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集合种群中的中性加性遗传方差。

Neutral additive genetic variance in a metapopulation.

作者信息

Whitlock M C

机构信息

Department of Zoology, University of British Columbia, Vancouver, Canada.

出版信息

Genet Res. 1999 Dec;74(3):215-21. doi: 10.1017/s0016672399004127.

Abstract

For neutral, additive quantitative characters, the amount of additive genetic variance within and among populations is predictable from Wright's FST, the effective population size and the mutational variance. The structure of quantitative genetic variance in a subdivided metapopulation can be predicted from results from coalescent theory, thereby allowing single-locus results to predict quantitative genetic processes. The expected total amount of additive genetic variance in a metapopulation of diploid individual is given by 2Ne sigma m2 (1 + FST), where FST is Wright's among-population fixation index, Ne is the eigenvalue effective size of the metapopulation, and sigma m2 is the mutational variance. The expected additive genetic variance within populations is given by 2Ne sigma e2(1-FST), and the variance among demes is given by 4FSTNe sigma m2. These results are general with respect to the types of population structure involved. Furthermore, the dimensionless measure of the quantitative genetic variance among populations, QST, is shown to be generally equal to FST for the neutral additive model. Thus, for all population structures, a value of QST greater than FST for neutral loci is evidence for spatially divergent evolution by natural selection.

摘要

对于中性、加性数量性状,种群内部和种群间的加性遗传方差量可根据赖特氏FST、有效种群大小和突变方差预测。一个细分的集合种群中数量遗传方差的结构可根据合并理论的结果预测,从而使单基因座结果能够预测数量遗传过程。一个由二倍体个体组成的集合种群中预期的加性遗传方差总量由2Neσm2(1 + FST)给出,其中FST是赖特氏种群间固定指数,Ne是集合种群的特征值有效大小,σm2是突变方差。种群内预期的加性遗传方差由2Neσe2(1 - FST)给出,而不同亚种群间的方差由4FSTNeσm2给出。这些结果对于所涉及的种群结构类型具有普遍性。此外,种群间数量遗传方差的无量纲度量QST,对于中性加性模型,通常被证明等于FST。因此,对于所有种群结构,中性基因座的QST值大于FST是自然选择导致空间趋异进化的证据。

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