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Coevolutionary feedback elevates constitutive immune defence: a protein network model

机译:协同进化反馈提高了组成型免疫防御:一种蛋白质网络模型

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摘要

BackgroundOrganisms have evolved a variety of defence mechanisms against natural enemies, which are typically used at the expense of other life history components. Induced defence mechanisms impose minor costs when pathogens are absent, but mounting an induced response can be time-consuming. Therefore, to ensure timely protection, organisms may partly rely on constitutive defence despite its sustained cost that renders it less economical. Existing theoretical models addressing the optimal combination of constitutive versus induced defence focus solely on host adaptation and ignore the fact that the efficacy of protection depends on genotype-specific host-parasite interactions. Here, we develop a signal-transduction network model inspired by the invertebrate innate immune system, in order to address the effect of parasite coevolution on the optimal combination of constitutive and induced defence.
机译:背景技术有机体已经发展出了多种针对天敌的防御机制,这些防御机制通常以牺牲其他生命史组成部分为代价。当病原体不存在时,诱导防御机制会产生较小的成本,但是建立诱导反应可能会很耗时。因此,为了确保及时保护,生物可能会部分依赖本构防御,尽管其持续的成本使其经济性降低。解决本构防御与诱导防御的最佳组合的现有理论模型仅关注宿主适应性,而忽略了保护功效取决于基因型特异性宿主-寄生虫相互作用的事实。在这里,我们开发了一个无脊椎动物先天免疫系统启发的信号传导网络模型,目的是解决寄生虫协同进化对本构和诱导防御的最佳组合的影响。

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