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首页> 外文期刊>Global change biology >Toward a loss of functional diversity in stream fish assemblages under climate change.
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Toward a loss of functional diversity in stream fish assemblages under climate change.

机译:在气候变化的影响下,溪流鱼类的功能多样性正在丧失。

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摘要

The assessment of climate change impacts on biodiversity has so far been biased toward the taxonomic identification of the species likely either to benefit from climate modifications or to experience overall declines. There have still been few studies intended to correlate the characteristics of species to their sensitivity to climate change, even though it is now recognized that functional trait-based approaches are promising tools for addressing challenges related to global changes. In this study, two functional indices (originality and uniqueness) were first measured for 35 fish species occurring in French streams. They were then combined to projections of range shifts in response to climate change derived from species distribution models. We set out to investigate: (1) the relationship between the degrees of originality and uniqueness of fish species, and their projected response to future climate change; and (2) the consequences of individual responses of species for the functional diversity of fish assemblages. After accounting for phylogenetic relatedness among species, we have demonstrated that the two indices used measure two complementary facets of the position of fish species in a functional space. We have also rejected the hypothesis that the most original and/or less redundant species would necessarily experience the greatest declines in habitat suitability as a result of climate change. However, individual species range shifts could lead simultaneously both to a severe decline in the functional diversity of fish assemblages, and to an increase in the functional similarity among assemblages, supporting the hypothesis that disturbance favors communities with combination of common traits and biotic homogenization as well. Our findings therefore emphasize the importance of going beyond the simple taxonomic description of diversity to provide a better assessment of the likely future effects of environmental changes on biodiversity, thus helping to design more effective conservation and management measures.Digital Object Identifier http://dx.doi.org/10.1111/gcb.12056
机译:迄今为止,对气候变化对生物多样性的影响的评估偏向于对可能从气候变化中受益或经历总体下降的物种进行分类学鉴定。尽管现在已经认识到基于功能性状的方法是应对与全球变化有关的挑战的有前途的工具,但几乎没有旨在将物种的特征与其对气候变化的敏感性相关联的研究。在这项研究中,首先对法国溪流中出现的35种鱼类的两个功能指标(原始性和唯一性)进行了测量。然后将它们结合到根据物种分布模型得出的气候变化响应范围变化的预测中。我们着手研究:(1)鱼种的独创性和独特性程度与它们对未来气候变化的预期反应之间的关系; (2)物种个体反应对鱼群功能多样性的影响。在考虑了物种之间的系统发育相关性之后,我们证明了所使用的两个指数可测量功能空间中鱼类物种位置的两个互补方面。我们还拒绝了以下假设:由于气候变化,最原始和/或更少冗余的物种必然会在生境适应性方面遭受最大的下降。但是,单个物种范围的变化可能同时导致鱼类组合的功能多样性严重下降,以及组合之间的功能相似性增加,从而支持了这样的假说,即干扰有利于具有共同特征和生物均质性的群落。因此,我们的发现强调了超越简单的分类学描述多样性的重要性,以便更好地评估环境变化对生物多样性的未来可能影响,从而有助于设计更有效的保护和管理措施。数字对象标识符http:// dx .doi.org / 10.1111 / gcb.12056

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