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种群的空间细分与遗传变异估计

Spatial subdivision of populations and estimates of genetic variation.

作者信息

Cavalli-Sforza L L, Feldman M W

机构信息

Department of Genetics, Stanford University, California 94305.

出版信息

Theor Popul Biol. 1990 Feb;37(1):3-25. doi: 10.1016/0040-5809(90)90024-p.

Abstract

Measures of variation in space are strongly affected by correlations between subdivisions used for sampling. Here we consider variation in gene frequencies across populations. Usually the variance of gene frequencies is standardized by dividing it by the mean gene frequency times one minus the mean (FST). Under the model of isolation by distance (usually called the "stepping stone" model), at the stationary state the correlation between the gene frequencies of two populations falls exponentially with the geographic distance between them. Using this model, we derive formulas for variances of blocks of populations of different sizes in one- and two-dimensional space and suggest that the theoretical results may be useful for understanding real observations, some examples of which are presented. We demonstrate how FST increases with the degree of subdivision among populations. We also show the effect of gaps between the sampled populations. Our results are valid, however, for traits other than gene frequencies, as long as their correlation with geographic distance falls exponentially. In the extension to 2-dimensional spaces, we present in closed form the distributions of distances between nodes of a lattice or of two lattices. These distributions might have applications in ecology.

摘要

空间变异的度量受到用于抽样的各细分部分之间相关性的强烈影响。在此,我们考虑不同群体间基因频率的变异。通常,基因频率的方差通过将其除以平均基因频率乘以一减去平均值(FST)来标准化。在距离隔离模型(通常称为“踏脚石”模型)下,在稳态时,两个群体的基因频率之间的相关性随它们之间的地理距离呈指数下降。利用该模型,我们推导了一维和二维空间中不同大小群体块的方差公式,并表明理论结果可能有助于理解实际观测结果,文中给出了一些实例。我们展示了FST如何随着群体间细分程度的增加而增大。我们还展示了抽样群体之间间隔的影响。然而,只要与地理距离的相关性呈指数下降,我们的结果对于基因频率以外的其他性状也是有效的。在扩展到二维空间时,我们以封闭形式给出了晶格或两个晶格节点之间距离的分布。这些分布可能在生态学中有应用。

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