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昂贵的获得性免疫记忆的进化。

The evolution of costly acquired immune memory.

机构信息

Mathematics and Statistics, University of Sheffield Sheffield, S3 7RH, U.K ; Biosciences, University of Exeter, Cornwall Campus Penryn, TR10 9EZ.

出版信息

Ecol Evol. 2013 Jul;3(7):2223-32. doi: 10.1002/ece3.611. Epub 2013 Jun 6.

Abstract

A key feature of the vertebrate adaptive immune system is acquired immune memory, whereby hosts launch a faster and heightened response when challenged by previously encountered pathogens, preventing full infection. Here, we use a mathematical model to explore the role of ecological and epidemiological processes in shaping selection for costly acquired immune memory. Applying the framework of adaptive dynamics to the classic SIR (Susceptible-Infected-Recovered) epidemiological model, we focus on the conditions that may lead hosts to evolve high levels of immunity. Linking our work to previous theory, we show how investment in immune memory may be greatest at long or intermediate host lifespans depending on whether immunity is long lasting. High initial costs to gain immunity are also found to be essential for a highly effective immune memory. We also find that high disease infectivity and sterility, but intermediate virulence and immune period, increase selection for immunity. Diversity in host populations through evolutionary branching is found to be possible but only for a limited range of parameter space. Our model suggests that specific ecological and epidemiological conditions have to be met for acquired immune memory to evolve.

摘要

脊椎动物适应性免疫系统的一个关键特征是获得性免疫记忆,即宿主在受到先前遇到的病原体挑战时会发起更快、更高强度的反应,从而防止完全感染。在这里,我们使用数学模型来探讨生态和流行病学过程在塑造对昂贵的获得性免疫记忆的选择中的作用。我们将适应性动态的框架应用于经典的 SIR(易感-感染-恢复)流行病学模型,重点关注可能导致宿主产生高水平免疫力的条件。将我们的工作与之前的理论联系起来,我们展示了免疫记忆的投资如何取决于免疫力的持久性,在宿主的寿命长或中等时最大。我们还发现,获得免疫力的初始高成本对于高度有效的免疫记忆也是必不可少的。我们还发现,高疾病传染性和不育性,但中等病毒力和免疫期,增加了对免疫力的选择。通过进化分支在宿主群体中的多样性是可能的,但只在有限的参数空间范围内。我们的模型表明,需要满足特定的生态和流行病学条件才能进化出获得性免疫记忆。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e726/3728959/c4f07e8382f7/ece30003-2223-f1.jpg

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