Department of Environmental Sciences, University of Basel, Basel, Switzerland.
PLoS Genet. 2021 Mar 26;17(3):e1009477. doi: 10.1371/journal.pgen.1009477. eCollection 2021 Mar.
While linkage disequilibrium (LD) is an important parameter in genetics and evolutionary biology, the drivers of LD remain elusive. Using whole-genome sequences from across a species' range, we assessed the impact of demographic history and mating system on LD. Both range expansion and a shift from outcrossing to selfing in North American Arabidopsis lyrata were associated with increased average genome-wide LD. Our results indicate that range expansion increases short-distance LD at the farthest range edges by about the same amount as a shift to selfing. However, the extent over which LD in genic regions unfolds was shorter for range expansion compared to selfing. Linkage among putatively neutral variants and between neutral and deleterious variants increased to a similar degree with range expansion, providing support that genome-wide LD was positively associated with mutational load. As a consequence, LD combined with mutational load may decelerate range expansions and set range limits. Finally, a small number of genes were identified as LD outliers, suggesting that they experience selection by either of the two demographic processes. These included genes involved in flowering and photoperiod for range expansion, and the self-incompatibility locus for mating system.
虽然连锁不平衡(LD)是遗传学和进化生物学中的一个重要参数,但 LD 的驱动因素仍难以捉摸。我们利用跨越物种分布范围的全基因组序列,评估了种群历史和交配系统对 LD 的影响。北美拟南芥 lyrata 的种群扩张和从异交到自交的转变都与平均全基因组 LD 的增加有关。我们的研究结果表明,种群扩张通过将自交的影响扩大到同样的程度,在最远距离的边缘增加了短距离 LD。然而,与自交相比,种群扩张导致基因区域 LD 展开的程度较短。假定中性变异体之间以及中性和有害变异体之间的连锁也随着种群扩张而增加,这支持了全基因组 LD 与突变负荷呈正相关。因此,LD 与突变负荷的结合可能会减缓种群扩张并设定种群范围的限制。最后,确定了少数几个 LD 异常值的基因,这表明它们受到两种种群动态过程之一的选择。其中包括与种群扩张相关的开花和光周期的基因,以及与交配系统相关的自交不亲和位点的基因。