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多重感染、免疫动力学与毒力进化

Multiple infections, immune dynamics, and the evolution of virulence.

作者信息

Alizon Samuel, van Baalen Minus

机构信息

Ecole Normale Supérieure, Unité Mixte de Recherche 7625 Fonctionnement et Evolution des Systèmes Ecologiques, Paris F-75005, France.

出版信息

Am Nat. 2008 Oct;172(4):E150-68. doi: 10.1086/590958.

Abstract

Understanding the effect of multiple infections is essential for the prediction (and eventual control) of virulence evolution. Some theoretical studies have considered the possibility that several strains coexist in the same host (coinfection), but few have taken their within-host dynamics explicitly into account. Here, we develop a nested approach based on a simple model for the interaction of parasite strains with their host's immune system. We study virulence evolution by linking the within-host dynamics to an epidemiological framework that incorporates multiple infections. Our model suggests that antigenically similar parasite strains cannot coexist in the long term inside a host. We also find that the optimal level of virulence increases with the efficiency of multiple infections. Finally, we notice that coinfections create heterogeneity in the host population (with susceptible hosts and infected hosts), which can lead to evolutionary branching in the parasite population and the emergence of a hypervirulent parasite strategy. We interpret this result as a parasite specialization to the infectious state of the hosts. Our study has experimental and theoretical implications in a virulence management perspective.

摘要

了解多重感染的影响对于预测(以及最终控制)毒力进化至关重要。一些理论研究考虑了几种菌株在同一宿主中共存(共感染)的可能性,但很少有研究明确考虑它们在宿主体内的动态变化。在此,我们基于一个寄生虫菌株与其宿主免疫系统相互作用的简单模型开发了一种嵌套方法。我们通过将宿主体内动态与包含多重感染的流行病学框架相联系来研究毒力进化。我们的模型表明,抗原相似的寄生虫菌株在宿主内长期无法共存。我们还发现,毒力的最佳水平会随着多重感染效率的提高而增加。最后,我们注意到共感染会在宿主种群中产生异质性(有易感宿主和感染宿主),这可能导致寄生虫种群中的进化分支以及一种高毒力寄生虫策略的出现。我们将这一结果解释为寄生虫对宿主感染状态的特化。从毒力管理的角度来看,我们的研究具有实验和理论意义。

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