Jain Kavita, Stephan Wolfgang
Theoretical Sciences Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore 560064, India
Natural History Museum Berlin, 10115, Germany.
Genetics. 2017 May;206(1):389-406. doi: 10.1534/genetics.116.196972. Epub 2017 Mar 24.
Although a number of studies have shown that natural and laboratory populations initially well adapted to their environment can evolve rapidly when conditions suddenly change, the dynamics of rapid adaptation are not well understood. Here a population genetic model of polygenic selection is analyzed to describe the short-term response of a quantitative trait after a sudden shift of the phenotypic optimum. We provide explicit analytical expressions for the timescales over which the trait mean approaches the new optimum. We find that when the effect sizes are small relative to a scaled mutation rate, small to moderate allele frequency changes occur in the short-term phase in a synergistic fashion. In contrast, selective sweeps, , dramatic changes in the allele frequency, may occur provided the size of the effect is sufficiently large. Applications of our theoretical results to the relationship between QTL and selective sweep mapping and to tests of fast polygenic adaptation are discussed.
尽管许多研究表明,最初很好地适应其环境的自然种群和实验室种群在条件突然改变时能够快速进化,但快速适应的动态过程仍未得到很好的理解。在此,我们分析了一个多基因选择的种群遗传模型,以描述表型最适值突然转变后一个数量性状的短期响应。我们给出了性状均值趋近新最适值的时间尺度的显式解析表达式。我们发现,当效应大小相对于标度化突变率较小时,在短期阶段会以协同方式发生小到中等程度的等位基因频率变化。相反,如果效应大小足够大,则可能发生选择性清除,即等位基因频率的急剧变化。我们讨论了我们的理论结果在数量性状基因座(QTL)与选择性清除图谱之间的关系以及快速多基因适应测试中的应用。