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Stable isotope ratios of carbon, nitrogen and sulphur and mercury concentrations as descriptors of trophic ecology and contamination sources of Mediterranean whales

机译:碳,氮,硫和汞浓度的稳定同位素比说明地中海鲸的营养生态和污染源

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摘要

The Mediterranean Sea remains a complex system for mercury (Hg) cycling and accumulation in marine vertebrates. The extremely high levels these animals present demand for an urgent understanding of such processes and the development of new analytical techniques that go beyond the simple contamination monitoring. It was often proposed that prey selection or habitat use may affect Hg contamination in animals; however, it was never possible to measure which factor influences more rates and pathways of contamination. In this paper, we directly integrate toxicological information (Hg levels) and ecological tracers (stable isotopes of C, N and S) into a common data analysis framework (isotopic niches), with the aim of quantifying the influence of species' trophic behaviour on Hg contamination. The analysis was conducted on skin biopsies of fin whales Balaenoptera physalus, long-finned pilot whales Globicephala melas and sperm whales Physeter microcephalus. Their different trophic modes and residency in the area make them model species for the analysis of Hg accumulation along NWMS food webs. We measured Total Hg (T-Hg) concentrations through absorbance spectrometry with the DMA80 Milestone. Carbon, nitrogen and sulphur isotope compositions were measured via mass spectrometry in an IRMS coupled to an Elemental Analyser (EA) lsoprime.Comparison of ecological and contamination niches allowed to explain Hg accumulation in Mediterranean marine predators. Factors such as food web complexity, trophic position, hunting distribution or habitat use (e.g., foraging depth) did not influence Hg exposure. It is rather the selection of prey type, which determines the range of potential Hg sources and as a consequence the rates of accumulation in whales' tissues. A generalist piscivorous species such as the pilot whales will bioaccumulate more Hg than specialised sperm whales feeding mostly on cephalopods. (C) 2019 Elsevier Ltd. All rights reserved.
机译:地中海仍然是海洋脊椎动物中汞(Hg)循环和积累的复杂系统。这些动物的水平极高,因此需要对这些过程有紧急的了解,并需要开发超越简单的污染监测的新分析技术。经常有人建议猎物的选择或栖息地的使用可能会影响动物体内的汞污染。但是,永远无法测量哪个因素影响更多的污染率和污染途径。在本文中,我们将毒理学信息(汞含量)和生态示踪剂(碳,氮和硫的稳定同位素)直接整合到一个通用的数据分析框架(同位素壁ches)中,目的是量化物种的营养行为对汞污染。该分析是对长须鲸Balaenoptera physalus,长鳍长须鲸Globicephala melas和抹香鲸Physeter microcephalus的皮肤活检进行的。它们的营养方式和在该地区的居住方式不同,使它们成为用于分析沿西北偏西区域食物网汞累积的模型物种。我们使用DMA80 Milestone通过吸收光谱法测量了总Hg(T-Hg)浓度。碳,氮和硫的同位素组成在与元素分析仪(EA)lsoprime耦合的IRMS中通过质谱法进行了测量。生态位和污染位的比较可以解释地中海海洋捕食者中汞的积累。食物网的复杂性,营养位置,狩猎分布或栖息地的使用(例如觅食深度)等因素均不会影响汞的暴露。相反,猎物类型的选择决定了潜在汞源的范围,并因此决定了鲸鱼组织中积累的速率。普通食鱼性物种(如领航鲸)比主要以头足类为食的专门抹香鲸的生物积累更多的汞。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2019年第12期|124448.1-124448.11|共11页
  • 作者

  • 作者单位

    Univ Liege Lab Oceanol Freshwater & Ocean Sci Unit ReS FOCUS B6c 11 Allee 6 Aout B-4000 Liege Belgium;

    Univ Liege Lab Oceanol Freshwater & Ocean Sci Unit ReS FOCUS B6c 11 Allee 6 Aout B-4000 Liege Belgium|IFREMER Ctr Bretagne REM EEP Lab Environm Profond F-29280 Plouzane France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mercury; Mediterranean sea; Cetaceans; Ecological niche; Contamination niche; Diet specialisation;

    机译:汞;地中海;鲸类;生态位;污染生态位;饮食专业;

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