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Ecological conditions that favor the evolution of intermediate-virulence in an environmentally transmitted parasite

机译:有利于环境传播的寄生虫中中等毒性进化的生态条件

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In this paper we develop and analyze several populaion-dynamic models of an environmentally transmitted symbiotic parasite infecting an isolated population of susceptible hosts. In our most basic model infection acts only to decrease the average lifetime of the infected host, parasites are only transmitted to uninfected hosts, there is no recovery from infection, and the rate of parasite transmission is an increasing function of the level of parasite virulence. It is shown that invasion of the parasite-free equilibrium cannot occur for virulence levels that are either too high or too low. We then incorporate a number of modifications to the model, among them the possibility that host fertility is reduced by infection, and that transmission rate depends additionally on susceptible host density. It is shown that the essential nature of the conditions for invasion are preserved. Thus, natural selection for intermediate virulence is a generic property of a broad class of population models.
机译:在本文中,我们开发并分析了环境传播的共生寄生虫感染隔离的易感宿主群体的几种种群动力学模型。在我们最基本的模型中,感染仅会减少被感染宿主的平均寿命,寄生虫仅传播给未感染的宿主,感染后无法恢复,并且寄生虫传播的速度是寄生虫毒力水平的增长函数。结果表明,对于过高或过低的毒力水平,都不会发生无寄生虫平衡的入侵。然后,我们对模型进行了许多修改,其中包括感染导致宿主繁殖力降低的可能性,以及传播速率还取决于易感宿主密度。结果表明,入侵条件的本质得以保留。因此,对自然毒力的自然选择是一大类人口模型的通用属性。

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