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Trophic position increases with thermocline depth in yellowfin and bigeye tuna across the Western and Central Pacific Ocean

机译:在西太平洋和中太平洋的黄鳍金枪鱼和大眼金枪鱼中,营养位的位置随着温跃层深度的增加而增加

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摘要

Estimates of trophic position are used to validate ecosystem models and understand food web structure. A consumer's trophic position can be estimated by the stable nitrogen isotope values (delta N-15) of its tissue, once the baseline isotopic variability has been accounted for. Our study established the first data-driven baseline delta N-15 isoscape for the Western and Central Pacific Ocean using particulate organic matter. Bulk delta N-15 analysis on 1039 muscle tissue of bigeye and yellowfin tuna were conducted together with amino acid compound-specific delta N-15 analysis (AA-CSIA) on a subset of 21 samples. Both particulate organic matter and tuna bulk delta N-15 values varied by more than 10 parts per thousand across the study area. Fine-scaled trophic position maps were constructed and revealed higher tuna trophic position (by similar to 1) in the southern latitudes compared to the equator. AA-CSIA confirmed these spatial patterns for bigeye and, to a lesser extent, yellowfin tuna. Using generalized additive models, spatial variations of tuna trophic positions were mainly related to the depth of the 20 degrees C isotherm, a proxy for the thermocline behavior, with higher tuna trophic position estimates at greater thermocline depths. We hypothesized that a deeper thermocline would increase tuna vertical habitat and access to mesopelagic prey of higher trophic position. Archival tagging data further suggested that the vertical habitat of bigeye tuna was deeper in the southern latitudes than at the equator. These results suggest the importance of thermocline depth in influencing tropical tuna diet, which affects their vulnerability to fisheries, and may be altered by climate change. (C) 2017 Elsevier Ltd. All rights reserved.
机译:营养位置的估计用于验证生态系统模型和了解食物网结构。一旦考虑了基线同位素变异性,即可通过其组织的稳定氮同位素值(δN-15)来估计消费者的营养位置。我们的研究使用颗粒有机物为西太平洋和中太平洋建立了第一个数据驱动的基线三角洲N-15等值线。在21个样本的子集上,对大眼鱼和黄鳍金枪鱼的1039个肌肉组织进行了体积增量N-15分析,以及氨基酸化合物特异性增量N-15分析(AA-CSIA)。在整个研究区域内,颗粒状有机物和金枪鱼散装三角洲的N-15值变化千分之十以上。构造了细尺度的营养位置图,揭示了与赤道相比南部纬度更高的金枪鱼营养位置(约等于1)。 AA-CSIA证实了大眼金枪鱼和黄鳍金枪鱼的这些空间格局。使用广义加性模型,金枪鱼营养位置的空间变化主要与20摄氏度等温线的深度有关,等温线是温跃线行为的代表,在较高的温跃层深度处,金枪鱼营养位置的估算值较高。我们假设,更深的温跃层将增加金枪鱼的垂直生境,并增加营养位置较高的近中生猎物。档案标签数据进一步表明,大眼金枪鱼的垂直生境在南纬比在赤道更深。这些结果表明,温床深度对影响热带金枪鱼饮食的重要性,这会影响其对渔业的脆弱性,并可能因气候变化而改变。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Progress in Oceanography》 |2017年第5期|49-63|共15页
  • 作者单位

    UBO, CNRS, IRD, LEMAR,UMR 6539,IFREMER, BP A5, Noumea 98848, New Caledonia|Univ Nouvelle Caledonie, LIVE, LabEx Corail, EA 4243, BP R4, Noumea 98851, New Caledonia;

    UBO, CNRS, IRD, LEMAR,UMR 6539,IFREMER, BP A5, Noumea 98848, New Caledonia;

    Pacific Community, Ocean Fisheries Programme, BP D5, Noumea 98848, New Caledonia;

    Pacific Community, Ocean Fisheries Programme, BP D5, Noumea 98848, New Caledonia;

    Natl Inst Water & Atmospher Res NIWA, Wellington, New Zealand;

    Univ Paris 06, Sorbonne Univ, UPMC, IRD,CNRS,MNHN,LOCEAN,UMR 7159, BP A5, Noumea 98848, New Caledonia;

    CSIRO Oceans & Atmosphere, GPO Box 1538, Hobart, Tas 2001, Australia;

    Univ Brest, Inst Univ Europeen Mer, CNRS,Ifremer, Lab Sci Environm Marin,LEMAR,UMR 6539,IRD,UBO, F-29280 Plouzane, France;

    Univ Paul Sabatier Toulouse 3, Observ Midipyrenees, GET, UMR CNRS 5563,IRD 234, 14 Ave Edouard Belin, F-31400 Toulouse, France;

    Pacific Community, Ocean Fisheries Programme, BP D5, Noumea 98848, New Caledonia;

    Pacific Community, Ocean Fisheries Programme, BP D5, Noumea 98848, New Caledonia;

    Univ British Columbia, Inst Oceans & Fisheries, Vancouver, BC V6T 1Z4, Canada|Hakai Inst, POB 309, Heriot Bay, BC V0P 1H0, Canada;

    Pacific Community, Ocean Fisheries Programme, BP D5, Noumea 98848, New Caledonia;

    Univ Toulon & Var, Mediterranean Inst Oceanog, UM 110, IRD,AMU,CNRS,INSU, Noumea 98848, New Caledonia;

    Univ Polynesie Francaise, Inst Malarme, IRD, EIO,UMR 241 98700,Ifremer, Papeete, French Polynesi, Fr Polynesia;

    Aix Marseille Univ, Univ Toulon, CNRS, Mediterranean Inst Oceanog,UM 110,INSU, F-13288 Marseille, France;

    Univ Antilles, Museum Natl Hist Nat, UMR BOREA Biol Organismes Ecosyst Aquat 7208, CNRS,UPMC,UniCaen,IRD, Pointe a Pitre, Guadeloupe, Guadeloupe|Stn Marine Dinard CRESCO, 38 Ave Port Blanc, F-35800 Dinard, France;

    CSIRO, Data61, GPO Box 664, Canberra, ACT 2601, Australia;

    Univ Brest, Inst Univ Europeen Mer, CNRS,Ifremer, Lab Sci Environm Marin,LEMAR,UMR 6539,IRD,UBO, F-29280 Plouzane, France;

    Univ Rochelle, Inst Littoral & Environm, CNRS, UMR Littoral Environm & Soc 7266, F-17000 La Rochelle, France;

    Fac Agr Life Sci, Dept Fishery Sci, Bunkyo Ku, 1-1-1 Yayoi, Tokyo 1138657, Japan;

    Univ Nouvelle Caledonie, LIVE, LabEx Corail, EA 4243, BP R4, Noumea 98851, New Caledonia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nitrogen isotopes; POM; Isoscapes Bigeye tuna; Yellowfin tuna; Depth of the 20 degrees C isotherm; Amino acid; Compound-specific isotope analysis; Biochemical markers;

    机译:氮同位素;POM;大眼金枪鱼;黄鳍金枪鱼;等温线20度深度;氨基酸;化合物特异性同位素分析;生化标记;
  • 入库时间 2022-08-18 03:34:11

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