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THE COEVOLUTIONARY IMPLICATIONS OF HOST TOLERANCE

机译:容忍度的演变

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Host tolerance to infectious disease, whereby hosts do not directly "fight" parasites but instead ameliorate the damage caused, is an important defense mechanism in both plants and animals. Because tolerance to parasite virulence may lead to higher prevalence of disease in a population, evolutionary theory tells us that while the spread of resistance genes will result in negative frequency dependence and the potential for diversification, the evolution of tolerance is instead likely to result in fixation. However, our understanding of the broader implications of tolerance is limited by a lack of fully coevolutionary theory. Here we examine the coevolution of tolerance across a comprehensive range of classic coevolutionary host–parasite frameworks, including equivalents of gene-for-gene and matching allele and evolutionary invasion models. Our models show that the coevolution of host tolerance and parasite virulence does not lead to the generation and maintenance of diversity through either static polymorphisms or through "Red-queen" cycles. Coevolution of tolerance may however lead to multiple stable states leading to sudden shifts in parasite impacts on host health. More broadly, we emphasize that tolerance may change host–parasite interactions from antagonistic to a form of "apparent commensalism," but may also lead to the evolution of parasites that are highly virulent in nontolerant hosts.
机译:宿主对传染病的耐受性是植物和动物中重要的防御机制,宿主不会直接“对抗”寄生虫,而是改善了所造成的损害。由于对寄生虫毒力的耐受性可能导致人群中疾病的患病率更高,因此进化论告诉我们,尽管抗性基因的传播将导致负频率依赖性和多样化的潜力,但耐受性的进化反而可能导致固定。但是,由于缺乏完全的协同进化理论,我们对宽容的广泛含义的理解受到了限制。在这里,我们研究了经典协同进化宿主-寄生虫框架的广泛范围内的耐受性协同进化,包括基因对基因等价物以及匹配的等位基因和进化入侵模型。我们的模型表明,宿主耐受性和寄生虫毒力的共同进化不会通过静态多态性或通过“红色女王”循环来导致多样性的产生和维持。然而,耐受性的共同进化可能导致多种稳定状态,从而导致寄生虫对宿主健康的突然转变。更广泛地说,我们强调宽容可能将宿主与寄生虫之间的相互作用从对抗性转变为“明显的共鸣”形式,但也可能导致在非宽容宿主中具有高毒性的寄生虫进化。

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