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有限群体中突变和时变选择下遗传变异和基因替代率。

Genetic Variability and Rate of Gene Substitution in a Finite Population under Mutation and Fluctuating Selection.

机构信息

National Institute of Genetics, Mishima, 411 Japan.

出版信息

Genetics. 1981 Jun;98(2):427-40. doi: 10.1093/genetics/98.2.427.

Abstract

By using a numerical method of solving stochastic difference equations, the level of genetic variability maintained in a finite population and the rate of gene substitution under several models of fluctuating selection intensities were studied. It is shown that mutation and random genetic drift both play an important role in determining genetic variability and the rate of gene substitution. Compared with the case of neutral mutations, the fluctuation of selection intensity caused by temporal and spatial heterogeneity of environments generally increases the rate of gene substitution, but the level of genetic variability may be increased or decreased, depending upon the model and the parameters used. Although such a type of selection per se can not be ruled out, when mutation is taken into account, it is difficult to explain both the observed amount of genetic variability and the rough constancy of evolutionary rate within a framework of fluctuating selection models.

摘要

利用求解随机差分方程的数值方法,研究了在几种波动选择强度模型下有限群体中遗传变异的维持水平和基因替代率。结果表明,突变和随机遗传漂变在决定遗传变异和基因替代率方面都起着重要作用。与中性突变相比,环境的时空异质性引起的选择强度波动通常会增加基因替代率,但遗传变异水平可能会增加或减少,具体取决于模型和使用的参数。尽管不能排除这种类型的选择,但当考虑到突变时,在波动选择模型的框架内,很难解释观察到的遗传变异量和进化率的大致恒定性。

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Evolution of a finite population under gene conversion.基因转换作用下有限群体的进化
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