Jain Kavita, Stephan Wolfgang
Theoretical Sciences Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P.O., Bangalore, 560064 India
Section of Evolutionary Biology, Department of Biology, Ludwig-Maximilians University of Munich, Planegg-Martinsried, Germany.
G3 (Bethesda). 2015 Mar 31;5(6):1065-74. doi: 10.1534/g3.115.017970.
We consider an infinitely large population under stabilizing selection and mutation in which the allelic effects determining a polygenic trait vary between loci. We obtain analytical expressions for the stationary genetic variance as a function of the distribution of effects, mutation rate, and selection coefficient. We also study the dynamics of the allele frequencies, focusing on short-term evolution of the phenotypic mean as it approaches the optimum after an environmental change. We find that when most effects are small, the genetic variance does not change appreciably during adaptation, and the time until the phenotypic mean reaches the optimum is short if the number of loci is large. However, when most effects are large, the change of the variance during the adaptive process cannot be neglected. In this case, the short-term dynamics may be described by those of a few loci of large effect. Our results may be used to understand polygenic selection driving rapid adaptation.
我们考虑一个在稳定选择和突变作用下的无限大种群,其中决定多基因性状的等位基因效应在不同基因座间存在差异。我们得到了作为效应分布、突变率和选择系数函数的稳态遗传方差的解析表达式。我们还研究了等位基因频率的动态变化,重点关注环境变化后表型均值接近最优值时的短期进化。我们发现,当大多数效应较小时,适应过程中遗传方差变化不明显,并且如果基因座数量较多,表型均值达到最优值所需的时间较短。然而,当大多数效应较大时,适应过程中遗传方差的变化不可忽略。在这种情况下,短期动态可以用少数几个大效应基因座的动态来描述。我们的结果可用于理解驱动快速适应的多基因选择。