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Effects of host heterogeneity on pathogen diversity and evolution

机译:宿主异质性对病原体多样性和进化的影响

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Phenotypic variation is common in most pathogens, yet the mechanisms that maintain this diversity are still poorly understood. We asked whether continuous host variation in susceptibility helps maintain phenotypic variation, using experiments conducted with a baculovirus that infects gypsy moth (Lymantria dispar) larvae. We found that an empirically observed tradeoff between mean transmission rate and variation in transmission, which results from host heterogeneity, promotes long-term coexistence of two pathogen types in simulations of a population model. This tradeoff introduces an alternative strategy for the pathogen: a low-transmission, low-variability type can coexist with the high-transmission type favoured by classical non-heterogeneity models. In addition, this tradeoff can help explain the extensive phenotypic variation we observed in field-collected pathogen isolates, in traits affecting virus fitness including transmission and environmental persistence. Similar heterogeneity tradeoffs might be a general mechanism promoting phenotypic variation in any pathogen for which hosts vary continuously in susceptibility.
机译:表型变异在大多数病原体中很常见,但是维持这种多样性的机制仍然知之甚少。我们询问了使用感染杆状病毒(Lymantria dispar)幼虫的杆状病毒进行的实验,寄主的持续敏感性变化是否有助于维持表型变异。我们发现,根据经验观察到的平均传播速率与传播变异之间的权衡是由宿主异质性导致的,在种群模型的模拟中促进了两种病原体类型的长期共存。这种折衷为病原体引入了另一种策略:低透射率,低变异性类型可以与经典非异质性模型所支持的高透射率类型共存。此外,这种权衡可以帮助解释我们在现场收集的病原体分离物中观察到的广泛表型变异,这些变异影响病毒的适应性,包括传播和环境持久性。相似的异质性折衷可能是促进宿主易感性不断变化的任何病原体表型变异的一般机制。

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