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Evolutionary and plastic responses of freshwater invertebrates to climate change: realized patterns and future potential

机译:淡水无脊椎动物对气候变化的进化和塑性响应:已实现的模式和未来潜力

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摘要

We integrated the evidence for evolutionary and plastic trait changes in situ in response to climate change in freshwater invertebrates (aquatic insects and zooplankton). The synthesis on the trait changes in response to the expected reductions in hydroperiod and increases in salinity indicated little evidence for adaptive, plastic, and genetic trait changes and for local adaptation. With respect to responses to temperature, there are many studies on temporal trait changes in phenology and body size in the wild that are believed to be driven by temperature increases, but there is a general lack of rigorous demonstration whether these trait changes are genetically based, adaptive, and causally driven by climate change. Current proof for genetic trait changes under climate change in freshwater invertebrates stems from a limited set of common garden experiments replicated in time. Experimental thermal evolution experiments and common garden warming experiments associated with space-for-time substitutions along latitudinal gradients indicate that besides genetic changes, also phenotypic plasticity and evolution of plasticity are likely to contribute to the observed phenotypic changes under climate change in aquatic invertebrates. Apart from plastic and genetic thermal adjustments, also genetic photoperiod adjustments are widespread and may even dominate the observed phenological shifts.
机译:我们综合了淡水无脊椎动物(水生昆虫和浮游动物)响应气候变化原位进化和塑性性状变化的证据。性状变化的合成响应预期的水周期减少和盐度增加,表明适应性,可塑性和遗传性状改变以及局部适应性的证据很少。关于对温度的反应,许多关于野生物候和体型的暂时性状变化的研究据信是由温度升高驱动的,但普遍缺乏严格的证据证明这些性状变化是否是基于遗传的,适应性的,并且是由气候变化引起的。淡水无脊椎动物在气候变化下遗传性状变化的最新证据来自时间上重复的有限的普通花园实验。与沿纬度梯度的时空替代相关的实验性热演化实验和常见的花园变暖实验表明,除了遗传变化外,表型可塑性和可塑性的演化还可能有助于在水生无脊椎动物气候变化下观察到的表型变化。除了塑性和遗传热调节以外,遗传光周期调节也很普遍,甚至可以主导观察到的物候变化。

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