Department of Zoology, University of British Columbia, 6270 Vancouver, B.C., Canada V6T 1Z4.
Evolution. 2009 Nov;63(11):2926-38. doi: 10.1111/j.1558-5646.2009.00773.x. Epub 2009 Jul 10.
Quantitative genetics models have been used to predict the constraints on local adaptation caused by gene flow between populations under migration-selection balance. One key assumption of this approach is that genetic values within a population are normally distributed. Gene flow, however, may generate distributions that are skewed toward the immigrant's mean value. If the response to selection from a skewed distribution is different from that expected under the assumption of normality, models may result in inaccurate predictions. We use individual-based computer simulations to explore this problem, comparing our results to a recent model developed by Hendry et al. (2001). We show that this model underestimates the equilibrium divergence between populations at migration-selection balance. The extent of this underestimation is correlated with the amount of genetic skew generated by migration and is partly explained by the fact that the analytical model ignores direct selection against hybrid phenotypes. We also show that all else being equal, response to selection in a population with a skewed distribution of genotypes is greater than in a population with normally distributed genotypes. The production of skew under migration-selection balance, however, is itself dependent upon the genetic architecture, with greater deviations from normality produced when alleles contributing to population differentiation have very different effect sizes. We find that both the skew and discrepancies between the models are greatest at intermediate migration rates and moderate to strong selection, which is exactly the region of parameter space that is most empirically relevant.
数量遗传学模型被用于预测在迁移-选择平衡下种群间基因流引起的局部适应限制。这种方法的一个关键假设是种群内的遗传值呈正态分布。然而,基因流可能会导致分布偏向于移民的平均值。如果来自偏态分布的选择反应与正态性假设下的预期不同,那么模型可能会导致不准确的预测。我们使用基于个体的计算机模拟来探索这个问题,并将我们的结果与 Hendry 等人(2001 年)最近开发的模型进行比较。我们表明,该模型低估了迁移-选择平衡下种群之间的平衡分歧。这种低估的程度与迁移产生的遗传偏度的大小相关,部分原因是分析模型忽略了对杂种表型的直接选择。我们还表明,在其他条件相同的情况下,具有偏态基因型分布的种群对选择的反应大于具有正态分布基因型的种群。然而,在迁移-选择平衡下产生的偏度本身取决于遗传结构,当导致种群分化的等位基因具有非常不同的效应大小时,产生的偏离正态性就越大。我们发现,在中等迁移率和中等至强选择下,偏度和模型之间的差异最大,这正是最具经验相关性的参数空间区域。