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The role of spatial heterogeneity in the evolution of local and global infections of viruses

机译:空间异质性在病毒局部和全局感染演变中的作用

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摘要

Viruses have two modes spread in a host body, one is to release infectious particles from infected cells (global infection) and the other is to infect directly from an infected cell to an adjacent cell (local infection). Since the mode of spread affects the evolution of life history traits, such as virulence, it is important to reveal what level of global and local infection is selected. Previous studies of the evolution of global and local infection have paid little attention to its dependency on the measures of spatial configuration. Here we show the evolutionarily stable proportion of global and local infection, and how it depends on the distribution of target cells. Using an epidemic model on a regular lattice, we consider the infection dynamics by pair approximation and check the evolutionarily stable strategy. We also conduct the Monte-Carlo simulation to observe evolutionary dynamics. We show that a higher local infection is selected as target cells become clustered. Surprisingly, the selected strategy depends not only on the degree of clustering but also the abundance of target cells per se.
机译:病毒在宿主体内有两种传播方式,一种是从感染细胞释放感染性颗粒(整体感染),另一种是从感染细胞直接感染到邻近细胞(局部感染)。由于传播方式会影响生活史特征(如毒力)的演变,因此重要的是要揭示所选的全球和局部感染水平。先前有关整体和局部感染演变的研究很少关注其对空间构形度量的依赖性。在这里,我们显示了全球和局部感染的进化稳定比例,以及它如何取决于靶细胞的分布。在规则格子上使用流行病模型,我们通过对近似来考虑感染动力学,并检查进化稳定策略。我们还进行了蒙特卡洛模拟,以观察进化动力学。我们显示,随着目标细胞聚集,选择了更高的局部感染。令人惊讶地,选择的策略不仅取决于聚类的程度,而且还取决于靶细胞本身的丰度。

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