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A neutral view of the evolving genomic architecture of speciation

机译:形态的演化基因组结构的中性视图

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Abstract Analyses of genomewide polymorphism data have begun to shed light on speciation and adaptation. Genome scans to identify regions of the genome that are unusually different between populations or species, possibly due to divergent natural or sexual selection, are widespread in speciation genomics. Theoretical and empirical work suggests that such outlier regions may grow faster than linearly during speciation with gene flow due to a rapid transition between low and high reproductive isolation. We investigate whether this pattern could be attributed to neutral processes by simulating genomes under neutral evolution with varying amounts and timing of gene flow. Under both neutral evolution and divergent selection, simulations with little or no gene flow, or with a long allopatric period after its cessation, resulted in faster than linear growth of the proportion of the genome lying in outlier regions. Without selection, higher recent gene flow erased differentiation; with divergent selection, these same scenarios produced nonlinear growth to a plateau. Our results suggest that, given a history of gene flow, the growth of the divergent genome is informative about selection during divergence, but that in many scenarios, this pattern does not easily distinguish neutral and non-neutral processes during speciation with gene flow.
机译:摘要对基因组多态性数据的分析已经开始阐明了品种和适应性。基因组扫描以识别种群或物种之间异常不同的基因组的区域,可能是由于不同的自然或性选择,在物种基因组学中普遍存在。理论和经验工作表明,由于低生殖和高生殖隔离的快速过渡,这种异常区可能在基因流动期间的线性增长。我们研究了这种模式是否可以通过模拟中性演变的基因组来归因于中性过程,随着基因流的不同量和时间。在中性演化和分歧选择下,腹腔内或无阉割的基因流量或未发生较长的分类时期的模拟,导致伴随着异常区域中的基因组比例的线性生长更快。没有选择,最近最近的基因流动擦除分化;随着选择性的,这些方案产生了非线性增长到高原。我们的研究结果表明,鉴于基因流动的历史,发散基因组的生长在发散期间选择的信息是有信息性的,但在许多情况下,这种模式在具有基因流程的情况下,该模式并不容易区分中性和非中性过程。

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