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The role of models in translating within-host dynamics to parasite evolution

机译:模型在将宿主内动力学转化为寄生虫进化中的作用

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Mathematical modelling provides an effective way to challenge conventional wisdom about parasite evolution and investigate why parasites do what they do' within the host. Models can reveal when intuition cannot explain observed patterns, when more complicated biology must be considered, and when experimental and statistical methods are likely to mislead. We describe how models of within-host infection dynamics can refine experimental design, and focus on the case study of malaria to highlight how integration between models and data can guide understanding of parasite fitness in three areas: (1) the adaptive significance of chronic infections; (2) the potential for tradeoffs between virulence and transmission; and (3) the implications of within-vector dynamics. We emphasize that models are often useful when they highlight unexpected patterns in parasite evolution, revealing instead why intuition yields the wrong answer and what combination of theory and data are needed to advance understanding.
机译:数学建模提供了一种有效的方法,可以挑战有关寄生虫进化的传统知识,并调查为什么寄生虫会在宿主体内做什么。当直觉无法解释观察到的模式时,何时必须考虑更复杂的生物学,以及何时实验和统计方法可能会产生误导时,模型可以显示出来。我们将描述宿主内部感染动力学模型如何完善实验设计,并重点关注疟疾的案例研究,以突出模型和数据之间的整合如何在三个方面指导对寄生虫适应性的理解:(1)慢性感染的适应性意义; (2)在毒力和传播之间进行权衡的可能性; (3)向量内动力学的含义。我们强调,当模型强调寄生虫进化中的意外模式时,它们通常很有用,而是揭示出直觉为什么会产生错误的答案以及需要什么理论和数据的组合来增进理解。

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