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Direct and indirect effects of multiple environmental stressors on fish health in human-altered rivers

机译:多种环境压力对人类改变河流鱼健康的直接和间接影响

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摘要

Freshwater fish face multiple challenges in human-altered rivers such as trace metal contamination, temperature increase and parasitism. These multiple stressors could have unexpected interactive effects on fish health due to shared physiological pathways, but few studies investigated this question in wild fish populations. In this study, we compared 16 populations of gudgeon (Gobio occitaniae) distributed along perturbation gradients in human-altered rivers in the South of France. We tested the effects of single and combined stressors (i.e., metal contamination, temperature, parasitism) on key traits linked to fish health across different biological levels using a Structural Equation Modelling approach. Parasitism and temperature alone had limited deleterious effects on fish health. In contrast, fish living in metal-contaminated sites had higher metal bioaccumulation and higher levels of cellular damage in the liver through the induction of an inflammatory response. In addition, temperature and contamination had interactive negative effects on growth. These results suggest that trace metal contamination has deleterious effects on fish health at environmentally realistic concentrations and that temperature can modulate the effects of trace metals on fish growth. With this study, we hope to encourage integrative approaches in realistic field conditions to better predict the effects of natural and anthropogenic stressors on aquatic organisms.
机译:淡水鱼面临人类改变河流的多种挑战,如痕量金属污染,温度升高和寄生术。由于共同的生理途径,这些多个压力源可能对鱼类健康产生意外的互动影响,但很少有研究在野生鱼群中调查了这个问题。在这项研究中,我们将16个欺骗(Gobio Occitaniae)的群体分布在法国南部的人类改变河流中的扰动梯度。我们通过结构方程建模方法对不同生物水平相关的单一和组合压力源(即金属污染,温度,寄生术)对不同生物水平相关的关键性状的影响。寄生和温度单独对鱼类健康有限。相比之下,生活在金属污染部位的鱼在炎症反应的诱导中具有更高的金属生物累积和肝脏细胞损伤水平。此外,温度和污染对生长具有相互作用的负面影响。这些结果表明,痕量金属污染对环境现实浓度有害影响鱼类健康,并且该温度可以调节痕量金属对鱼类生长的影响。通过这项研究,我们希望鼓励在现实的现场条件下综合途径,以更好地预测天然和人为压力源对水生生物的影响。

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  • 来源
    《The Science of the Total Environment》 |2020年第10期|140657.1-140657.13|共13页
  • 作者单位

    EcoLab Laboratoire ecologie fonctionnelle et environnement UMR5245 Universite de Toulouse CNRS Toulouse France EDB UMR5174 EDB Universite de Toulouse CNRS IRD UPS 118 route de Narbonne Toulouse France USER France Zone Atelier FYGAR 'Pyrenees-Garonne' Auzeville-Tolosane France;

    EcoLab Laboratoire ecologie fonctionnelle et environnement UMR5245 Universite de Toulouse CNRS Toulouse France USER France Zone Atelier FYGAR 'Pyrenees-Garonne' Auzeville-Tolosane France;

    EDB UMR5174 EDB Universite de Toulouse CNRS IRD UPS 118 route de Narbonne Toulouse France USER France Zone Atelier FYGAR 'Pyrenees-Garonne' Auzeville-Tolosane France;

    INRA-Oniris PAnTher APEX La Chantrerie 44307 Nantes France;

    Centre d'Etudes Biologiques de Chile UMR 7372 Universite de la Rochelle CNRS Villiers en Bois France;

    Centre d'Etudes Biologiques de Chile UMR 7372 Universite de la Rochelle CNRS Villiers en Bois France;

    EcoLab Laboratoire ecologie fonctionnelle et environnement UMR5245 Universite de Toulouse CNRS Toulouse France USER France Zone Atelier FYGAR 'Pyrenees-Garonne' Auzeville-Tolosane France;

    EcoLab Laboratoire ecologie fonctionnelle et environnement UMR5245 Universite de Toulouse CNRS Toulouse France USER France Zone Atelier FYGAR 'Pyrenees-Garonne' Auzeville-Tolosane France;

    EDB UMR5174 EDB Universite de Toulouse CNRS IRD UPS 118 route de Narbonne Toulouse France USER France Zone Atelier FYGAR 'Pyrenees-Garonne' Auzeville-Tolosane France;

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

    Pollution; Trace metals; Global change; Parasitism; Ecophysiology; Structural equation modelling;

    机译:污染;痕量金属;全球变革;寄生;生理学;结构方程建模;

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