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长时平衡选择与拟南芥和 A. lyrata 自交不亲和位点相关的遗传负荷。

Long-Term Balancing Selection and the Genetic Load Linked to the Self-Incompatibility Locus in Arabidopsis halleri and A. lyrata.

机构信息

Univ. Lille, CNRS, UMR 8198-Evo-Eco-Paleo, Lille, France.

Department of Botany, Faculty of Science, Charles University, Prague, Czech Republic.

出版信息

Mol Biol Evol. 2023 Jun 1;40(6). doi: 10.1093/molbev/msad120.

Abstract

Balancing selection is a form of natural selection maintaining diversity at the sites it targets and at linked nucleotide sites. Due to selection favoring heterozygosity, it has the potential to facilitate the accumulation of a "sheltered" load of tightly linked recessive deleterious mutations. However, precisely evaluating the extent of these effects has remained challenging. Taking advantage of plant self-incompatibility as one of the best-understood examples of long-term balancing selection, we provide a highly resolved picture of the genomic extent of balancing selection on the sheltered genetic load. We used targeted genome resequencing to reveal polymorphism of the genomic region flanking the self-incompatibility locus in three sample sets in each of the two closely related plant species Arabidopsis halleri and Arabidopsis lyrata, and used 100 control regions from throughout the genome to factor out differences in demographic histories and/or sample structure. Nucleotide polymorphism increased strongly around the S-locus in all sample sets, but only over a limited genomic region, as it became indistinguishable from the genomic background beyond the first 25-30 kb. Genes in this chromosomal interval exhibited no excess of mutations at 0-fold degenerated sites relative to putatively neutral sites, hence revealing no detectable weakening of the efficacy of purifying selection even for these most tightly linked genes. Overall, our results are consistent with the predictions of a narrow genomic influence of linkage to the S-locus and clarify how natural selection in one genomic region affects the evolution of the adjacent genomic regions.

摘要

平衡选择是一种自然选择形式,它可以在其作用的位点以及连锁的核苷酸位点上维持多样性。由于选择有利于杂合性,因此它有可能促进紧密连锁的隐性有害突变的“庇护”负荷的积累。然而,精确评估这些影响的程度一直具有挑战性。利用植物自交不亲和性作为长期平衡选择的最佳理解示例之一,我们提供了一个关于庇护遗传负荷上平衡选择的基因组范围的高度解析图。我们利用靶向基因组重测序,在两个密切相关的植物物种拟南芥 halleri 和拟南芥 lyrata 的每个样本集中的三个样本中,揭示了自我不亲和基因座侧翼的基因组区域的多态性,并使用来自整个基因组的 100 个控制区域来排除人口历史和/或样本结构的差异。在所有样本集中,S 基因座周围的核苷酸多态性都强烈增加,但仅在有限的基因组区域内,因为它与超过前 25-30kb 的基因组背景无法区分。在这个染色体区间内的基因相对于假定的中性位点没有在 0 倍退化位点出现过多的突变,因此即使对于这些最紧密连锁的基因,也没有检测到纯化选择效力的明显减弱。总体而言,我们的结果与连锁到 S 基因座的狭窄基因组影响的预测一致,并阐明了一个基因组区域的自然选择如何影响相邻基因组区域的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3045/10243990/a1baf9e61adb/msad120f1.jpg

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