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Detecting the footprints of divergent selection in oaks with linked markers

机译:使用链接的标记检测橡树中发散选择的足迹

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摘要

Genome scans are increasingly used to study ecological speciation, providing a useful genome-wide perspective on divergent selection in the presence of gene flow. Here, we compare current approaches to detect footprints of divergent selection in closely related species. We analyzed 192 individuals from two interfertile European temperate oak species using 30 nuclear microsatellites from eight linkage groups. These markers present little intraspecific differentiation and can be used in combination to assign individual genotypes to species. We first show that different outlier detection tests give somewhat different results, possibly due to model constraints. Second, using linkage information for these markers, we further characterize the signature of divergent selection in the presence of gene flow. In particular, we show that recombination estimates for regions with outlier markers are lower than those for a control region, in line with a prediction from ecological speciation theory. Most importantly, we show that analyses at the haplotype level can distinguish between truly divergent (bi-directional) selection and positive selection in one of the two species, offering a new and improved method for characterizing the speciation process.
机译:基因组扫描越来越多地用于研究生态物种形成,从而为基因流存在下的差异选择提供了有用的全基因组视角。在这里,我们比较了当前的方法来检测紧密相关物种中不同选择的足迹。我们使用来自八个连锁组的30个核微卫星,分析了来自两种可干扰的欧洲温带栎树种的192个个体。这些标记物几乎没有种内分化,可以结合使用以将各个基因型分配给物种。我们首先表明,不同的离群值检测测试可能会由于模型约束而给出不同的结果。其次,使用这些标记的连锁信息,我们进一步表征了在存在基因流时发散选择的特征。特别是,我们证明了具有异常标记的区域的重组估计值低于对照区域的重组估计值,这符合生态物种形成理论的预测。最重要的是,我们表明,在单倍型水平上的分析可以区分两个物种之一中的真正发散(双向)选择和正选择,从而提供了一种新的且经过改进的表征物种形成过程的方法。

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