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Adaptive Divergence of Meiotic Recombination Rate in Ecological Speciation

机译:生态形态中减数分裂重组率的自适应分歧

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摘要

Theories predict that directional selection during adaptation to a novel habitat results in elevated meiotic recombination rate. Yet the lack of population-level recombination rate data leaves this hypothesis untested in natural populations. Here, we examine the population-level recombination rate variation in two incipient ecological species, the microcrustacean Daphnia pulex (an ephemeral-pond species) and Daphnia pulicaria (a permanent-lake species). The divergence of D. pulicaria from D. pulex involved habitat shifts from pond to lake habitats as well as strong local adaptation due to directional selection. Using a novel single-sperm genotyping approach, we estimated the male-specific recombination rate of two linkage groups in multiple populations of each species in common garden experiments and identified a significantly elevated recombination rate in D. pulicaria. Most importantly, population genetic analyses show that the divergence in recombination rate between these two species is most likely due to divergent selection in distinct ecological habitats rather than neutral evolution.
机译:理论预测,适应于新型栖息地期间的定向选择导致升高的减数分析率。然而,缺乏人口水平重组率数据将在天然群体中留下了这一假设。在这里,我们研究了两种初期生态物种,微都菌氏蛋白珠柱(季克肠道物种)和Daphnia Puricaria(永久湖泊)中的人口水平重组率变异。 D. Puricaria的分歧来自D. Pulex涉及的栖息地从池塘到湖泊栖息地以及由于定向选择而强烈的局部适应。使用新型单精子基因分型方法,我们估计了共同园林实验中每种物种的多种群体中两种连杆基团的男性特异性重组率,并鉴定了D. puricaria的显着升高的重组率。最重要的是,人口遗传分析表明,这两种物种之间的重组率的分歧很可能是由于不同生态栖息地的不同选择而不是中性的演化。

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