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Host–parasite network structure is associated with community-level immunogenetic diversity

机译:寄主-寄生虫的网络结构与社区一级的免疫遗传多样性有关

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摘要

Genes of the major histocompatibility complex (MHC) encode proteins that recognize foreign antigens and are thus crucial for immune response. In a population of a single host species, parasite-mediated selection drives MHC allelic diversity. However, in a community-wide context, species interactions may modulate selection regimes because the prevalence of a given parasite in a given host may depend on its prevalence in other hosts. By combining network analysis with immunogenetics, we show that host species infected by similar parasites harbour similar alleles with similar frequencies. We further show, using a Bayesian approach, that the probability of mutual occurrence of a functional allele and a parasite in a given host individual is nonrandom and depends on other host–parasite interactions, driving co-evolution within subgroups of parasite species and functional alleles. Therefore, indirect effects among hosts and parasites can shape host MHC diversity, scaling it from the population to the community level.
机译:主要组织相容性复合体(MHC)的基因编码可识别外源抗原的蛋白质,因此对于免疫应答至关重要。在单个寄主物种的种群中,寄生虫介导的选择驱动MHC等位基因多样性。但是,在整个社区范围内,物种相互作用可能会调节选择机制,因为给定宿主中给定寄生虫的流行可能取决于其在其他宿主中的流行。通过将网络分析与免疫遗传学相结合,我们显示出被相似寄生虫感染的宿主物种具有相似频率的相似等位基因。我们进一步使用贝叶斯方法证明,在给定宿主个体中功能性等位基因和寄生虫的相互发生的概率是非随机的,并且取决于其他宿主-寄生虫的相互作用,驱动寄生虫物种和功能性等位基因亚组内的共同进化。因此,寄主和寄生虫之间的间接影响可以塑造寄主MHC的多样性,将其从人群扩展到社区。

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