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Quantifying patterns in the evolution of reproductive isolation

机译:量化生殖隔离进化中的模式

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We present a likelihood-based statistical method for examining the pattern or rate of evolution of reproductive isolation. The method uses large empirical datasets to estimate, for a given clade, the average duration of two phases in the divergence of populations. The first phase is a lag phase and refers to the period during which lineages diverge but no detectable reproductive isolation evolves. The second is an accumulation phase, referring to the period during which the magnitude of reproductive isolation between diverging lineages increases. The pattern of evolution is inferred from the relative durations of these two phases. Results of analyses of postzygotic isolation data indicate significant differences among taxa in the pattern of evolution of postzygotic isolation that are consistent with predictions based on genetic differences among these groups. We also examine whether the evolution of postzygotic isolation is best explained by either of two models for the rate of accumulation: a linear model or a quadratic function as may be suggested by recent studies. Our analysis indicates that the appropriateness of either model varies among taxa.
机译:我们提出了一种基于可能性的统计方法,用于检查生殖隔离的模式或进化速率。对于给定的进化枝,该方法使用大量的经验数据集来估计种群发散的两个阶段的平均持续时间。第一阶段是滞后阶段,是指谱系发散但没有可检测到的生殖隔离发生的时期。第二个阶段是积累阶段,指的是发散世系之间的生殖隔离程度增加的时期。从这两个阶段的相对持续时间可以推断出进化的模式。后合子分离数据的分析结果表明,在后合子分离的进化模式中,分类单元之间存在显着差异,这与基于这些群体之间遗传差异的预测相一致。我们还检查了合子后分离的进化是否可以通过两种模型的累积速率最好地解释:线性模型或二次函数,正如最近的研究表明的那样。我们的分析表明,两种模型的适用性在分类单元中有所不同。

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