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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Multilocus Methods for Estimating Population Sizes, Migration Rates and Divergence Time, With Applications to the Divergence of Drosophila pseudoobscura and D. persimilis
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Multilocus Methods for Estimating Population Sizes, Migration Rates and Divergence Time, With Applications to the Divergence of Drosophila pseudoobscura and D. persimilis

机译:估计种群大小,迁移率和扩散时间的多基因座方法,并应用于果蝇和柿的扩散

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The genetic study of diverging, closely related populations is required for basic questions on demography and speciation, as well as for biodiversity and conservation research. However, it is often unclear whether divergence is due simply to separation or whether populations have also experienced gene flow. These questions can be addressed with a full model of population separation with gene flow, by applying a Markov chain Monte Carlo method for estimating the posterior probability distribution of model parameters. We have generalized this method and made it applicable to data from multiple unlinked loci. These loci can vary in their modes of inheritance, and inheritance scalars can be implemented either as constants or as parameters to be estimated. By treating inheritance scalars as parameters it is also possible to address variation among loci in the impact via linkage of recurrent selective sweeps or background selection. These methods are applied to a large multilocus data set from Drosophila pseudoobscura and D. persimilis. The species are estimated to have diverged ~500,000 years ago. Several loci have nonzero estimates of gene flow since the initial separation of the species, with considerable variation in gene flow estimates among loci, in both directions between the species.
机译:有关人口统计和物种形成以及生物多样性和保护研究的基本问题,需要对分散的,密切相关的种群进行遗传研究。但是,通常不清楚差异是仅由于分离还是群体也经历了基因流动。通过应用马尔可夫链蒙特卡罗方法估计模型参数的后验概率分布,可以使用具有基因流的种群分离的完整模型来解决这些问题。我们已经推广了这种方法,并将其应用于来自多个未链接基因座的数据。这些基因座的继承方式可以不同,并且继承标量可以实现为常量或要估计的参数。通过将继承标量作为参数,还可以通过循环选择性扫频或背景选择的链接来解决影响位点之间的差异。这些方法应用于来自果蝇和柿果蝇的大型多基因座数据集。估计该物种在〜500,000年前就已分化。自物种初始分离以来,几个基因座对基因流量的估计为非零,在物种之间的两个方向上,基因座之间的基因流量估计值均存在较大差异。

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