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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Specific interactions between host and parasite genotypes do not act as a constraint on the evolution of antiviral resistance in drosophila
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Specific interactions between host and parasite genotypes do not act as a constraint on the evolution of antiviral resistance in drosophila

机译:果蝇和寄生虫基因型之间的特异性相互作用不影响果蝇抗病毒抗性的发展

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摘要

Genetic correlations between parasite resistance and other traits can act as an evolutionary constraint and prevent a population from evolving increased resistance. For example, previous studies have found negative genetic correlations between host resistance and life-history traits. In invertebrates, the level of resistance often depends on the combination of the host and parasite genotypes, and in this study, we have investigated whether such specific resistance also acts as an evolutionary constraint. We measured the resistance of different genotypes of the fruit fly Drosophila melanogaster to different genotypes of a naturally occurring pathogen, the sigma virus. Using a multitrait analysis, we examine whether genetic covariances alter the potential to select for general resistance against all of the different viral genotypes. We found large amounts of heritable variation in resistance, and evidence for specific interactions between host and parasite, but these interactions resulted in little constraint on Drosophila evolving greater resistance.
机译:寄生虫抗性与其他性状之间的遗传相关性可作为进化限制,并阻止种群进化为抗性增强。例如,以前的研究发现宿主抗性和生活史特征之间存在负的遗传相关性。在无脊椎动物中,抗药性水平通常取决于宿主和寄生虫基因型的组合,在这项研究中,我们研究了这种特异性抗药性是否也充当进化约束。我们测量了果蝇果蝇的不同基因型对天然病原体西格玛病毒的不同基因型的抗性。使用多性状分析,我们检查遗传协方差是否改变选择针对所有不同病毒基因型的一般抗性的潜力。我们发现抗药性的大量遗传变异,以及宿主与寄生虫之间特定相互作用的证据,但这些相互作用对果蝇产生更大抗性的限制很小。

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