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亲本种群在二次接触前的范围扩张促进杂种优势。

Parental Population Range Expansion before Secondary Contact Promotes Heterosis.

出版信息

Am Nat. 2022 Jul;200(1):E1-E15. doi: 10.1086/719656. Epub 2022 May 26.

Abstract

AbstractPopulation genomic analysis of hybrid zones is instrumental to our understanding of the evolution of reproductive isolation. Many temperate hybrid zones are formed by the secondary contact between two parental populations that have undergone postglacial range expansion. Here, we show that explicitly accounting for historical parental isolation followed by range expansion prior to secondary contact is fundamental to explaining genetic and fitness patterns in these hybrid zones. Specifically, ancestral population expansion can result in allele surfing, where neutral or slightly deleterious mutations drift to high frequency at the expansion front. If these surfed deleterious alleles are recessive, they can contribute to substantial heterosis in hybrids produced at secondary contact, counteracting negative effects of Bateson-Dobzhansky-Muller incompatibilities (BDMIs) and hence weakening reproductive isolation. When BDMIs are linked to such recessive deleterious alleles, the fitness benefit of introgression at these loci can facilitate introgression at the BDMIs. The extent to which this occurs depends on the strength of selection against the linked deleterious alleles and the distribution of recombination across the chromosome. Finally, surfing of neutral loci can alter the expected pattern of population ancestry; thus, accounting for historical population expansion is necessary to develop accurate null genomic models of secondary contact hybrid zones.

摘要

摘要 对杂种区的群体基因组分析有助于我们理解生殖隔离的进化。许多温带杂种区是由两个经历了冰川后范围扩张的亲代种群的二次接触形成的。在这里,我们表明,在二次接触之前明确考虑历史上的亲本隔离和范围扩张对于解释这些杂种区的遗传和适应性模式是至关重要的。具体来说,祖先种群的扩张可能导致等位基因冲浪,其中中性或轻微有害的突变在扩张前沿漂到高频率。如果这些漂到的有害等位基因是隐性的,它们可以在二次接触产生的杂种中产生大量杂种优势,抵消贝茨on-道布赞斯基-穆勒不兼容性(BDMIs)的负面影响,从而削弱生殖隔离。当 BDMIs 与这些隐性有害等位基因相关联时,这些位点的基因渗入的适应性益处可以促进 BDMIs 处的基因渗入。这种情况发生的程度取决于对连锁有害等位基因的选择强度以及染色体上重组的分布。最后,中性位点的冲浪会改变种群祖先的预期模式;因此,为了建立准确的二次接触杂种区的零基因组模型,考虑历史上的种群扩张是必要的。

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