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表型进化的多效性模型。

A pleiotropic model of phenotypic evolution.

作者信息

Tanaka Y

机构信息

Laboratory of Theoretical Ecology, Yokohama National University, Japan.

出版信息

Genetica. 1998;102-103(1-6):535-43.

PMID:9766964
Abstract

A pleiotropic model is presented for deriving the equilibrium genetic variance by mutation and stabilizing selection and the long-term genetic responses to directional selection in the case where mutations have pleiotropic effects on fitness itself (direct deleterious effect) and on a quantitative trait (phenotypic effect). The equilibrium genetic variance is derived as a general form of the rare-alleles models, i.e., [formula: see text], where n is the number of loci, mu is the per-locus mutation rate, alpha 2 is the variance of new mutations, V(s) is the measure of stabilizing selection, and s(u) is the selection coefficient on mutations by direct deleterious effect. The genetic responses to directional selection is calculated based on the assumption that the genetic variance is kept at an equilibrium by mutation and stabilizing selection but without directional selection, and the directional selection starts to operate on the target trait. The evolutionary rate at the t-th generation after the introduction of the directional selection is [formula: see text], where i is the directional selection intensity, and s(T) is the total selection coefficient on mutations, i.e., [formula: see text]. The selection limit is [formula: see text], where V(m) is the mutational variance (2n mu alpha 2). The pleiotropic effects of genes reduce both the evolutionary rate and the selection limit.

摘要

提出了一种多效性模型,用于推导在突变对适合度本身(直接有害效应)和数量性状(表型效应)具有多效性影响的情况下,通过突变和稳定选择产生的平衡遗传方差以及对定向选择的长期遗传响应。平衡遗传方差被推导为稀有等位基因模型的一般形式,即[公式:见原文],其中n是基因座的数量,mu是每个基因座的突变率,alpha 2是新突变的方差,V(s)是稳定选择的度量,s(u)是由直接有害效应引起的突变的选择系数。基于遗传方差通过突变和稳定选择保持在平衡状态但无定向选择,且定向选择开始作用于目标性状的假设,计算对定向选择的遗传响应。引入定向选择后第t代的进化速率为[公式:见原文],其中i是定向选择强度,s(T)是突变的总选择系数,即[公式:见原文]。选择极限为[公式:见原文],其中V(m)是突变方差(2n mu alpha 2)。基因的多效性效应降低了进化速率和选择极限。

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