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首页> 外文期刊>Global change biology >A replicated climate change field experiment reveals rapid evolutionary response in an ecologically important soil invertebrate
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A replicated climate change field experiment reveals rapid evolutionary response in an ecologically important soil invertebrate

机译:重复的气候变化野外实验揭示了在具有生态学意义的无脊椎动物中的快速进化反应

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摘要

Whether species can respond evolutionarily to current climate change is crucial for the persistence of many species. Yet, very few studies have examined genetic responses to climate change in manipulated experiments carried out in natural field conditions. We examined the evolutionary response to climate change in a common annelid worm using a controlled replicated experiment where climatic conditions were manipulated in a natural setting. Analyzing the transcribed genome of 15 local populations, we found that about 12% of the genetic polymorphisms exhibit differences in allele frequencies associated to changes in soil temperature and soil moisture. This shows an evolutionary response to realistic climate change happening over short-time scale, and calls for incorporating evolution into models predicting future response of species to climate change. It also shows that designed climate change experiments coupled with genome sequencing offer great potential to test for the occurrence (or lack) of an evolutionary response.
机译:物种是否可以对当前的气候变化做出进化反应,对于许多物种的生存至关重要。然而,很少有研究在自然田间条件下进行的操纵实验中研究了对气候变化的遗传反应。我们使用受控的重复实验检查了普通setting虫对气候变化的进化响应,该实验在自然环境中操纵了气候条件。通过分析15个本地种群的转录基因组,我们发现大约12%的遗传多态性表现出与土壤温度和土壤湿度变化相关的等位基因频率差异。这表明了对短期内发生的现实气候变化的进化反应,并呼吁将进化纳入预测物种对气候变化未来反应的模型中。它还表明,设计好的气候变化实验与基因组测序相结合,具有巨大的潜力来测试进化反应的发生(或缺乏)。

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