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评估宿主内和宿主间选择压力对慢性病原体进化的重要性。

Evaluating the importance of within- and between-host selection pressures on the evolution of chronic pathogens.

作者信息

Coombs Daniel, Gilchrist Michael A, Ball Colleen L

机构信息

Department of Mathematics and Institute of Applied Mathematics, University of British Columbia, Vancouver, BC, Canada V6T 1Z2.

出版信息

Theor Popul Biol. 2007 Dec;72(4):576-91. doi: 10.1016/j.tpb.2007.08.005. Epub 2007 Aug 28.

Abstract

Infectious pathogens compete and are subject to natural selection at multiple levels. For example, viral strains compete for access to host resources within an infected host and, at the same time, compete for access to susceptible hosts within the host population. Here we propose a novel approach to study the interplay between within- and between-host competition. This approach allows for a single host to be infected by and transmit two strains of the same pathogen. We do this by nesting a model for the host-pathogen dynamics within each infected host into an epidemiological model. The nesting of models allows the between-host infectivity and mortality rates suffered by infected hosts to be functions of the disease progression at the within-host level. We present a general method for computing the basic reproduction ratio of a pathogen in such a model. We then illustrate our method using a basic model for the within-host dynamics of viral infections, embedded within the simplest susceptible-infected (SI) epidemiological model. Within this nested framework, we show that the virion production rate at the level of the cell-virus interaction leads, via within-host competition, to the presence or absence of between-host level competitive exclusion. In particular, we find that in the absence of mutation the strain that maximizes between-host fitness can outcompete all other strains. In the presence of mutation we observe a complex invasion landscape showing the possibility of coexistence. Although we emphasize the application to human viral diseases, we expect this methodology to be applicable to be many host-parasite systems.

摘要

传染性病原体在多个层面上相互竞争并接受自然选择。例如,病毒株在受感染宿主体内争夺宿主资源,同时在宿主群体中争夺易感宿主。在此,我们提出一种新方法来研究宿主内和宿主间竞争的相互作用。这种方法允许单个宿主被同一病原体的两种毒株感染并传播。我们通过将每个受感染宿主体内宿主 - 病原体动态模型嵌套到一个流行病学模型中来实现这一点。模型的嵌套使得受感染宿主所遭受的宿主间感染率和死亡率成为宿主内水平疾病进展的函数。我们提出了一种在此类模型中计算病原体基本繁殖数的通用方法。然后,我们使用一个病毒感染宿主内动态的基本模型进行说明,该模型嵌入在最简单的易感 - 感染(SI)流行病学模型中。在这个嵌套框架内,我们表明细胞 - 病毒相互作用水平的病毒粒子产生率通过宿主内竞争导致宿主间水平竞争排斥的存在或不存在。特别地,我们发现,在没有突变的情况下,使宿主间适应性最大化的毒株能够胜过所有其他毒株。在有突变的情况下,我们观察到一个复杂的入侵格局,显示了共存的可能性。虽然我们强调该方法在人类病毒性疾病中的应用,但我们预计这种方法适用于许多宿主 - 寄生虫系统。

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