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Simulated climate change provokes rapid genetic change in the Mediterranean shrub Fumana thymifolia

机译:模拟的气候变化引起地中海灌木富曼胸腺叶的快速遗传变化

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摘要

Rapid climate change will impose strong directional selection pressures on natural plant populations. Climate-linked genetic variation in natural populations indicates that an evolutionary response is possible. We investigated such a response by comparing individuals subjected to elevated drought and warming treatments with individuals establishing in an unmanipulated climate within the same population. We report that reduction in seedling establishment in response to climate manipulations is nonrandom and results from the selection pressure imposed by artificially warmed and droughted conditions. When compared against control samples, high single-locus genetic divergence occurred in drought and warming treatment samples, with genetic differentiation up to 37 times higher than background (mean neutral locus) genetic differentiation. These loci violate assumptions of selective neutrality, indicating the signature of natural selection by drought. Our results demonstrate that rapid evolution in response to climate change may be widespread in natural populations, based on genetic variation already present within the population.
机译:快速的气候变化将对天然植物种群施加强烈的方向选择压力。自然种群中与气候相关的遗传变异表明进化反应是可能的。我们通过比较遭受高干旱和暖化处理的个体与在同一种群中处于不受控制的气候中的个体进行比较来研究这种响应。我们报告说,响应气候操作而减少的幼苗生长是非随机的,并且是由人为温暖和干旱条件施加的选择压力造成的。当与对照样品进行比较时,干旱和升温处理样品中出现了很高的单基因座遗传差异,其遗传分化高达背景(平均中性位点)遗传分化的37倍。这些基因座违反了选择性中立的假设,表明干旱自然选择的特征。我们的结果表明,基于气候变化的快速进化可能会基于自然种群中已经存在的遗传变异而在自然种群中广泛传播。

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