Department of Plant Biology, University of Minnesota, 250 Biosciences, Saint Paul, MN 55108, USA.
Department of Plant Sciences, Center for Population Biology, and Genome Center, 262 Robbins Hall, Mail Stop 4, University of California, One Shields Ave, Davis, CA 95616, USA.
Trends Ecol Evol. 2014 Dec;29(12):673-80. doi: 10.1016/j.tree.2014.10.004. Epub 2014 Nov 1.
Local adaptation shapes species diversity, can be a stepping stone to ecological speciation, and can facilitate species range expansion. Population genetic analyses, which complement organismal approaches in advancing our understanding of local adaptation, have become widespread in recent years. We focus here on using population genetics to address some key questions in local adaptation: what traits are involved? What environmental variables are the most important? Does local adaptation target the same genes in related species? Do loci responsible for local adaptation exhibit trade-offs across environments? After discussing these questions we highlight important limitations to population genetic analyses including challenges with obtaining high-quality data, deciding which loci are targets of selection, and limits to identifying the genetic basis of local adaptation.
本地适应塑造物种多样性,可以成为生态物种形成的踏脚石,并促进物种的分布范围扩大。近年来,种群遗传分析在推进我们对本地适应的理解方面已经变得非常普遍,它补充了生物体方法。在这里,我们专注于使用种群遗传学来解决本地适应中的一些关键问题:涉及哪些特征?哪些环境变量最重要?本地适应是否针对相关物种中的相同基因?负责本地适应的基因座是否在不同环境下存在权衡?在讨论这些问题之后,我们强调了种群遗传分析的重要限制,包括获得高质量数据的挑战、确定选择目标的基因座以及识别本地适应遗传基础的限制。