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首页> 外文期刊>Global change biology >Insects in high-elevation streams: Life in extreme environments imperiled by climate change
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Insects in high-elevation streams: Life in extreme environments imperiled by climate change

机译:高仰角流中的昆虫:气候变化危险的极端环境中的生活

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Climate change is altering conditions in high-elevation streams worldwide, with largely unknown effects on resident communities of aquatic insects. Here, we review the challenges of climate change for high-elevation aquatic insects and how they may respond, focusing on current gaps in knowledge. Understanding current effects and predicting future impacts will depend on progress in three areas. First, we need better descriptions of the multivariate physical challenges and interactions among challenges in high-elevation streams, which include low but rising temperatures, low oxygen supply and increasing oxygen demand, high and rising exposure to ultraviolet radiation, low ionic strength, and variable but shifting flow regimes. These factors are often studied in isolation even though they covary in nature and interact in space and time. Second, we need a better mechanistic understanding of how physical conditions in streams drive the performance of individual insects. Environment-performance links are mediated by physiology and behavior, which are poorly known in high-elevation taxa. Third, we need to define the scope and importance of potential responses across levels of biological organization. Short-term responses are defined by the tolerances of individuals, their capacities to perform adequately across a range of conditions, and behaviors used to exploit local, fine-scale variation in abiotic factors. Longer term responses to climate change, however, may include individual plasticity and evolution of populations. Whether high-elevation aquatic insects can mitigate climatic risks via these pathways is largely unknown.
机译:气候变化正在全世界高海拔流的条件改变,对水生昆虫的居民群落具有很大的效果。在这里,我们审查了高升高水生昆虫的气候变化以及它们如何回应的气候变化挑战,重点是当前知识的差距。了解当前效果和预测未来的影响将取决于三个方面的进展。首先,我们需要更好地描述高仰角流中的挑战之间的多变量的身体挑战和相互作用,包括低但上升的温度,低氧供应和增加氧需求,高和上升暴露于紫外线辐射,低离子强度和可变但是转移流动制度。即使他们在本质上的科罗拉里也经常在隔离中研究这些因素,并且在空间和时间内互动。其次,我们需要更好地了解物流条件如何推动单个昆虫的性能。环境 - 性能链接由生理和行为介导,在高海拔分类群中闻名。第三,我们需要界定跨越生物组织水平的潜在响应的范围和重要性。短期反应是由个人的公差,它们在一系列条件下进行充分的能力,以及用于利用局部,非生物因子的细微变异的行为的能力。然而,对气候变化的长期回应可能包括个体可塑性和种群的演变。高海拔水生昆虫是否可以通过这些途径缓解气候风险在很大程度上是未知的。

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