Department of Ecology and Evolutionary Biology, The University of Toronto, 25 Willcocks Street, Toronto, ON M5S 3B2, Canada.
Plant Commun. 2020 Oct 24;1(6):100115. doi: 10.1016/j.xplc.2020.100115. eCollection 2020 Nov 9.
It has long been recognized that natural selection during the haploid gametophytic phase of the plant life cycle may have widespread importance for rates of evolution and the maintenance of genetic variation. Recent theoretical advances have further highlighted the significance of gametophytic selection for diverse evolutionary processes. Genomic approaches offer exciting opportunities to address key questions about the extent and effects of gametophytic selection on plant evolution and adaptation. Here, we review the progress and prospects for integrating functional and evolutionary genomics to test theoretical predictions, and to examine the importance of gametophytic selection on genetic diversity and rates of evolution. There is growing evidence that selection during the gametophyte phase of the plant life cycle has important effects on both gene and genome evolution and is likely to have important pleiotropic effects on the sporophyte. We discuss the opportunities to integrate comparative population genomics, genome-wide association studies, and experimental approaches to further distinguish how differential selection in the two phases of the plant life cycle contributes to genetic diversity and adaptive evolution.
长期以来,人们一直认识到,在植物生命周期的单倍体配子体阶段的自然选择可能对进化速度和遗传变异的维持具有广泛的重要性。最近的理论进展进一步强调了配子体选择对各种进化过程的重要性。基因组方法为解决有关配子体选择对植物进化和适应的程度和影响的关键问题提供了令人兴奋的机会。在这里,我们回顾了整合功能和进化基因组学以检验理论预测以及检查配子体选择对遗传多样性和进化速度的重要性的进展和前景。越来越多的证据表明,在植物生命周期的配子体阶段进行选择对基因和基因组进化具有重要影响,并且可能对孢子体具有重要的多效性影响。我们讨论了整合比较群体基因组学、全基因组关联研究和实验方法的机会,以进一步区分植物生命周期的两个阶段中的差异选择如何有助于遗传多样性和适应性进化。