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Red Queen revisited: Immune gene diversity and parasite load in the asexual Poecilia formosa versus its sexual host species P. mexicana

机译:重新研究红皇后:无性生殖细胞Poecilia formosa与性寄主物种P. mexicana的免疫基因多样性和寄生虫负荷

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摘要

In accordance with the Red Queen hypothesis, the lower genotypic diversity in clonally reproducing species should make them easier targets for pathogen infection, especially when closely related sexually reproducing species occur in close proximity. We analyzed two populations of clonal P. formosa and their sexual parental species P. mexicana by correlating individual parasite infection with overall and immune genotype. Our study revealed lower levels of overall genotypic diversity and marginally fewer MHC class I alleles in P. formosa individuals compared to sexually reproducing P. mexicana. Parasite load, however, differed only between field sites but not between species. We hypothesize that this might be due to slightly higher genotypic diversity in P. formosa at the innate immune system (toll like receptor 8) which is likely due to the species’ hybrid origin. In consequence, it appears that clonal individuals do not necessarily suffer a disadvantage compared to sexual individuals when fighting parasite infection.
机译:根据红女王假说,克隆繁殖物种的较低基因型多样性应使其更容易成为病原体感染的目标,特别是当密切相关的有性繁殖物种发生时。我们通过将个体寄生虫感染与总体基因型和免疫基因型相关联,分析了两个克隆的福尔摩斯对虾及其亲代物种墨西哥对虾。我们的研究表明,与有性繁殖的墨西哥假单胞菌相比,福尔摩斯假单胞菌个体的总体基因型多样性水平较低,I类MHC等位基因略少。但是,寄生虫负荷仅在田间地点之间有所不同,而在物种之间没有差别。我们推测,这可能是由于固有免疫系统(福寿类受体8)在福尔摩斯对虾的基因型多样性稍高的缘故,这很可能是由于该物种的杂种起源所致。结果,在对抗寄生虫感染时,与性个体相比,似乎克隆个体不一定遭受不利影响。

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