20%283.4-3.7%29%2C%20in%20accordance%20with%20previous%20studies%20showing%20zooplankton%20as%20a%20major%20contributor%20to%20anchoveta%20diet%20and%20challenging%20the%20often-cited%20short%20food%20chain%20hypothesis%20for%20this%20ecosystem.%20The%20squat%20lobster%2C%20Pleuroncodes%20monodon%2C%20a%20little%20studied%20consumer%20had%20similar%20delta%20N-15%20values%20that%20of%20anchoveta%2C%20and%20thus%20similar%20trophic%20position.%20However%2C%20their%20differing%20delta%20C-13%20values%20indicate%20that%20their%20foraging%20habitat%20do%20not%20fully%20overlap%2C%20which%20could%20alleviate%20potential%20competition%20between%20these%20species.%20Given%20the%20current%20high%20biomass%20of%20squat%20lobsters%20in%20the%20ecosystem%2C%20we%20encourage%20that%20future%20research%20focus%20on%20this%20species%20and%20its%20role%20in%20the%20diet%20of%20top%20predators.%20The%20present%20study%20provides%20first%20estimates%20of%20the%20relative%20TP%20of%20important%20taxonomic%20groups%20in%20the%20NHCS%2C%20which%20are%20needed%20to%20revisit%20anchoveta-centred%20ecosystem%20models%20for%20this%20region.%20Further%20work%20using%20amino%20acid%20compound%20specific%20stable%20isotope%20analyses%20is%20now%20required%20to%20confirm%20these%20TP%20estimates.%22%2C%22date%22%3A%22APR%202017%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1007%5C%2Fs00227-017-3119-8%22%2C%22ISSN%22%3A%220025-3162%22%2C%22url%22%3A%22%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22524VCA9X%22%5D%2C%22dateModified%22%3A%222020-10-29T12%3A11%3A56Z%22%7D%7D%2C%7B%22key%22%3A%22N3A2BKD6%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Houssard%20et%20al.%22%2C%22parsedDate%22%3A%222017%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EHoussard%2C%20P.%2C%20Lorrain%2C%20A.%2C%20Tremblay-Boyer%2C%20L.%2C%20Allain%2C%20V.%2C%20Graham%2C%20B.%20S.%2C%20Menkes%2C%20C.%20E.%2C%20Pethybridge%2C%20H.%2C%20Couturier%2C%20L.%2C%20Point%2C%20D.%2C%20Leroy%2C%20B.%2C%20Receveur%2C%20A.%2C%20Hunt%2C%20B.%20P.%20V.%2C%20Vourey%2C%20E.%2C%20Bonnet%2C%20S.%2C%20Rodier%2C%20M.%2C%20Raimbault%2C%20P.%2C%20Feunteun%2C%20E.%2C%20Kuhnert%2C%20P.%20M.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20%26%23x2026%3B%20Letourneur%2C%20Y.%20%282017%29.%20Trophic%20position%20increases%20with%20thermocline%20depth%20in%20yellowfin%20and%20bigeye%20tuna%20across%20the%20Western%20and%20Central%20Pacific%20Ocean.%20%3Ci%3EProgress%20in%20Oceanography%3C%5C%2Fi%3E%2C%20%3Ci%3E154%3C%5C%2Fi%3E%2C%2049%26%23x2013%3B63.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.pocean.2017.04.008%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.pocean.2017.04.008%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DN3A2BKD6%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20position%20increases%20with%20thermocline%20depth%20in%20yellowfin%20and%20bigeye%20tuna%20across%20the%20Western%20and%20Central%20Pacific%20Ocean%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Patrick%22%2C%22lastName%22%3A%22Houssard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Laura%22%2C%22lastName%22%3A%22Tremblay-Boyer%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Val%5Cu00e9rie%22%2C%22lastName%22%3A%22Allain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Brittany%20S%22%2C%22lastName%22%3A%22Graham%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Christophe%20E%22%2C%22lastName%22%3A%22Menkes%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Heidi%22%2C%22lastName%22%3A%22Pethybridge%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Lydie%22%2C%22lastName%22%3A%22Couturier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%22%2C%22lastName%22%3A%22Point%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Bruno%22%2C%22lastName%22%3A%22Leroy%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Aurore%22%2C%22lastName%22%3A%22Receveur%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Brian%20P.%20V.%22%2C%22lastName%22%3A%22Hunt%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Elodie%22%2C%22lastName%22%3A%22Vourey%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sophie%22%2C%22lastName%22%3A%22Bonnet%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Martine%22%2C%22lastName%22%3A%22Rodier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Patrick%22%2C%22lastName%22%3A%22Raimbault%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Eric%22%2C%22lastName%22%3A%22Feunteun%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Petra%20M%22%2C%22lastName%22%3A%22Kuhnert%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Benoit%22%2C%22lastName%22%3A%22Lebreton%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Tsuguo%22%2C%22lastName%22%3A%22Otake%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Yves%22%2C%22lastName%22%3A%22Letourneur%22%7D%5D%2C%22abstractNote%22%3A%22Estimates%20of%20trophic%20position%20are%20used%20to%20validate%20ecosystem%20models%20and%20understand%20food%20web%20structure.%20A%20consumer%5Cu2019s%20trophic%20position%20can%20be%20estimated%20by%20the%20stable%20nitrogen%20isotope%20values%20%28%5Cu03b415N%29%20of%20its%20tissue%2C%20once%20the%20baseline%20isotopic%20variability%20has%20been%20accounted%20for.%20Our%20study%20established%20the%20first%20data-driven%20baseline%20%5Cu03b415N%20isoscape%20for%20the%20Western%20and%20Central%20Pacific%20Ocean%20using%20particulate%20organic%20matter.%20Bulk%20%5Cu03b415N%20analysis%20on%201039%20muscle%20tissue%20of%20bigeye%20and%20yellowfin%20tuna%20were%20conducted%20together%20with%20amino%20acid%20compound-specific%20%5Cu03b415N%20analysis%20%28AA-CSIA%29%20on%20a%20subset%20of%2021%20samples.%20Both%20particulate%20organic%20matter%20and%20tuna%20bulk%20%5Cu03b415N%20values%20varied%20by%20more%20than%2010%5Cu2030%20across%20the%20study%20area.%20Fine-scaled%20trophic%20position%20maps%20were%20constructed%20and%20revealed%20higher%20tuna%20trophic%20position%20%28by%20%5Cu223c1%29%20in%20the%20southern%20latitudes%20compared%20to%20the%20equator.%20AA-CSIA%20confirmed%20these%20spatial%20patterns%20for%20bigeye%20and%2C%20to%20a%20lesser%20extent%2C%20yellowfin%20tuna.%20Using%20generalized%20additive%20models%2C%20spatial%20variations%20of%20tuna%20trophic%20positions%20were%20mainly%20related%20to%20the%20depth%20of%20the%2020%5Cu00b0C%20isotherm%2C%20a%20proxy%20for%20the%20thermocline%20behavior%2C%20with%20higher%20tuna%20trophic%20position%20estimates%20at%20greater%20thermocline%20depths.%20We%20hypothesized%20that%20a%20deeper%20thermocline%20would%20increase%20tuna%20vertical%20habitat%20and%20access%20to%20mesopelagic%20prey%20of%20higher%20trophic%20position.%20Archival%20tagging%20data%20further%20suggested%20that%20the%20vertical%20habitat%20of%20bigeye%20tuna%20was%20deeper%20in%20the%20southern%20latitudes%20than%20at%20the%20equator.%20These%20results%20suggest%20the%20importance%20of%20thermocline%20depth%20in%20influencing%20tropical%20tuna%20diet%2C%20which%20affects%20their%20vulnerability%20to%20fisheries%2C%20and%20may%20be%20altered%20by%20climate%20change.%22%2C%22date%22%3A%222017%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.pocean.2017.04.008%22%2C%22ISSN%22%3A%220079-6611%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS007966111630177X%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22524VCA9X%22%5D%2C%22dateModified%22%3A%222020-10-29T12%3A10%3A23Z%22%7D%7D%2C%7B%22key%22%3A%22IWAVVEYP%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Le%20Croizier%20et%20al.%22%2C%22parsedDate%22%3A%222016%22%2C%22numChildren%22%3A1%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELe%20Croizier%2C%20G.%2C%20Schaal%2C%20G.%2C%20Gallon%2C%20R.%2C%20Fall%2C%20M.%2C%20Le%20Grand%2C%20F.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Rouget%2C%20M.-L.%2C%20Machu%2C%20E.%2C%20Le%20Loc%26%23x2019%3Bh%2C%20F.%2C%20La%26%23xEB%3B%2C%20R.%2C%20%26amp%3B%20Tito-de-Morais%2C%20L.%20%282016%29.%20Trophic%20ecology%20influence%20on%20metal%20bioaccumulation%20in%20marine%20fish%3A%20Inference%20from%20stable%20isotope%20and%20fatty%20acid%20analyses.%20%3Ci%3EScience%20of%20the%20Total%20Environment%3C%5C%2Fi%3E%2C%20%3Ci%3E573%3C%5C%2Fi%3E%2C%2083%26%23x2013%3B95.%20fdi%3A010068793.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2Fhttp%3A%5C%2F%5C%2Fdx.doi.org%5C%2F10.1016%5C%2Fj.scitotenv.2016.08.035%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2Fhttp%3A%5C%2F%5C%2Fdx.doi.org%5C%2F10.1016%5C%2Fj.scitotenv.2016.08.035%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DIWAVVEYP%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Trophic%20ecology%20influence%20on%20metal%20bioaccumulation%20in%20marine%20fish%3A%20Inference%20from%20stable%20isotope%20and%20fatty%20acid%20analyses%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ga%5Cu00ebl%22%2C%22lastName%22%3A%22Le%20Croizier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Gauthier%22%2C%22lastName%22%3A%22Schaal%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22R%5Cu00e9gis%22%2C%22lastName%22%3A%22Gallon%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Massal%22%2C%22lastName%22%3A%22Fall%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fabienne%22%2C%22lastName%22%3A%22Le%20Grand%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Marie-Laure%22%2C%22lastName%22%3A%22Rouget%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Eric%22%2C%22lastName%22%3A%22Machu%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Fran%5Cu00e7ois%22%2C%22lastName%22%3A%22Le%20Loc%27h%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Raymond%22%2C%22lastName%22%3A%22La%5Cu00eb%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Luis%22%2C%22lastName%22%3A%22Tito-de-Morais%22%7D%5D%2C%22abstractNote%22%3A%22The%20link%20between%20trophic%20ecology%20and%20metal%20accumulation%20in%20marine%20fish%20species%20was%20investigated%20through%20a%20multi-tracers%20approach%20combining%20fatty%20acid%20%28FA%29%20and%20stable%20isotope%20%28SI%29%20analyses%20on%20fish%20from%20two%20contrasted%20sites%20on%20the%20coast%20of%20Senegal%2C%20one%20subjected%20to%20anthropogenic%20metal%20effluents%20and%20another%20one%20less%20impacted.%20The%20concentrations%20of%20thirteen%20trace%20metal%20elements%20%28As%2C%20Cd%2C%20Co%2C%20Cr%2C%20Cu%2C%20Fe%2C%20Li%2C%20Mn%2C%20Ni%2C%20Pb%2C%20Sn%2C%20U%2C%20and%20Zn%29%20were%20measured%20in%20fish%20liver.%20Individuals%20from%20each%20site%20were%20classified%20into%20three%20distinct%20groups%20according%20to%20their%20liver%20FA%20and%20muscle%20SI%20compositions.%20Trace%20element%20concentrations%20were%20tested%20between%20groups%20revealing%20that%20bioaccumulation%20of%20several%20metals%20was%20clearly%20dependent%20on%20the%20trophic%20guild%20of%20fish.%20Furthermore%2C%20correlations%20between%20individual%20trophic%20markers%20and%20trace%20metals%20gave%20new%20insights%20into%20the%20determination%20of%20their%20origin.%20Fatty%20acids%20revealed%20relationships%20between%20the%20dietary%20regimes%20and%20metal%20accumulation%20that%20were%20not%20detected%20with%20stable%20isotopes%2C%20possibly%20due%20to%20the%20trace%20metal%20elements%20analysed%20in%20this%20study.%20In%20the%20region%20exposed%20to%20metallic%20inputs%2C%20the%20consumption%20of%20benthic%20preys%20was%20the%20main%20pathway%20for%20metal%20transfer%20to%20the%20fish%20community%20while%20in%20the%20unaffected%20one%2C%20pelagic%20preys%20represented%20the%20main%20source%20of%20metals.%20Within%20pelagic%20sources%2C%20metallic%20transfer%20to%20fish%20depended%20on%20phytoplankton%20taxa%20on%20which%20the%20food%20web%20was%20based%2C%20suggesting%20that%20microphytoplankton%20%28i.e.%2C%20diatoms%20and%20dinoflagellates%29%20were%20a%20more%20important%20source%20of%20exposition%20than%20nano-%20and%20picoplankton.%20This%20study%20confirmed%20the%20influence%20of%20diet%20in%20the%20metal%20accumulation%20of%20marine%20fish%20communities%2C%20and%20proved%20that%20FAs%20are%20very%20useful%20and%20complementary%20tools%20to%20SIs%20to%20link%20metal%20accumulation%20in%20fish%20with%20their%20trophic%20ecology.%22%2C%22date%22%3A%222016%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%22http%3A%5C%2F%5C%2Fdx.doi.org%5C%2F10.1016%5C%2Fj.scitotenv.2016.08.035%22%2C%22ISSN%22%3A%220048-9697%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0048969716317272%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22YBC4RN2D%22%5D%2C%22dateModified%22%3A%222020-10-29T11%3A54%3A24Z%22%7D%7D%2C%7B%22key%22%3A%2293B9DCC8%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Poulain%20et%20al.%22%2C%22parsedDate%22%3A%222015-03-09%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EPoulain%2C%20C.%2C%20Gillikin%2C%20D.%20P.%2C%20Th%26%23xE9%3Bbault%2C%20J.%2C%20Munaron%2C%20J.%20M.%2C%20Bohn%2C%20M.%2C%20Robert%2C%20R.%2C%20Paulet%2C%20Y.-M.%2C%20%26amp%3B%20Lorrain%2C%20A.%20%282015%29.%20An%20evaluation%20of%20Mg%5C%2FCa%2C%20Sr%5C%2FCa%2C%20and%20Ba%5C%2FCa%20ratios%20as%20environmental%20proxies%20in%20aragonite%20bivalve%20shells.%20%3Ci%3EChemical%20Geology%3C%5C%2Fi%3E%2C%20%3Ci%3E396%3C%5C%2Fi%3E%2C%2042%26%23x2013%3B50.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.chemgeo.2014.12.019%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1016%5C%2Fj.chemgeo.2014.12.019%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D93B9DCC8%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22An%20evaluation%20of%20Mg%5C%2FCa%2C%20Sr%5C%2FCa%2C%20and%20Ba%5C%2FCa%20ratios%20as%20environmental%20proxies%20in%20aragonite%20bivalve%20shells%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22C.%22%2C%22lastName%22%3A%22Poulain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22D.%20P.%22%2C%22lastName%22%3A%22Gillikin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J.%22%2C%22lastName%22%3A%22Th%5Cu00e9bault%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22J.%20M.%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22M.%22%2C%22lastName%22%3A%22Bohn%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22R.%22%2C%22lastName%22%3A%22Robert%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Y.-M.%22%2C%22lastName%22%3A%22Paulet%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22A.%22%2C%22lastName%22%3A%22Lorrain%22%7D%5D%2C%22abstractNote%22%3A%22The%20influence%20of%20salinity%20and%20water%20chemistry%20on%20Mg%5C%2FCa%2C%20Sr%5C%2FCa%2C%20and%20Ba%5C%2FCa%20ratios%20in%20the%20aragonitic%20shells%20of%20the%20Manila%20clam%20was%20investigated.%20Clams%20were%20reared%20at%20constant%20temperature%20%2820%20degrees%20C%29%20under%20different%20controlled%20conditions%20of%20salinity%2C%20commonly%20encountered%20in%20their%20natural%20habitat.%20Clams%20were%20held%20in%20three%20tanks%20with%20a%20constant%20salinity%20of%2035%20for%20the%20first%2035%20days%2C%20and%20then%20two%20tanks%20were%20changed%20to%20lower%20salinities%20%2820%20and%2028%29%20for%20the%20next%2029%20days.%20Individual%20shell%20Mg%5C%2FCa%2C%20Sr%5C%2FCa%2C%20and%20Ba%5C%2FCa%20ratios%20were%20studied%20through%20time.%20Despite%20stable%20conditions%20%28temperature%2C%20salinity%2C%20and%20Mg%5C%2FCa-water%29%20for%20clams%20reared%20at%20salinity%2035%20during%20the%20experiment%2C%20Mg%5C%2FCa%20shell%20ratios%20increased%20through%20the%20time.%20Moreover%20the%20salinity%20decrease%20at%20t%2835%29%20slowed%20the%20increase%20of%20Mg%5C%2FCa%20shell%20ratios%20at%20salinity%2028%20and%20resulted%20in%20an%20Mg%5C%2FCa-shell%20decrease%20at%20salinity%2020%2C%20despite%20similar%20Mg%5C%2FCa-water%20ratios%20in%20the%20different%20salinity%20treatments.%20Microprobe%20analyses%20illustrate%20that%20Mg%20varies%20along%20contemporaneous%20growth%20lines.%20The%20variable%20shell%20Mg%5C%2FCa%20ratios%20suggest%20that%20incorporation%20of%20magnesium%20into%20shell%20carbonate%20is%20strongly%20regulated%20by%20the%20organism%20and%20not%20by%20environmental%20conditions.%20Interestingly%2C%20microprobe%20analyses%20illustrated%20that%20Mg%20was%20not%20associated%20with%20shell%20sulfur%20as%20other%20studies%20have%20suggested.%20Sr%5C%2FCa%20shell%20ratios%20of%20clams%20reared%20at%20salinity%2035%20and%20under%20constant%20conditions%20were%20also%20not%20as%20constant%20as%20expected%20if%20Sr%5C%2FCa%20ratios%20were%20an%20environmental%20proxy.%20There%20was%20an%20inverse%20correlation%20between%20shell%20Sr%5C%2FCa%20and%20salinity%20despite%20a%20slight%20positive%20correlation%20between%20salinity%20and%20Sr%5C%2FCa%20ratios%20of%20the%20water%2C%20indicating%20that%20Sr%5C%2FCa%20ratios%20do%20not%20reflect%20environmental%20conditions.%20A%20strong%20inverse%20correlation%20between%20salinity%20and%20Ba%5C%2FCa%20shell%20ratios%20%28and%20a%20positive%20correlation%20between%20Ba%5C%2FCa%20shell%20and%20Ba%5C%2FCa%20water%29%20was%20observed.%20Therefore%2C%20Ba%5C%2FCa%20shell%20ratios%20seem%20to%20be%20a%20promising%20proxy%20of%20high-resolution%20%281%20day%29%20salinity%20variations%20in%20estuarine%20waters%20%28via%20the%20relationship%20between%20Ba%5C%2FCa%20water%20and%20salinity%29.%20This%20study%20clearly%20illustrates%20that%20both%20Mg%5C%2FCa%20and%20Sr%5C%2FCa%20ratios%20in%20aragonite%20shells%20are%20not%20under%20environmental%20control%20and%20that%20Ba%5C%2FCa%20ratios%20are%2C%20with%20the%20later%20tracking%20high-resolution%20water%20Ba%5C%2FCa%20ratios%20and%20hence%20estuarine%20salinity%20variations.%20%28C%29%202014%20Elsevier%20B.V.%20All%20rights%20reserved.%22%2C%22date%22%3A%22MAR%209%202015%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1016%5C%2Fj.chemgeo.2014.12.019%22%2C%22ISSN%22%3A%220009-2541%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0009254114005956%3B%20%20https%3A%5C%2F%5C%2Farchimer.ifremer.fr%5C%2Fdoc%5C%2F00245%5C%2F35649%5C%2F%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22R8NAI9U9%22%5D%2C%22dateModified%22%3A%222020-10-28T23%3A15%3A59Z%22%7D%7D%2C%7B%22key%22%3A%22M37TXYVY%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Khemiri%20et%20al.%22%2C%22parsedDate%22%3A%222014%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EKhemiri%2C%20S.%2C%20Labonne%2C%20M.%2C%20Gaamour%2C%20A.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20%26amp%3B%20Morize%2C%20E.%20%282014%29.%20The%20use%20of%20otolith%20chemistry%20to%20determine%20stock%20structure%20of%20Sardina%20pilchardus%20and%20Engraulis%20encrasicolus%20in%20Tunisian%20Coasts.%20%3Ci%3ECahiers%20de%20Biologie%20Marine%3C%5C%2Fi%3E%2C%20%3Ci%3E55%3C%5C%2Fi%3E%281%29%2C%2021%26%23x2013%3B29.%20%3Ca%20class%3D%27zp-ItemURL%27%20href%3D%27http%3A%5C%2F%5C%2Fcat.inist.fr%5C%2F%3FaModele%3DafficheN%26cpsidt%3D28059075%27%3Ehttp%3A%5C%2F%5C%2Fcat.inist.fr%5C%2F%3FaModele%3DafficheN%26cpsidt%3D28059075%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DM37TXYVY%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22The%20use%20of%20otolith%20chemistry%20to%20determine%20stock%20structure%20of%20Sardina%20pilchardus%20and%20Engraulis%20encrasicolus%20in%20Tunisian%20Coasts%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Sana%22%2C%22lastName%22%3A%22Khemiri%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Maylis%22%2C%22lastName%22%3A%22Labonne%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Adel%22%2C%22lastName%22%3A%22Gaamour%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Eric%22%2C%22lastName%22%3A%22Morize%22%7D%5D%2C%22abstractNote%22%3A%22Sardina%20pilchardus%20and%20Engraulis%20encrasicolus%20are%20of%20great%20economic%20importance%20in%20Tunisia.%20However%2C%20little%20is%20known%20about%20their%20stock%20structure.%20Otolith%20chemistry%20was%20used%20to%20assess%20the%20feasibility%20of%20using%20this%20natural%20tag%20to%20discriminate%20populations%20of%20sardine%20and%20anchovy%20in%20the%20open%20sea%20and%20the%20coastal%20area%20of%20the%20Gulf%20of%20Gabes.%20The%20chemical%20composition%20of%20whole%20otoliths%20was%20analyzed%20using%20solution-based%20inductively%20coupled%20plasma%20mass%20spectrometry%20%28ICPMS%29.%20Linear%20discriminant%20analysis%20classified%20fish%20into%20open%20sea%20and%20inshore%20groups%20with%20close%20to%2097%25%20accuracy%20for%20the%20anchovy%20and%20to%2094%25%20for%20the%20sardine.%20Respectively%2C%20the%20discrimination%20was%20based%20on%20P%2C%20Fe%2C%20Zn%2C%20Sc%20and%20Sr%20for%20the%20anchovy%20and%20P%2C%20Sr%20and%20B%20for%20the%20sardine.%20In%20addition%2C%20when%20we%20pool%20together%20the%20two%20species%20data%20in%20each%20area%20%28inshore%5C%2Fopen%20sea%29%2C%20the%20discrimination%20was%20also%20accurate%20reaching%2088%25%20of%20well%20classification%20based%20on%20P%2C%20Fe%2C%20Li%20and%20Mg.%20The%20results%20reveal%20a%20clear%20discreteness%20of%20the%20open%20sea%20and%20inshore%20small%20pelagic%20groups.%20Such%20information%20will%20have%20major%20implications%20for%20fisheries%20management%20of%20sardine%20and%20anchovy%20in%20Tunisia.%22%2C%22date%22%3A%222014%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%22%22%2C%22ISSN%22%3A%22%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fcat.inist.fr%5C%2F%3FaModele%3DafficheN%26cpsidt%3D28059075%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22PVVPLIGF%22%5D%2C%22dateModified%22%3A%222020-10-28T23%3A14%3A47Z%22%7D%7D%2C%7B%22key%22%3A%226BWTD3VE%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Dortel%20et%20al.%22%2C%22parsedDate%22%3A%222013-04-23%22%2C%22numChildren%22%3A0%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3EDortel%2C%20E.%2C%20Massiot-Granier%2C%20F.%2C%20Rivot%2C%20E.%2C%20Million%2C%20J.%2C%20Hallier%2C%20J.-P.%2C%20Morize%2C%20E.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Bousquet%2C%20N.%2C%20%26amp%3B%20Chassot%2C%20E.%20%282013%29.%20Accounting%20for%20Age%20Uncertainty%20in%20Growth%20Modeling%2C%20the%20Case%20Study%20of%20Yellowfin%20Tuna%20%28Thunnus%20albacares%29%20of%20the%20Indian%20Ocean.%20%3Ci%3EPlos%20One%3C%5C%2Fi%3E%2C%20%3Ci%3E8%3C%5C%2Fi%3E%284%29.%20%3Ca%20class%3D%27zp-DOIURL%27%20href%3D%27https%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1371%5C%2Fjournal.pone.0060886%27%3Ehttps%3A%5C%2F%5C%2Fdoi.org%5C%2F10.1371%5C%2Fjournal.pone.0060886%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3D6BWTD3VE%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Accounting%20for%20Age%20Uncertainty%20in%20Growth%20Modeling%2C%20the%20Case%20Study%20of%20Yellowfin%20Tuna%20%28Thunnus%20albacares%29%20of%20the%20Indian%20Ocean%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Emmanuelle%22%2C%22lastName%22%3A%22Dortel%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Felix%22%2C%22lastName%22%3A%22Massiot-Granier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Etienne%22%2C%22lastName%22%3A%22Rivot%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Julien%22%2C%22lastName%22%3A%22Million%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Pierre%22%2C%22lastName%22%3A%22Hallier%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Eric%22%2C%22lastName%22%3A%22Morize%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Nicolas%22%2C%22lastName%22%3A%22Bousquet%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Emmanuel%22%2C%22lastName%22%3A%22Chassot%22%7D%5D%2C%22abstractNote%22%3A%22Age%20estimates%2C%20typically%20determined%20by%20counting%20periodic%20growth%20increments%20in%20calcified%20structures%20of%20vertebrates%2C%20are%20the%20basis%20of%20population%20dynamics%20models%20used%20for%20managing%20exploited%20or%20threatened%20species.%20In%20fisheries%20research%2C%20the%20use%20of%20otolith%20growth%20rings%20as%20an%20indicator%20of%20fish%20age%20has%20increased%20considerably%20in%20recent%20decades.%20However%2C%20otolith%20readings%20include%20various%20sources%20of%20uncertainty.%20Current%20ageing%20methods%2C%20which%20converts%20an%20average%20count%20of%20rings%20into%20age%2C%20only%20provide%20periodic%20age%20estimates%20in%20which%20the%20range%20of%20uncertainty%20is%20fully%20ignored.%20In%20this%20study%2C%20we%20describe%20a%20hierarchical%20model%20for%20estimating%20individual%20ages%20from%20repeated%20otolith%20readings.%20The%20model%20was%20developed%20within%20a%20Bayesian%20framework%20to%20explicitly%20represent%20the%20sources%20of%20uncertainty%20associated%20with%20age%20estimation%2C%20to%20allow%20for%20individual%20variations%20and%20to%20include%20knowledge%20on%20parameters%20from%20expertise.%20The%20performance%20of%20the%20proposed%20model%20was%20examined%20through%20simulations%2C%20and%20then%20it%20was%20coupled%20to%20a%20two-stanza%20somatic%20growth%20model%20to%20evaluate%20the%20impact%20of%20the%20age%20estimation%20method%20on%20the%20age%20composition%20of%20commercial%20fisheries%20catches.%20We%20illustrate%20our%20approach%20using%20the%20saggital%20otoliths%20of%20yellowfin%20tuna%20of%20the%20Indian%20Ocean%20collected%20through%20large-scale%20mark-recapture%20experiments.%20The%20simulation%20performance%20suggested%20that%20the%20ageing%20error%20model%20was%20able%20to%20estimate%20the%20ageing%20biases%20and%20provide%20accurate%20age%20estimates%2C%20regardless%20of%20the%20age%20of%20the%20fish.%20Coupled%20with%20the%20growth%20model%2C%20this%20approach%20appeared%20suitable%20for%20modeling%20the%20growth%20of%20Indian%20Ocean%20yellowfin%20and%20is%20consistent%20with%20findings%20of%20previous%20studies.%20The%20simulations%20showed%20that%20the%20choice%20of%20the%20ageing%20method%20can%20strongly%20affect%20growth%20estimates%20with%20subsequent%20implications%20for%20age-structured%20data%20used%20as%20inputs%20for%20population%20models.%20Finally%2C%20our%20modeling%20approach%20revealed%20particularly%20useful%20to%20reflect%20uncertainty%20around%20age%20estimates%20into%20the%20process%20of%20growth%20estimation%20and%20it%20can%20be%20applied%20to%20any%20study%20relying%20on%20age%20estimation.%22%2C%22date%22%3A%22APR%2023%202013%22%2C%22language%22%3A%22English%22%2C%22DOI%22%3A%2210.1371%5C%2Fjournal.pone.0060886%22%2C%22ISSN%22%3A%221932-6203%22%2C%22url%22%3A%22%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22I8Z9C66Z%22%5D%2C%22dateModified%22%3A%222020-10-28T23%3A14%3A06Z%22%7D%7D%2C%7B%22key%22%3A%22J2WNNMYZ%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Nerot%20et%20al.%22%2C%22parsedDate%22%3A%222012%22%2C%22numChildren%22%3A1%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ENerot%2C%20C.%2C%20Lorrain%2C%20A.%2C%20Grall%2C%20J.%2C%20Gillikin%2C%20D.%20P.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Le%20Bris%2C%20H.%2C%20%26amp%3B%20Paulet%2C%20Y.-M.%20%282012%29.%20Stable%20isotope%20variations%20in%20benthic%20filter%20feeders%20across%20a%20large%20depth%20gradient%20on%20the%20continental%20shelf.%20%3Ci%3EEstuarine%2C%20Coastal%20and%20Shelf%20Science%3C%5C%2Fi%3E%2C%20%3Ci%3E96%3C%5C%2Fi%3E%2C%20228%26%23x2013%3B235.%20%3Ca%20class%3D%27zp-ItemURL%27%20href%3D%27http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0272771411004550%27%3Ehttp%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0272771411004550%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DJ2WNNMYZ%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Stable%20isotope%20variations%20in%20benthic%20filter%20feeders%20across%20a%20large%20depth%20gradient%20on%20the%20continental%20shelf%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Caroline%22%2C%22lastName%22%3A%22Nerot%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jacques%22%2C%22lastName%22%3A%22Grall%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22David%20P.%22%2C%22lastName%22%3A%22Gillikin%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Herv%5Cu00e9%22%2C%22lastName%22%3A%22Le%20Bris%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Yves-Marie%22%2C%22lastName%22%3A%22Paulet%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222012%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%22%22%2C%22ISSN%22%3A%22%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fwww.sciencedirect.com%5C%2Fscience%5C%2Farticle%5C%2Fpii%5C%2FS0272771411004550%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22MI2DWBBV%22%5D%2C%22dateModified%22%3A%222020-10-28T23%3A12%3A55Z%22%7D%7D%2C%7B%22key%22%3A%22LZH6N5WG%22%2C%22library%22%3A%7B%22id%22%3A355235%7D%2C%22meta%22%3A%7B%22creatorSummary%22%3A%22Lorrain%20et%20al.%22%2C%22parsedDate%22%3A%222011%22%2C%22numChildren%22%3A1%7D%2C%22bib%22%3A%22%3Cdiv%20class%3D%5C%22csl-bib-body%5C%22%20style%3D%5C%22line-height%3A%202%3B%20padding-left%3A%201em%3B%20text-indent%3A-1em%3B%5C%22%3E%5Cn%20%20%3Cdiv%20class%3D%5C%22csl-entry%5C%22%3ELorrain%2C%20A.%2C%20Arg%26%23xFC%3Belles%2C%20J.%2C%20Alegre%2C%20A.%2C%20Bertrand%2C%20A.%2C%20%3Cstrong%3EMunaron%2C%20J.-M.%3C%5C%2Fstrong%3E%2C%20Richard%2C%20P.%2C%20%26amp%3B%20Cherel%2C%20Y.%20%282011%29.%20Sequential%20isotopic%20signature%20along%20gladius%20highlights%20contrasted%20individual%20foraging%20strategies%20of%20jumbo%20squid%20%28Dosidicus%20gigas%29.%20%3Ci%3EPLoS%20One%3C%5C%2Fi%3E%2C%20%3Ci%3E6%3C%5C%2Fi%3E%287%29%2C%20e22194.%20%3Ca%20class%3D%27zp-ItemURL%27%20href%3D%27http%3A%5C%2F%5C%2Fdx.plos.org%5C%2F10.1371%5C%2Fjournal.pone.0022194%27%3Ehttp%3A%5C%2F%5C%2Fdx.plos.org%5C%2F10.1371%5C%2Fjournal.pone.0022194%3C%5C%2Fa%3E%20%3Ca%20title%3D%27Cite%20in%20RIS%20Format%27%20class%3D%27zp-CiteRIS%27%20href%3D%27https%3A%5C%2F%5C%2Fwww-iuem.univ-brest.fr%5C%2Flemar%5C%2Fwp-content%5C%2Fplugins%5C%2Fzotpress%5C%2Flib%5C%2Frequest%5C%2Frequest.cite.php%3Fapi_user_id%3D355235%26amp%3Bitem_key%3DLZH6N5WG%27%3ECite%3C%5C%2Fa%3E%20%3C%5C%2Fdiv%3E%5Cn%3C%5C%2Fdiv%3E%22%2C%22data%22%3A%7B%22itemType%22%3A%22journalArticle%22%2C%22title%22%3A%22Sequential%20isotopic%20signature%20along%20gladius%20highlights%20contrasted%20individual%20foraging%20strategies%20of%20jumbo%20squid%20%28Dosidicus%20gigas%29%22%2C%22creators%22%3A%5B%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Anne%22%2C%22lastName%22%3A%22Lorrain%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Juan%22%2C%22lastName%22%3A%22Arg%5Cu00fcelles%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Ana%22%2C%22lastName%22%3A%22Alegre%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Arnaud%22%2C%22lastName%22%3A%22Bertrand%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Jean-Marie%22%2C%22lastName%22%3A%22Munaron%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Pierre%22%2C%22lastName%22%3A%22Richard%22%7D%2C%7B%22creatorType%22%3A%22author%22%2C%22firstName%22%3A%22Yves%22%2C%22lastName%22%3A%22Cherel%22%7D%5D%2C%22abstractNote%22%3A%22%22%2C%22date%22%3A%222011%22%2C%22language%22%3A%22%22%2C%22DOI%22%3A%22%22%2C%22ISSN%22%3A%22%22%2C%22url%22%3A%22http%3A%5C%2F%5C%2Fdx.plos.org%5C%2F10.1371%5C%2Fjournal.pone.0022194%22%2C%22collections%22%3A%5B%22348HK8H3%22%2C%22YMZGRDGC%22%5D%2C%22dateModified%22%3A%222020-10-28T23%3A12%3A15Z%22%7D%7D%5D%7D
Le Croizier, G., Hoyos-Padilla, M., Amezcua-Martinez, F., Aquino-Baleyto, M., Le Grand, F., Le Loc’h, F., Mathieu-Resuge, M., Munaron, J.-M., Ory, A., Sardenne, F., Schaal, G., & Lorrain, A. (2024). Can biochemical tracers reveal ontogenetic trophic shift and individual prey selection in white sharks from Guadalupe Island, Northeast Pacific? ENVIRONMENTAL RESEARCH, 262, 119507. https://doi.org/10.1016/j.envres.2024.119507 Cite
Medieu, A., Point, D., Sonke, J. E., Angot, H., Allain, V., Bodin, N., Adams, D. H., Bignert, A., Streets, D. G., Buchanan, P. B., Heimbuerger-Boavida, L.-E., Pethybridge, H., Gillikin, D. P., Menard, F., Choy, C. A., Itai, T., Bustamante, P., Dhurmeea, Z., Ferriss, B. E., … Lorrain, A. (2024). Stable Tuna Mercury Concentrations since 1971 Illustrate Marine Inertia and the Need for Strong Emission Reductions under the Minamata Convention. ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS. https://doi.org/10.1021/acs.estlett.3c00949 Cite
Charles, F., Labrune, C., Lantoine, F., Lescure, L., Munaron, J.-M., Amouroux, J.-M., Labatut, P., & Le Loc’h, F. (2024). Seasonal stratification leads to changes within the benthic food web of the Gulf of Lions (northwestern Mediterranean). REGIONAL STUDIES IN MARINE SCIENCE, 70, 103359. https://doi.org/10.1016/j.rsma.2023.103359 Cite
Sardenne, F., Le Loc’h, F., Bodin, N., Mve-Beh, J.-H., Munaron, J.-M., Mbega, J.-D., Nzigou, A. R., Sadio, O., Budzinski, H., & Leboulanger, C. (2024). Persistent organic pollutants and trace metals in selected marine organisms from the Akanda National Park, Gabon (Central Africa). MARINE POLLUTION BULLETIN, 199, 116009. https://doi.org/10.1016/j.marpolbul.2023.116009 Cite
Leger-Pigout, M., Navarro, E., Menard, F., Ruitton, S., Le Loc’h, F., Guasco, S., Munaron, J.-M., Thibault, D., Changeux, T., Connan, S., Stiger-Pouvreau, V., Thibaut, T., & Michotey, V. (2024). Predominant heterotrophic diazotrophic bacteria are involved in Sargassum proliferation in the Great Atlantic Sargassum Belt. ISME JOURNAL, 18(1), wrad026. https://doi.org/10.1093/ismejo/wrad026 Cite
Viana, A. P., Le Loc’h, F., Fredou, T., Lucena-Fredou, F., Menard, F., Lagane, C., Munaron, J.-M., Lira, A. S., dos Santos, I. G. S., Ferreira, V., Gonzalez, J. G., & Point, D. (2023). Mercury biomagnification and trophic structure patterns in neotropical coastal estuaries impacted by a Chlor-alkali plant in northeast Brazil. REGIONAL STUDIES IN MARINE SCIENCE, 66, 103105. https://doi.org/10.1016/j.rsma.2023.103105 Cite
Le Croizier, G., Lorrain, A., Hoyos-Padilla, M., Ketchum, J. T., Amezcua-Martinez, F., Le Loc’h, F., Munaron, J.-M., Schaal, G., & Point, D. (2023). Do marine protected areas influence mercury exposure? Insights from a shark community in the tropical Northeast Pacific. ENVIRONMENTAL POLLUTION, 336, 122352. https://doi.org/10.1016/j.envpol.2023.122352 Cite
Sardenne, F., Raynon, T., Munaron, J.-M., van der Lingen, C. D., Sadio, O., Diop, K., Brosset, P., Lebigre, C., Soudant, P., Vagner, M., & Pecquerie, L. (2023). Lipid-correction models for 613C values across small pelagic fishes (Clupeiformes) from the Atlantic Ocean. MARINE ENVIRONMENTAL RESEARCH, 192, 106213. https://doi.org/10.1016/j.marenvres.2023.106213 Cite
Schull, Q., Beauvieux, A., Viblanc, V. A., Metral, L., Leclerc, L., Romero, D., Pernet, F., Quere, C., Munaron, D., McKindsey, C. W., Saraux, C., & Bourjea, J. (2023). An integrative perspective on fish health: Environmental and anthropogenic pathways affecting fish stress. MARINE POLLUTION BULLETIN, 194, 115318. https://doi.org/10.1016/j.marpolbul.2023.115318 Cite
Denis, J., Bouaziz, R., Draredja, B., Munaron, J. M., Borhane Djebar, A., Amara, R., Le Loc’h, F., & Ben Rais Lasram, F. (2023). Fish food-web structure of a southern Mediterranean lagoon (El Mellah Lagoon, Algeria): what we can learn from stable isotope analysis. Mediterranean Marine Science, 24(2), 211–228. https://doi.org/10.12681/mms.30180 Cite
Faure, J., Gasco, N., Bonillo, C., Munaron, J.-M., Cherel, Y., & Peron, C. (2023). Feeding ecology of two deep-sea skates bycaught on demersal longlines off Kerguelen Islands, Southern Indian Ocean. Deep-Sea Research Part I-Oceanographic Research Papers, 194, 103980. https://doi.org/10.1016/j.dsr.2023.103980 Cite
Pelage, L., Ferreira, V., Lucena-Fredou, F., Ferreira, G. V. B., Gonzalez, J. G., Viana, A. P., Lira, A. S., Munaron, J.-M., Fredou, T., Mernard, F., & Le Loc’h, F. (2022). Estuarine food web structure and relative importance of organic matter sources for fish in a highly connected Northeastern Brazil ecotone. Estuarine Coastal and Shelf Science, 275, 107972. https://doi.org/10.1016/j.ecss.2022.107972 Cite
Barbosa, R. V., Point, D., Medieu, A., Allain, V., Gillikin, D. P., Couturier, L. I. E., Munaron, J.-M., Roupsard, F., & Lorrain, A. (2022). Mercury concentrations in tuna blood and muscle mirror seawater methylmercury in the Western and Central Pacific Ocean. Marine Pollution Bulletin, 180, 113801. https://doi.org/10.1016/j.marpolbul.2022.113801 Cite
Le Croizier, G., Point, D., Renedo, M., Munaron, J.-M., Espinoza, P., Amezcua-Martinez, F., Bertrand, S. L., & Lorrain, A. (2022). Mercury concentrations, biomagnification and isotopic discrimination factors in two seabird species from the Humboldt Current ecosystem. Marine Pollution Bulletin, 177, 113481. https://doi.org/10.1016/j.marpolbul.2022.113481 Cite
Cavalcanti Limeira, A. G., Fredou, T., Cavalcanti Soares, A. P., Lira, A. S., Le Loc’h, F., Segundo Viana, G. F., Rosa-Filho, J. S., Munaron, J. M., & Lucena-Fredou, F. (2022). Trophic ecology and resource partitioning of Haemulidae species along the Northeastern Brazilian continental shelf. Neotropical Ichthyology, 20(3), e220001. https://doi.org/10.1590/1982-0224-2022-0001 Cite
Gonzalez, J. G., Darnaude, A. M., Duarte-Neto, P. J., Le Loc’h, F., de Lima, M. C., Menard, F., Ferreira, V., Fredou, F. L., Munaron, J.-M., & Fredou, T. (2021). Trophic ecology of the juveniles of two jack species (Caranx latus and C. hippos) in contrasted tropical estuaries. Estuarine Coastal and Shelf Science, 255, 107370. https://doi.org/10.1016/j.ecss.2021.107370 Cite
Gonzalez, J. G., Darnaude, A. M., Duarte-Neto, P. J., Le Loc’h, F., de Lima, M. C., Menard, F., Ferreira, V., Fredou, F. L., Munaron, J.-M., & Fredou, T. (2021). Trophic ecology of the juveniles of two jack species (Caranx latus and C. hippos) in contrasted tropical estuaries. Estuarine Coastal and Shelf Science, 255, 107370. https://doi.org/10.1016/j.ecss.2021.107370 Cite
Bouaziz, R., Le Loc’h, F., Rolet, C., Veillet, G., Munaron, J. M., Rabhi, K., Djebar, A. B., Amara, R., & Lasram, F. B. R. (2021). Structure and seasonal variability in fish food webs in a small macrotidal estuary (Canche estuary, Eastern English Channel) based on stable carbon and nitrogen isotope analysis. Regional Studies in Marine Science, 44, 101694. https://doi.org/10.1016/j.rsma.2021.101694 Cite
Pelage, L., Gonzalez, J. G., Le Loc’h, F., Ferreira, V., Munaron, J.-M., Lucena-Frédou, F., & Frédou, T. (2021). Importance of estuary morphology for ecological connectivity with their adjacent coast: A case study in Brazilian tropical estuaries. Estuarine, Coastal and Shelf Science, 251, 107184. https://doi.org/10.1016/j.ecss.2021.107184 Cite
Lira, A. S., Lucena-Fredou, F., Menard, F., Fredou, T., Gonzalez, J. G., Ferreira, V., Rosa Filho, J. S., Munaron, J.-M., & Le Loc’h, F. (2021). Trophic structure of a nektobenthic community exploited by a multispecific bottom trawling fishery in Northeastern Brazil. Plos One, 16(2), e0246491. https://doi.org/10.1371/journal.pone.0246491 Cite
Sardenne, F., Bodin, N., Barret, L., Blamey, L., Govinden, R., Gabriel, K., Mangroo, R., Munaron, J.-M., Le Loc’h, F., Bideau, A., Grand, F. L., Sabino, M., Bustamante, P., & Rowat, D. (2021). Diet of spiny lobsters from Mahe Island reefs, Seychelles inferred by trophic tracers. Regional Studies in Marine Science, 42, 101640. https://doi.org/10.1016/j.rsma.2021.101640 Cite
Figueiredo, G. G. A. A. de, Schwamborn, R., Bertrand, A., Munaron, J.-M., & Le Loc’h, F. (2020). Body size and stable isotope composition of zooplankton in the western tropical Atlantic. Journal of Marine Systems, 212, 103449. https://doi.org/10.1016/j.jmarsys.2020.103449 Cite
Sardenne, F., Bodin, N., Medieu, A., Antha, M., Arrisol, R., Le Grand, F., Bideau, A., Munaron, J.-M., Le Loc’h, F., & Chassot, E. (2020). Benefit-risk associated with the consumption of fish bycatch from tropical tuna fisheries. Environmental Pollution, 267, 115614. https://doi.org/10.1016/j.envpol.2020.115614 Cite
Le Croizier, G., Lorrain, A., Schaal, G., Ketchum, J., Hoyos-Padilla, M., Besnard, L., Munaron, J.-M., Le Loc’h, F., & Point, D. (2020). Trophic resources and mercury exposure of two silvertip shark populations in the Northeast Pacific Ocean. Chemosphere, 253, 126645. https://doi.org/10.1016/j.chemosphere.2020.126645 Cite
Thibault, M., Duprey, N., Gillikin, D. P., Thébault, J., Douillet, P., Chauvaud, L., Amice, E., Munaron, J. M., & Lorrain, A. (2020). Bivalve δ15N isoscapes provide a baseline for urban nitrogen footprint at the edge of a World Heritage coral reef. Marine Pollution Bulletin, 152, 110870. https://doi.org/10.1016/j.marpolbul.2019.110870 Cite
Gonzalez, J. G., Menard, F., Le Loc’h, F., de Andrade, H. A., Viana, A. P., Ferreira, V., Fredou, F. L., Lira, A. S., Munaron, J.-M., & Fredou, T. (2019). Trophic resource partitioning of two snook fish species (Centropomidae) in tropical estuaries in Brazil as evidenced by stable isotope analysis. Estuarine Coastal and Shelf Science, 226, UNSP 106287. fdi:010076603. https://doi.org/10.1016/j.ecss.2019.106287 Cite
Thabet, I., Bourgeois, K., Le Loc’h, F., Abdennadher, A., Munaron, J.-M., Gharsalli, M., Romdhane, M. S., & Ben Rais Lasram, F. (2019). Trophic ecology of Scopoli’s shearwaters during breeding in the Zembra Archipelago (northern Tunisia). Marine Biology, 166(5), 61. https://doi.org/10.1007/s00227-019-3509-1 Cite
Le Croizier, G., Schaal, G., Point, D., Le Loc’h, F., Machu, E., Fall, M., Munaron, J.-M., Boye, A., Walter, P., Lae, R., & Tito-de-Morais, L. (2019). Stable isotope analyses revealed the influence of foraging habitat on mercury accumulation in tropical coastal marine fish. Science of the Total Environment, 650, 2129–2140. fdi:010074333 ;  https://archimer.ifremer.fr/doc/00458/57013/. https://doi.org/10.1016/j.scitotenv.2018.09.330 Cite
Le Croizier, G., Lacroix, C., Artigaud, S., Le Floch, S., Munaron, J.-M., Raffray, J., Penicaud, V., Rouget, M.-L., Lae, R., & Tito-de-Morais, L. (2019). Metal subcellular partitioning determines excretion pathways and sensitivity to cadmium toxicity in two marine fish species. Chemosphere, 217, 754–762. fdi:010074913 ; https://archimer.ifremer.fr/doc/00464/57606/. https://doi.org/10.1016/j.chemosphere.2018.10.212 Cite
Espinoza, P., Lorrain, A., Menard, F., Cherel, Y., Tremblay-Boyer, L., Arguëlles, J., Tafur, R., Bertrand, S., Tremblay, Y., Ayon, P., Munaron, J.-M., Richard, P., & Bertrand, A. (2017). Trophic structure in the northern Humboldt Current system: new perspectives from stable isotope analysis. Marine Biology, 164(4), 86. fdi:010069458. https://doi.org/10.1007/s00227-017-3119-8 Cite
Houssard, P., Lorrain, A., Tremblay-Boyer, L., Allain, V., Graham, B. S., Menkes, C. E., Pethybridge, H., Couturier, L., Point, D., Leroy, B., Receveur, A., Hunt, B. P. V., Vourey, E., Bonnet, S., Rodier, M., Raimbault, P., Feunteun, E., Kuhnert, P. M., Munaron, J.-M., … Letourneur, Y. (2017). Trophic position increases with thermocline depth in yellowfin and bigeye tuna across the Western and Central Pacific Ocean. Progress in Oceanography, 154, 49–63. https://doi.org/10.1016/j.pocean.2017.04.008 Cite
Le Croizier, G., Schaal, G., Gallon, R., Fall, M., Le Grand, F., Munaron, J.-M., Rouget, M.-L., Machu, E., Le Loc’h, F., Laë, R., & Tito-de-Morais, L. (2016). Trophic ecology influence on metal bioaccumulation in marine fish: Inference from stable isotope and fatty acid analyses. Science of the Total Environment, 573, 83–95. fdi:010068793. https://doi.org/http://dx.doi.org/10.1016/j.scitotenv.2016.08.035 Cite
Poulain, C., Gillikin, D. P., Thébault, J., Munaron, J. M., Bohn, M., Robert, R., Paulet, Y.-M., & Lorrain, A. (2015). An evaluation of Mg/Ca, Sr/Ca, and Ba/Ca ratios as environmental proxies in aragonite bivalve shells. Chemical Geology, 396, 42–50. https://doi.org/10.1016/j.chemgeo.2014.12.019 Cite
Khemiri, S., Labonne, M., Gaamour, A., Munaron, J.-M., & Morize, E. (2014). The use of otolith chemistry to determine stock structure of Sardina pilchardus and Engraulis encrasicolus in Tunisian Coasts. Cahiers de Biologie Marine, 55(1), 21–29. http://cat.inist.fr/?aModele=afficheN&cpsidt=28059075 Cite
Dortel, E., Massiot-Granier, F., Rivot, E., Million, J., Hallier, J.-P., Morize, E., Munaron, J.-M., Bousquet, N., & Chassot, E. (2013). Accounting for Age Uncertainty in Growth Modeling, the Case Study of Yellowfin Tuna (Thunnus albacares) of the Indian Ocean. Plos One, 8(4). https://doi.org/10.1371/journal.pone.0060886 Cite
Nerot, C., Lorrain, A., Grall, J., Gillikin, D. P., Munaron, J.-M., Le Bris, H., & Paulet, Y.-M. (2012). Stable isotope variations in benthic filter feeders across a large depth gradient on the continental shelf. Estuarine, Coastal and Shelf Science, 96, 228–235. http://www.sciencedirect.com/science/article/pii/S0272771411004550 Cite
Lorrain, A., Argüelles, J., Alegre, A., Bertrand, A., Munaron, J.-M., Richard, P., & Cherel, Y. (2011). Sequential isotopic signature along gladius highlights contrasted individual foraging strategies of jumbo squid (Dosidicus gigas). PLoS One, 6(7), e22194. http://dx.plos.org/10.1371/journal.pone.0022194 Cite