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相对于实验温度,两栖动物对硫酸铜敏感性中的系统发育信号。

Phylogenetic signal in amphibian sensitivity to copper sulfate relative to experimental temperature.

作者信息

Chiari Ylenia, Glaberman Scott, Serén Nina, Carretero Miguel A, Capellini Isabella

出版信息

Ecol Appl. 2015 Apr;25(3):596-602. doi: 10.1890/14-0439.1.

Abstract

The release of large quantities of chemicals into the environment represents a major source of environmental disturbance. In recent years, the focus of ecotoxicology has shifted from describing the effects of chemical contaminants on individual species to developing more integrated approaches for predicting and evaluating long term effects of chemicals across species and ecosystems. Traditional ecotoxicology is typically based on data of sensitivity to a contaminant of a few surrogate species and often considers little variability in chemical sensitivity within and among taxonomic groups. This approach assumes that evolutionary history and phylogenetic relatedness among species have little or no impact on species' sensitivity to chemical compounds. Few studies have tested this assumption. Using phylogenetic comparative methods and published data for amphibians, we show that sensitivity to copper sulfate, a commonly used pesticide, exhibits a strong phylogenetic signal when controlling for experimental temperature. Our results indicate that evolutionary history needs to be accounted for to make accurate predictions of amphibian sensitivity to this contaminant under different temperature scenarios. Since physiological and metabolic traits showing high phylogenetic signal likely underlie variation in species sensitivity to chemical stressors, future studies should evaluate and predict species vulnerability to pollutants using evolutionarily informed approaches.

摘要

大量化学物质释放到环境中是环境干扰的一个主要来源。近年来,生态毒理学的重点已从描述化学污染物对单个物种的影响,转向开发更综合的方法来预测和评估化学物质对跨物种和生态系统的长期影响。传统生态毒理学通常基于少数替代物种对污染物的敏感性数据,并且往往很少考虑分类群内部和之间化学敏感性的变异性。这种方法假定物种之间的进化历史和系统发育相关性对物种对化合物的敏感性几乎没有影响。很少有研究检验过这一假设。利用系统发育比较方法和已发表的两栖动物数据,我们发现,在控制实验温度的情况下,对常用农药硫酸铜的敏感性表现出很强的系统发育信号。我们的结果表明,在不同温度情景下,需要考虑进化历史才能准确预测两栖动物对这种污染物的敏感性。由于显示出高系统发育信号的生理和代谢特征可能是物种对化学应激源敏感性变化的基础,未来的研究应该使用基于进化的方法来评估和预测物种对污染物的脆弱性。

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