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Evolution of Drosophila resistance against different pathogens and infection routes entails no detectable maintenance costs

机译:果蝇对不同病原体和感染途径的抗药性的演变不需要可检测的维护成本

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Pathogens exert a strong selective pressure on hosts, entailing host adaptation to infection. This adaptation often affects negatively other fitness-related traits. Such trade-offs may underlie the maintenance of genetic diversity for pathogen resistance. Trade-offs can be tested with experimental evolution of host populations adapting to parasites, using two approaches: (1) measuring changes in immunocompetence in relaxed-selection lines and (2) comparing life-history traits of evolved and control lines in pathogen-free environments. Here, we used both approaches to examine trade-offs in Drosophila melanogaster populations evolving for over 30 generations under infection with Drosophila C Virus or the bacterium Pseudomonas entomophila, the latter through different routes. We find that resistance is maintained after up to 30 generations of relaxed selection. Moreover, no differences in several classical life-history traits between control and evolved populations were found in pathogen-free environments, even under stresses such as desiccation, nutrient limitation, and high densities. Hence, we did not detect any maintenance costs associated with resistance to pathogens. We hypothesize that extremely high selection pressures commonly used lead to the disproportionate expression of costs relative to their actual occurrence in natural systems. Still, the maintenance of genetic variation for pathogen resistance calls for an explanation.
机译:病原体对宿主施加强大的选择性压力,导致宿主适应感染。这种适应通常会对其他与健身相关的特征产生负面影响。这种折衷可能是维持病原体抗性的遗传多样性的基础。可以使用两种方法,通过适应寄生虫的寄主种群的实验进化来权衡取舍:(1)测量宽松选择品系中免疫能力的变化;(2)比较无病原体的进化品系和对照品系的生命历史特征环境。在这里,我们使用两种方法来检查在果蝇C病毒或细菌假单胞菌昆虫的感染下进化超过30代的果蝇的种群之间的权衡,后者通过不同途径进行。我们发现经过多达30代的轻松选择,抗性得以维持。此外,在无病原体的环境中,即使在干燥,营养限制和高密度等压力下,在控制种群和进化种群之间的几种经典生活史特征上也没有发现差异。因此,我们没有发现任何与抗病原体相关的维护成本。我们假设,通常使用的极高选择压力会导致成本表达相对于自然系统中实际发生的成本成比例。尽管如此,维持针对病原体抗性的遗传变异仍需要作出解释。

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