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How does ocean seasonality drive habitat preferences of highly mobile top predators? Part II: The eastern North-Atlantic

机译:海洋季节性如何驱动高度活动的顶级捕食者的栖息地偏好?第二部分:北大西洋东部

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摘要

Marine ecosystems are characterised by strong heterogeneity and variability, both spatially and temporally. In particular, seasonal variations may lead to severe constraints for predators which have to cope with these variations, for example through migration to avoid unfavourable seasons, or adaptation to local modification of the ecosystem. In the Bay of Biscay and English Channel, ecosystem seasonality is well marked, especially over the shelf. Cetacean and seabird communities within the Bay of Biscay, Celtic Sea and English Channel were studied during aerial surveys conducted in winter 2011-2012 and summer 2012, following a strip-transect methodology deployed from the coast to oceanic waters. We explored seasonal variations of habitat preferences of four cetacean and six seabird groups through Generalised Additive Models, using physiographic variables and weekly- and monthly-averaged oceanographic predictors for both seasons. Our results provided the first overview at such a large scale of the variation of habitat preferences in response to the seasonality of the ocean by seabirds in that region, at such a large scale. Habitat models resulted in explained deviances from 13 to 55%. Predators answered the seasonality of their environment in different ways. Long-finned pilot whales and Risso's dolphins were the only studied group exhibiting no habitat variations between seasons, targeting the shelf break throughout the year. The other groups modulated their habitat preferences between seasons to optimise the compromise between the ocean seasonal variations and their own constraints: common and striped dolphins, bottlenose dolphins and harbour porpoises for cetaceans; northern gannets, auks, northern fulmars and kittiwakes for seabirds. For shearwaters, the seasonality had an extreme impact, inducing a complete absence from the region during the unfavourable season. (C) 2016 Elsevier Ltd. All rights reserved.
机译:海洋生态系统的特点是在空间和时间上都具有很强的异质性和可变性。尤其是,季节性变化可能会给捕食者带来严峻的限制,必须应对这些变化,例如通过迁徙来避免不利的季节,或者适应生态系统的局部改变。在比斯开湾和英吉利海峡,生态系统的季节性非常明显,尤其是在陆架上。在2011-2012年冬季和2012年夏季进行的空中调查期间,采用了从海岸到海洋水域的带状剖面方法,对比斯开湾,凯尔特海和英吉利海峡内的鲸类和海鸟群落进行了研究。我们使用生理变量以及两个季节的每周和每月平均海洋预报因子,通过广义加性模型探索了四个鲸类和六个海鸟类的生境偏好的季节性变化。我们的结果首次提供了如此大规模的栖息地偏好变化概述,以应对该地区海鸟对海洋的季节性变化。栖息地模型导致解释的偏差从13%到55%。捕食者以不同的方式回答了环境的季节性问题。长鳍长尾鲸和里索的海豚是唯一研究的季节之间没有栖息地变化的群体,其目标是全年搁置。其他组在季节之间调整了栖息地的偏好,以优化海洋季节变化和自身约束之间的折衷:普通海豚和斑海豚,宽吻海豚和鲸类海豚。北部塘鹅,金枪鱼,北部海ful和海鸟的Kittiwakes。对于剪力水而言,季节变化具有极大的影响,在不利的季节导致该地区完全缺水。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Deep-Sea Research》 |2017年第7期|133-154|共22页
  • 作者单位

    Univ La Rochelle, UMR CNRS 7372, Ctr Etudes Biol Chize, Inst Littoral & Environm, F-17000 La Rochelle, France;

    Univ La Rochelle, UMS CNRS 3462, Observ PELAGIS, Syst Observat Conservat Mammiferes & Oiseaux Mari, F-17000 La Rochelle, France;

    Univ La Rochelle, UMS CNRS 3462, Observ PELAGIS, Syst Observat Conservat Mammiferes & Oiseaux Mari, F-17000 La Rochelle, France;

    Univ La Rochelle, UMS CNRS 3462, Observ PELAGIS, Syst Observat Conservat Mammiferes & Oiseaux Mari, F-17000 La Rochelle, France;

    APECS Associat Etude & Conservat Selaciens, 13 Rue Jean Francois Tartu,BP 51151, F-29211 Brest 1, France;

    Univ La Rochelle, UMS CNRS 3462, Observ PELAGIS, Syst Observat Conservat Mammiferes & Oiseaux Mari, F-17000 La Rochelle, France;

    Univ La Rochelle, UMR CNRS 7372, Ctr Etudes Biol Chize, Inst Littoral & Environm, F-17000 La Rochelle, France|Univ La Rochelle, UMS CNRS 3462, Observ PELAGIS, Syst Observat Conservat Mammiferes & Oiseaux Mari, F-17000 La Rochelle, France;

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

    Seabirds; Cetaceans; Habitat modelling; Eastern North-Atlantic; Seasons; Bay of Biscay; English Channel;

    机译:海鸟;鲸类;栖息地模型;北大西洋东部;季节;比斯开湾;英吉利海峡;

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