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Local fluctuations of genetic processes defined on two time scales, with applications to effective size estimation

机译:两个时间尺度定义的遗传过程的局部波动,应用于有效尺寸估计

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摘要

In this paper we develop a general framework for how the genetic composition of a structured population with strong migration between its subunits, evolves over time. The dynamics is described in terms of a vector-valued Markov process of allele, genotype or haplotype frequencies that varies on two time scales. The more rapid changes are random fluctuations in terms of a multivariate autoregressive process, around a quasi equilibrium fix point, whereas the fix point itself varies more slowly according to a diffusion process, along a lower-dimensional subspace. Under mild regularity conditions, the fluctuations have a magnitude inversely proportional to the square root of the population size N, and hence can be used to estimate a broad class of genetically effective population sizes N-e, with genetic data from one time point only. In this way we are able to unify a number of existing notions of effective size, as well as proposing new ones, for instance one that quantifies the extent to which genotype frequencies fluctuate around Hardy-Weinberg equilibrium. (C) 2019 Elsevier Inc. All rights reserved.
机译:在本文中,我们开发了一般的框架,了解结构化人群的遗传构成如何在其亚基之间强烈迁移,随着时间的推移而发展。根据两次尺度变化的等位基因,基因型或单倍型频率的载体值,基因型或单倍型频率来描述动力学。在多变量自回归过程中,围绕准平衡修定点的多变量自回归过程的随机波动是越快的变化,而固定点本身根据沿着低维子空间的扩散过程而变化得更慢。在温和的规律性条件下,波动与群体大小的平方根的幅度成反比,因此可用于估计广泛的转基有效的群体尺寸N-e,其仅有一个时间点。通过这种方式,我们能够统一许多现有有效概念的有效概念,以及提出新的概念,例如,其中量化了一种,这些概念量量化了基因型频率波动围绕Hardy-Weinberg均衡的程度。 (c)2019 Elsevier Inc.保留所有权利。

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