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细分群体中的遗传负荷:迁移率、亚群体大小和数量之间的相互作用。

Genetic load in subdivided populations: interactions between the migration rate, the size and the number of subpopulations.

作者信息

Theodorou K, Couvet D

机构信息

Biodiversity Conservation Laboratory, Department of Environmental Studies, University of the Aegean, University Hill, Mytilene 81100, Greece.

出版信息

Heredity (Edinb). 2006 Jan;96(1):69-78. doi: 10.1038/sj.hdy.6800762.

Abstract

We assess the relative importance of migration rate, size and number of subpopulations on the genetic load of subdivided populations. Using diffusion approximations, we show that in most cases subdivision has detrimental effects on fitness. Moreover, our results suggest that fitness increases with subpopulation size, so that for the same total population size, genetic load is relatively lower when there are a small number of large subpopulations. Using elasticity analysis, we show that the size of the subpopulations appears to be the parameter that most strongly determines genetic load. interconnecting subpopulations via migration would also be of importance for population fitness when subpopulations are small and gene flow is low. Interestingly, the number of subpopulations has minor influence on genetic load except for the case of both very slightly deleterious mutations and small subpopulations. Elasticities decrease as the magnitude of deleterious effects increases. In other words, population structure does not matter for very deleterious alleles, but strongly affects fitness for slightly deleterious alleles.

摘要

我们评估了迁移率、亚种群大小和数量对细分种群遗传负荷的相对重要性。通过扩散近似,我们表明在大多数情况下,细分对适应性有不利影响。此外,我们的结果表明适应性随亚种群大小增加,因此对于相同的总人口大小,当亚种群数量少且规模大时,遗传负荷相对较低。通过弹性分析,我们表明亚种群大小似乎是最强烈决定遗传负荷的参数。当亚种群小且基因流低时,通过迁移连接亚种群对种群适应性也很重要。有趣的是,除了非常轻微有害的突变和小亚种群的情况外,亚种群数量对遗传负荷的影响较小。随着有害效应强度增加,弹性降低。换句话说,对于非常有害的等位基因,种群结构无关紧要,但对轻微有害的等位基因强烈影响适应性。

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