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种群动态与遗传多样性和物种分布区内的正选择有关。

Demographic Processes Linked to Genetic Diversity and Positive Selection across a Species' Range.

机构信息

Department of Environmental Sciences, University of Basel, Schönbeinstrasse 6, CH-4056 Basel, Switzerland.

Department of Evolutionary Biology and Environmental Studies, University of Zürich, CH-8057 Zürich, Switzerland.

出版信息

Plant Commun. 2020 Sep 11;1(6):100111. doi: 10.1016/j.xplc.2020.100111. eCollection 2020 Nov 9.

Abstract

Demography determines the strength of genetic drift, which generally reduces genetic variation and the efficacy of selection. Here, we disentangled the importance of demographic processes at a local scale (census size and mating system) and at a species-range scale (old split between population clusters, recolonization after the last glaciation cycle, and admixture) in determining within-population genomic diversity and genomic signatures of positive selection. Analyses were based on re-sequence data from 52 populations of North American collected across its entire distribution. The mating system and range dynamics since the last glaciation cycle explained around 60% of the variation in genomic diversity among populations and 52% of the variation in the signature of positive selection. Diversity was lowest in selfing compared with outcrossing populations and in areas further away from glacial refugia. In parallel, reduced positive selection was found in selfing populations and in populations with a longer route of postglacial range expansion. The signature of positive selection was also reduced in populations without admixture. We conclude that recent range expansion can have a profound influence on diversity in coding and non-coding DNA, similar in magnitude to the shift toward selfing. Distribution limits may in fact be caused by reduced effective population size and compromised positive selection in recently colonized parts of the range.

摘要

人口统计学决定了遗传漂变的强度,遗传漂变通常会减少遗传变异和选择的效果。在这里,我们在局部尺度(人口普查规模和交配系统)和物种范围尺度(种群聚类之间的旧分裂、末次冰期循环后的重新殖民以及混合)上分解了人口内基因组多样性和正选择的基因组特征的决定因素。分析基于北美 52 个种群的重测序数据,这些种群分布在整个分布范围内。自末次冰期循环以来的交配系统和范围动态解释了种群间基因组多样性变异的约 60%和正选择特征变异的 52%。与异交种群相比,自交种群和离冰川避难所更远的地区的多样性较低。同时,在自交种群和经历更长的冰后期扩张路径的种群中,正选择的强度降低。没有混合的种群的正选择特征也减少了。我们得出的结论是,最近的范围扩张可能对编码和非编码 DNA 的多样性产生深远影响,其影响程度与向自交的转变相似。分布极限实际上可能是由有效种群大小减少和最近殖民地区的正选择受损引起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e987/7747977/5a4138a54d50/gr1.jpg

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