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Genotype specificity among hosts, pathogens, and beneficial microbes influences the strength of symbiont-mediated protection.

机译:宿主,病原体和有益微生物之间的基因型特异性影响共生体介导的保护的强度。

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摘要

The microbial symbionts of eukaryotes influence disease resistance in many host-parasite systems. Symbionts show substantial variation in both genotype and phenotype, but it is unclear how natural selection maintains this variation. It is also unknown whether variable symbiont genotypes show specificity with the genotypes of hosts or parasites in natural populations. Genotype by genotype interactions are a necessary condition for coevolution between interacting species. Uncovering the patterns of genetic specificity among hosts, symbionts, and parasites is therefore critical for determining the role that symbionts play in host-parasite coevolution. Here, we show that the strength of protection conferred against a fungal pathogen by a vertically transmitted symbiont of an aphid is influenced by both host-symbiont and symbiont-pathogen genotype by genotype interactions. Further, we show that certain symbiont phylogenetic clades have evolved to provide stronger protection against particular pathogen genotypes. However, we found no evidence of reciprocal adaptation of co-occurring host and symbiont lineages. Our results suggest that genetic variation among symbiont strains may be maintained by antagonistic coevolution with their host and/or their host's parasites.
机译:真核生物的微生物共生影响许多宿主寄生虫系统的抗病性。共生体在基因型和表型上都显示出很大的变化,但是尚不清楚自然选择如何保持这种变化。还不清楚可变共生基因型是否与自然种群中宿主或寄生虫的基因型显示特异性。通过基因型相互作用进行基因型是相​​互作用物种之间共同进化的必要条件。因此,揭示宿主,共生体和寄生虫之间的遗传特异性模式对于确定共生体在宿主-寄生虫共进化中的作用至关重要。在这里,我们表明,由蚜虫的垂直传播共生体对真菌病原体赋予的保护强度受到基因型相互作用的宿主共生体和共生体病原体基因型的影响。此外,我们表明某些共生系统进化枝已进化为提供针对特定病原体基因型的更强保护。但是,我们没有发现同时存在的宿主和共生谱系相互适应的证据。我们的结果表明,共生菌株之间的遗传变异可以通过与其宿主和/或宿主寄生虫的拮抗协同进化来维持。

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