Baer C F
Department of Biological Science, Florida State University, Tallahassee, Florida 32306, USA.
Genetics. 1999 Jun;152(2):653-9. doi: 10.1093/genetics/152.2.653.
Variation among loci in the distribution of allele frequencies among subpopulations is well known; how to tell when the variation exceeds that expected when all loci are subject to uniform evolutionary processes is not well known. If locus-specific effects are important, the ability to detect those effects should vary with the level of gene flow. Populations with low gene flow should exhibit greater variation among loci in Fst than populations with high gene flow, because gene flow acts to homogenize allele frequencies among subpopulations. Here I use Lewontin and Krakauer's k statistic to describe the variance among allozyme loci in 102 published data sets from fishes. As originally proposed, k >> 2 was considered evidence that the variation in Fst among loci is greater than expected from neutral evolution. Although that interpretation is invalid, large differences in k in different populations suggest that locus-specific forces may be important in shaping genetic diversity. In these data, k is not greater for populations with expected low levels of gene flow than for populations with expected high levels of gene flow. There is thus no evidence that locus-specific forces are of general importance in shaping the distribution of allele frequencies at enzyme loci among populations of fishes.
等位基因频率在亚种群间的分布在不同基因座上存在差异,这是众所周知的;但当所有基因座都经历统一的进化过程时,如何判断这种差异是否超过预期则鲜为人知。如果基因座特异性效应很重要,那么检测这些效应的能力应该会随基因流水平而变化。基因流低的种群在Fst上基因座间的差异应该比基因流高的种群更大,因为基因流会使亚种群间的等位基因频率趋于均匀。在此,我使用莱温廷和克拉考尔的k统计量来描述来自鱼类的102个已发表数据集中等位酶基因座间的方差。按照最初的提议,k >> 2被视为基因座间Fst的差异大于中性进化预期的证据。尽管这种解释是无效的,但不同种群中k值的巨大差异表明基因座特异性力量可能在塑造遗传多样性方面很重要。在这些数据中,预期基因流低的种群的k值并不比预期基因流高的种群更大。因此,没有证据表明基因座特异性力量在塑造鱼类种群中酶基因座的等位基因频率分布方面具有普遍重要性。