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寄生虫的选择有利于免疫遗传多样性,但不利于在当地适应的宿主群体之间产生分化。

Selection from parasites favours immunogenetic diversity but not divergence among locally adapted host populations.

机构信息

Department of Zoology, Oklahoma State University, Stillwater, OK, USA.

出版信息

J Evol Biol. 2014 May;27(5):960-74. doi: 10.1111/jeb.12370. Epub 2014 Apr 12.

Abstract

The unprecedented polymorphism in the major histocompatibility complex (MHC) genes is thought to be maintained by balancing selection from parasites. However, do parasites also drive divergence at MHC loci between host populations, or do the effects of balancing selection maintain similarities among populations? We examined MHC variation in populations of the livebearing fish Poecilia mexicana and characterized their parasite communities. Poecilia mexicana populations in the Cueva del Azufre system are locally adapted to darkness and the presence of toxic hydrogen sulphide, representing highly divergent ecotypes or incipient species. Parasite communities differed significantly across populations, and populations with higher parasite loads had higher levels of diversity at class II MHC genes. However, despite different parasite communities, marked divergence in adaptive traits and in neutral genetic markers, we found MHC alleles to be remarkably similar among host populations. Our findings indicate that balancing selection from parasites maintains immunogenetic diversity of hosts, but this process does not promote MHC divergence in this system. On the contrary, we suggest that balancing selection on immunogenetic loci may outweigh divergent selection causing divergence, thereby hindering host divergence and speciation. Our findings support the hypothesis that balancing selection maintains MHC similarities among lineages during and after speciation (trans-species evolution).

摘要

主要组织相容性复合体 (MHC) 基因前所未有的多态性被认为是由寄生虫的平衡选择所维持的。然而,寄生虫是否也会导致宿主种群之间 MHC 基因的分化,还是平衡选择的作用维持了种群之间的相似性?我们研究了生活在墨西哥脂鲤种群中的 MHC 变异,并描述了它们的寄生虫群落。Cueva del Azufre 系统中的墨西哥脂鲤种群适应于黑暗和有毒的硫化氢环境,代表了高度分化的生态型或初期物种。寄生虫群落在种群间存在显著差异,寄生虫负荷较高的种群在 MHC Ⅱ类基因上具有更高的多样性水平。然而,尽管寄生虫群落不同,适应性特征和中性遗传标记存在显著分化,但我们发现宿主种群之间 MHC 等位基因非常相似。我们的研究结果表明,寄生虫的平衡选择维持了宿主的免疫遗传多样性,但在这个系统中,这一过程并没有促进 MHC 的分化。相反,我们认为免疫遗传位点上的平衡选择可能超过了导致分化的分歧选择,从而阻碍了宿主的分化和物种形成。我们的研究结果支持了平衡选择在物种形成期间和之后维持 MHC 相似性的假说(跨物种进化)。

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