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The genetic basis and experimental evolution of inbreeding depression in Caenorhabditis elegans

机译:秀丽隐杆线虫近交抑制的遗传基础和实验演变

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Determining the genetic basis of inbreeding depression is important for understanding the role of selection in the evolution of mixed breeding systems. Here, we investigate how androdioecy (a breeding system characterized by partial selfing and outcrossing) and dioecy (characterized by obligatory outcrossing) influence the experimental evolution of inbreeding depression in Caenorhabditis elegans. We derived inbred lines from ancestral and evolved populations and found that the dioecious lineages underwent more extinction than androdioecious lineages. For both breeding systems, however, there was selection during inbreeding because the diversity patterns of 337 single-nucleotide polymorphisms (SNPs) among surviving inbred lines deviated from neutral expectations. In parallel, we also followed the evolution of embryo to adult viability, which revealed similar starting levels of inbreeding depression in both breeding systems, but also outbreeding depression. Under androdioecy, diversity at a neutral subset of 134 SNPs correlated well with the viability trajectories, showing that the population genetic structure imposed by partial selfing affected the opportunity for different forms of selection. Our findings suggest that the interplay between the disruptions of coevolved sets of loci by outcrossing, the efficient purging of deleterious recessive alleles with selfing and overdominant selection with outcrossing can help explain mixed breeding systems.
机译:确定近交衰退的遗传基础对于理解选择在混合育种系统进化中的作用很重要。在这里,我们研究雄蕊虫(以部分自交和异源杂交为特征的繁殖系统)和雌雄异体(以强制异源杂交为特征)如何影响秀丽隐杆线虫近交衰退的实验演变。我们从祖先和进化的种群中衍生出近交系,发现雌雄异株比雄雄异株更易灭绝。然而,对于这两个育种系统,近亲繁殖期间都有选择,因为幸存的近交系中337个单核苷酸多态性(SNP)的多样性模式偏离了中性预期。同时,我们还追踪了胚胎到成年后的成年进化,这揭示了两个育种系统中近交衰退的起始水平相似,但近交衰退也是如此。在雄蜂的作用下,中性亚群134个SNP的多样性与生存能力轨迹密切相关,表明部分自交所施加的种群遗传结构影响了不同选择形式的机会。我们的研究结果表明,通过异源杂交来破坏进化的基因座集,自交的有害隐性等位基因的有效清除和异源杂交的优势选择之间的相互作用可以帮助解释混合育种系统。

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