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A Diffusion Approximation for Selection and Drift in a Subdivided Population

机译:细分人群中选择和漂移的扩散近似

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The population-genetic consequences of population structure are of great interest and have been studied extensively. An area of particular interest is the interaction among population structure, natural selection, and genetic drift. At first glance, different results in this area give very different impressions of the effect of population subdivision on effective population size ( N e), suggesting that no single value of N e can completely characterize a structured population. Results presented here show that a population conforming to Wright’s island model of subdivision with genic selection can be related to an idealized panmictic population (a Wright-Fisher population). This equivalent panmictic population has a larger size than the actual population; i.e ., N e is larger than the actual population size, as expected from many results for this type of population structure. The selection coefficient in the equivalent panmictic population, referred to here as the effective selection coefficient ( s e), is smaller than the actual selection coefficient ( s ). This explains how the fixation probability of a selected allele can be unaffected by population subdivision despite the fact that subdivision increases N e, for the product N e s e is not altered by subdivision.
机译:人口结构的人口遗传后果引起了人们极大的兴趣,并进行了广泛的研究。特别感兴趣的领域是种群结构,自然选择和遗传漂移之间的相互作用。乍一看,该区域的不同结果给人口细分对有效人口规模(N e)的影响带来了截然不同的印象,这表明N e的任何单一值都无法完全表征结构化人口。此处显示的结果表明,符合Wright的海岛细分模型且具有基因选择的种群可能与理想的恐慌种群(Wright-Fisher种群)有关。相当数量的恐慌人口的数量比实际人口大。即,N e大于实际人口规模,这是此类人口结构的许多结果所预期的。当量恐慌群体中的选择系数,这里称为有效选择系数(s e),小于实际选择系数(s)。这解释了选择的等位基因的固定概率如何不受人口细分的影响,尽管细分增加了N e,因为乘积N e s e不会细分。

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