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首页> 外文期刊>Evolutionary Ecology >Parasite diversity, patterns of MHC II variation and olfactory based mate choice in diverging three-spined stickleback ecotypes
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Parasite diversity, patterns of MHC II variation and olfactory based mate choice in diverging three-spined stickleback ecotypes

机译:三旋棘背型生态型的寄生虫多样性,MHC II变化模式和基于嗅觉的伴侣选择

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摘要

Ecological speciation has been the subject of intense research in evolutionary biology but the genetic basis of the actual mechanism driving reproductive isolation has rarely been identified. The extreme polymorphism of the major histocompatibility complex (MHC), probably maintained by parasite-mediated selection, has been proposed as a potential driver of population divergence. We performed an integrative field and experimental study using three-spined stickleback river and lake ecotypes. We characterized their parasite load and variation at MHC class II loci. Fish from lakes and rivers harbor contrasting parasite communities and populations possess different MHC allele pools that could be the result of a combined action of genetic drift and parasite-mediated selection. We show that individual MHC class II diversity varies among populations and is lower in river ecotypes. Our results suggest the action of homogenizing selection within habitat type and diverging selection between habitat types. Finally, reproductive isolation was suggested by experimental evidence: in a flow channel design females preferred assortatively the odor of their sympatric male. This demonstrates the role of olfactory cues in maintaining reproductive isolation between diverging fish ecotypes.
机译:生态物种形成一直是进化生物学研究的热点,但很少有人发现驱动生殖分离的实际机制的遗传基础。主要组织相容性复合体(MHC)的极端多态性,可能是由寄生虫介导的选择维持的,已被认为是人口分化的潜在驱动力。我们使用三旋棘背河和湖泊生态型进行了综合的田野和实验研究。我们表征了它们在MHC II类基因座上的寄生虫负载和变异。来自湖泊和河流的鱼类带有不同的寄生虫群落和种群,它们具有不同的MHC等位基因库,这可能是遗传漂移和寄生虫介导的选择共同作用的结果。我们表明,个体MHC II类多样性随人群而异,河流生态型较低。我们的结果表明,在生境类型内进行均质选择并在生境类型之间进行选择差异化的作用。最后,通过实验证据表明生殖隔离:在流道设计中,雌性更偏爱同胞雄性的气味。这证明了嗅觉提示在维持不同鱼类生态型之间的生殖隔离中的作用。

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