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首页> 外文期刊>BMC Evolutionary Biology >Signatures of balancing selection are maintained at disease resistance loci following mating system evolution and a population bottleneck in the genus Capsella
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Signatures of balancing selection are maintained at disease resistance loci following mating system evolution and a population bottleneck in the genus Capsella

机译:交配系统进化和Cap菜属的种群瓶颈后,在抗病基因座上保持了平衡选择的特征。

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Background Population bottlenecks can lead to a loss of variation at disease resistance loci, which could have important consequences for the ability of populations to adapt to pathogen pressure. Alternatively, current or past balancing selection could maintain high diversity, creating a strong heterogeneity in the retention of polymorphism across the genome of bottlenecked populations. We sequenced part of the LRR region of 9 NBS-LRR disease resistance genes in the outcrossing Capsella grandiflora and the recently derived, bottlenecked selfing species Capsella rubella, and compared levels and patterns of nucleotide diversity and divergence with genome-wide reference loci. Results In strong contrast with reference loci, average diversity at resistance loci was comparable between C. rubella and C. grandiflora, primarily due to two loci with highly elevated diversity indicative of past or present balancing selection. Average between-species differentiation was also reduced at the set of R-genes compared with reference loci, which is consistent with the maintenance of ancestral polymorphism. Conclusions Historical or ongoing balancing selection on plant disease resistance genes is a likely contributor to the retention of ancestral polymorphism in some regions of the bottlenecked Capella rubella genome.
机译:背景技术人口瓶颈可能导致抗病基因座变异的丧失,这可能对人口适应病原体压力的能力产生重要影响。或者,当前或过去的平衡选择可以维持高度的多样性,从而在瓶颈种群的基因组中保留了较高的多态性。我们测序了9个NBS-LRR疾病抗性基因的LRR区的一部分,该基因在异交的Cap菜和最近衍生的,有瓶颈的自交物种species菜(Capsella rubella)中,并与全基因组参考基因座比较了核苷酸多样性和多样性的水平和模式。结果与参考基因座形成鲜明对比,抗药性基因座的平均多样性在风疹梭菌和大花梭菌之间具有可比性,这主要是由于两个基因座的多样性高度升高,表明过去或现在的平衡选择。与参考基因座相比,R基因组的平均种间分化也降低了,这与维持祖先多态性是一致的。结论对植物抗病基因的历史选择或正在进行的平衡选择可能是造成瓶颈的卡佩拉风疹基因组某些区域保持祖先多态性的原因。

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