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A new method for the partition of allelic diversity within and between subpopulations

机译:在亚群内和亚群之间分配等位基因多样性的新方法

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摘要

A method is proposed for the analysis of allelic diversity in the context of subdivided populations. The definition of an allelic distance between subpopulations allows for the partition of total allelic diversity into within- and between-subpopulation components, in a way analogous to the classical partition of gene diversity. A new definition of allelic differentiation, A ST , between subpopulations results from this partition, and is contrasted with the concept of allelic richness differentiation. The partition of allelic diversity makes it possible to establish the relative contribution of each subpopulation to within and between-subpopulation components of diversity with implications in priorisation for conservation. A comparison between this partition and that corresponding to allelic richness is illustrated with an example. Computer simulations are used to investigate the behaviour of the new statistic A ST in comparison with F ST for a finite island model under a range of mutation and migration rates. A ST has less dependence on migration rate than F ST for large values of migration rate, but the opposite occurs for low migration rates. In addition, the variance in the estimates of A ST is higher than that of F ST for low mutation rates, but the opposite for high mutation rates.
机译:提出了一种在细分人群中分析等位基因多样性的方法。亚群之间的等位基因距离的定义允许将总等位基因多样性划分为亚群内部和亚群之间的组成部分,其方式类似于基因多样性的经典划分。亚群之间的等位基因分化的新定义A ST 源自此分区,并与等位基因丰富度分化的概念形成对比。等位基因多样性的划分使得有可能建立每个亚群对多样性内部和亚群之间组成部分的相对贡献,这对保护的优先次序有影响。举例说明该分区与对应于等位基因丰富度的分区之间的比较。在有限的变异率和迁移率下,对于有限岛模型,使用计算机模拟来研究新统计量A ST 与F ST 的行为。对于较大的迁移率值, ST 对迁移率的依赖性小于对F ST 的迁移率,但对于较低的迁移率则相反。此外,对于低突变率,A ST 的估计方差高于F ST ,而对于高突变率则相反。

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