首页> 外文期刊>Evolution: International Journal of Organic Evolution >A two-locus hybrid incompatibility is widespread, polymorphic, and active in natural populations of Mimulus
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A two-locus hybrid incompatibility is widespread, polymorphic, and active in natural populations of Mimulus

机译:双轨杂种不相容性是薄荷天然群体的广泛,多态性和活性物质

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摘要

Reproductive isolation, which is essential for the maintenance of species in sympatry, is often incomplete between closely related species. In these taxa, reproductive barriers must evolve within species, without being degraded by ongoing gene flow. To better understand this dynamic, we investigated the frequency and geographic distribution of alleles underlying a two-locus, hybrid lethality system between naturally hybridizing species of monkeyflower (Mimulus guttatus and M. nasutus). We found that M. guttatus typically carries hybrid lethality alleles at one locus (hl13) and M. nasutus typically carries hybrid lethality alleles at the other locus (hl14). As a result, natural hybrids carry incompatible alleles at both loci, and express hybrid lethality in later generations. We also discovered considerable polymorphism at both hl13 and hl14 within both species. For M. guttatus, polymorphism at both loci occurs within populations, meaning that incompatible allele pairings likely arise through intraspecific gene flow. Genetic variation at markers linked to hl13 and hl14 suggest that introgression from M. nasutus is the primary driver of this polymorphism within M. guttatus. Additionally, patterns of introgression at the two hybrid lethality loci suggest that natural selection eliminates incompatible allele pairings, suggesting that even weak reproductive barriers might promote genomic divergence between species.
机译:生殖隔离,这对于维持在Sympatry中的物种至关重要,在密切相关的物种之间通常不完整。在这些分类群中,生殖障碍必须在物种内进化,而不会因持续基因流而降解。为了更好地理解这种动态,我们研究了两对轨迹的等位基因的频率和地理分布,浑浊的猴花(Mimulus Guttatus和Nasutus)之间的天然杂交物种之间的杂交致死性系统。我们发现M.Guttatus通常携带一个基因座(HL13)和M. nasutus的杂种致死性等位基因通常在另一个基因座(HL14)处携带杂种致死性等位基因。结果,天然杂交物在何处服用局部携带不相容的等位基因,并在后代表达杂交杀菌。我们还在两种物种中发现了在HL13和HL14中的相当大的多态性。对于M.Guttatus,在群体中发生两个基因座的多态性,这意味着通过拆放基因流动可能产生不相容的等位基因次数。与HL13和HL14相关的标记物的遗传变异表明来自M. nasutus的突出突出是M.Guttatus中该多态性的主要驱动器。另外,两个杂交致死性锁上的迟发的模式表明,自然选择消除了不相容的等位基因配对,表明甚至弱生殖障碍可能促进物种之间的基因组分歧。

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