Storz Jay F
Department of Biology, San Francisco State University, 1600 Holloway Avenue, San Francisco, CA 94132, USA.
Mol Ecol. 2005 Mar;14(3):671-88. doi: 10.1111/j.1365-294X.2005.02437.x.
Elucidating the genetic basis of adaptive population divergence is a goal of central importance in evolutionary biology. In principle, it should be possible to identify chromosomal regions involved in adaptive divergence by screening genome-wide patterns of DNA polymorphism to detect the locus-specific signature of positive directional selection. In the case of spatially separated populations that inhabit different environments or sympatric populations that exploit different ecological niches, it is possible to identify loci that underlie divergently selected traits by comparing relative levels of differentiation among large numbers of unlinked markers. In this review I first address the question of whether diversifying selection on polygenic traits can be expected to produce predictable patterns of allelic variation at the underlying quantitative trait loci (QTL), and whether the locus-specific effects of selection can be reliably detected against the genome-wide backdrop of stochastic variability. I then review different approaches that have been developed to identify loci involved in adaptive population divergence and I discuss the relative merits of model-based approaches that rely on assumptions about population structure vs. model-free approaches that are based on empirical distributions of summary statistics. Finally, I consider the evolutionary and functional insights that might be gained by conducting genome scans for loci involved in adaptive population divergence.
阐明适应性种群分化的遗传基础是进化生物学中一个至关重要的目标。原则上,通过筛选全基因组的DNA多态性模式以检测正向选择的位点特异性特征,应该能够识别参与适应性分化的染色体区域。对于栖息在不同环境中的空间隔离种群或利用不同生态位的同域种群而言,通过比较大量不连锁标记之间的相对分化水平,有可能识别出构成差异选择性状基础的基因座。在这篇综述中,我首先探讨一个问题,即对多基因性状的多样化选择是否有望在潜在的数量性状基因座(QTL)上产生可预测的等位基因变异模式,以及在全基因组随机变异的背景下,选择的位点特异性效应是否能够被可靠地检测到。然后,我回顾了为识别参与适应性种群分化的基因座而开发的不同方法,并讨论了基于种群结构假设的基于模型的方法与基于汇总统计量经验分布的无模型方法的相对优点。最后,我考虑通过对参与适应性种群分化的基因座进行全基因组扫描可能获得的进化和功能见解。