Institute for Science and Technology (IST Austria), Klosterneuburg A-3400, Austria.
Genetics. 2011 Sep;189(1):227-35. doi: 10.1534/genetics.111.129817. Epub 2011 Jul 29.
Random genetic drift shifts clines in space, alters their width, and distorts their shape. Such random fluctuations complicate inferences from cline width and position. Notably, the effect of genetic drift on the expected shape of the cline is opposite to the naive (but quite common) misinterpretation of classic results on the expected cline. While random drift on average broadens the overall cline in expected allele frequency, it narrows the width of any particular cline. The opposing effects arise because locally, drift drives alleles to fixation--but fluctuations in position widen the expected cline. The effect of genetic drift can be predicted from standardized variance in allele frequencies, averaged across the habitat:
随机遗传漂变会使地理渐变线在空间上发生偏移,改变其宽度,并使其形状发生扭曲。这种随机波动会使从渐变线宽度和位置推断变得复杂。值得注意的是,遗传漂变对渐变线预期形状的影响与对经典渐变线预期结果的简单(但很常见)误解相反。虽然随机漂变平均会拓宽预期等位基因频率的整体渐变线,但它会缩小任何特定渐变线的宽度。这种相反的影响是由于局部漂变导致等位基因固定——但位置波动会拓宽预期的渐变线。遗传漂变的影响可以从等位基因频率的标准化方差中预测出来,这些方差是在整个栖息地中平均得到的: