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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Red Queen meets Santa Rosalia: arms races and the evolution of host specialization in organisms with parasitic lifestyles
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Red Queen meets Santa Rosalia: arms races and the evolution of host specialization in organisms with parasitic lifestyles

机译:红皇后与圣罗莎莉娅会面:军备竞赛和宿主对具有寄生生活方式的生物的专业化发展

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摘要

It is argued that nonequilibrium allele frequency dynamics due to coevolution can drive the evolution of specialized host races in parasites capable of host choice - for example, herbivorous insects or parasitoids. The proposed mechanism does not require genetic trade-offs in performance on different host species. It is based on the premise that the ability of the parasite to overcome the resistance of different host species is to a large degree genetically independent - that is, controlled by different loci. The intuitive rationale is that the genetic lineage of a parasite that evolves host preference becomes more consistently exposed to selection for performance on its preferred host. Such a choosy lineage can thus coevolve faster in response toevolving host defenses than a generalist lineage distributed among several host species. Given genetic variation in host preference, an initially generalist parasite population evolves toward specialized host races, each choosing one host species. Thisidea is supported by a series of multilocus models of coevolution between a parasite and two host species, in which the parasite virulence on each host is affected by a different set of loci and an additional locus or two loci control host choice.
机译:有人认为,由于共进化导致的非平衡等位基因频率动力学可以驱动能够选择宿主的寄生虫(例如,草食性昆虫或寄生虫)中特定宿主的进化。所提出的机制不需要在不同宿主物种的性能上进行遗传折衷。它基于这样的前提,即寄生虫克服不同宿主物种抗性的能力在很大程度上在遗传上是独立的,即受不同基因座的控制。直观的理由是,进化出宿主偏好的寄生虫的遗传谱系变得更一致地暴露于其首选宿主的性能选择。因此,这样的选择谱系可以响应于进化的宿主防御而比分布在几个宿主物种中的通才谱系更快地进化。给定宿主偏好的遗传变异,最初的多面体寄生虫种群会朝着专门的宿主种族进化,每个种族都选择一个宿主物种。该想法受到寄生虫和两种宿主物种之间协同进化的一系列多基因座模型的支持,其中每个宿主上的寄生虫毒力受不同的基因座集和另外的基因座或两个基因座控制宿主选择的影响。

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