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Effective population size and population subdivision in demographically structured populations.

机译:人口结构人口的有效人口规模和人口细分。

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摘要

A fast-timescale approximation is applied to the coalescent process in a single population, which is demographically structured by sex and/or age. This provides a general expression for the probability that a pair of alleles sampled from the population coalesce in the previous time interval. The effective population size is defined as the reciprocal of twice the product of generation time and the coalescence probability. Biologically explicit formulas for effective population size with discrete generations and separate sexes are derived for a variety of different modes of inheritance. The method is also applied to a nuclear gene in a population of partially self-fertilizing hermaphrodites. The effects of population subdivision on a demographically structured population are analyzed, using a matrix of net rates of movement of genes between different local populations. This involves weighting the migration probabilities of individuals of a given age/sex class by the contribution of this class to the leading left eigenvector of the matrix describing the movements of genes between age/sex classes. The effects of sex-specific migration and nonrandom distributions of offspring number on levels of genetic variability and among-population differentiation are described for different modes of inheritance in an island model. Data on DNA sequence variability in human and plant populations are discussed in the light of the results.
机译:快速时标近似适用于单个人口中的合并过程,该人口统计由性别和/或年龄构成。这为从种群中采样的一对等位基因在前一个时间间隔内合并的概率提供了一个通用表达式。有效种群大小定义为生成时间与合并概率乘积的两倍的倒数。针对各种不同的遗传模式,得出了具有离散世代和不同性别的有效种群规模的生物明确公式。该方法还适用于部分自我受精的雌雄同体群体中的核基因。使用不同局部人群之间基因的净移动速率矩阵,分析了人口细分对人口结构化人口的影响。这涉及通过该类别对描述年龄/性别类别之间的基因运动的矩阵的前导左特征向量的贡献来加权给定年龄/性别类别的个体的迁移概率。针对岛屿模型中不同的遗传模式,描述了性别特异性迁移和后代数量的非随机分布对遗传变异水平和种群间分化的影响。根据结果​​讨论了人类和植物种群中DNA序列变异性的数据。

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