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Antimicrobial defence and persistent infection in insects revisited

机译:再谈昆虫的抗菌防御和持续感染

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摘要

Insects show long-lasting antimicrobial immune responses that follow the initial fast-acting cellular processes. These immune responses are discussed to provide a form of phrophylaxis and/or to serve as a safety measure against persisting infections. The duration and components of such long-lasting responses have rarely been studied in detail, a necessary prerequisite to understand their adaptive value. Here, we present a 21 day proteomic time course of the mealworm beetle Tenebrio molitor immune-challenged with heat-killed Staphylococcus aureus. The most upregulated peptides are antimicrobial peptides (AMPs), many of which are still highly abundant 21 days after infection. The identified AMPs included toll and imd-mediated AMPs, a significant number of which have no known function against S. aureus or other Gram-positive bacteria. The proteome reflects the selective arena for bacterial infections. The results also corroborate the notion of synergistic interactions in vivo that are difficult to model in vitro.
机译:昆虫表现出持久的抗微生物免疫反应,该反应遵循最初的快速作用细胞过程。讨论了这些免疫应答,以提供一种预防和/或作为抵抗持续感染的安全措施。很少对这种持久响应的持续时间和组成部分进行详细研究,这是了解其适应性价值的必要前提。在这里,我们提出了用热杀死的金黄色葡萄球菌免疫攻击的粉虫甲虫黄粉虫的21天蛋白质组学时间过程。上调程度最高的肽是抗菌肽(AMPs),其中许多在感染后21天仍非常丰富。鉴定出的AMPs包括收费和imd介导的AMPs,其中相当数量的对金黄色葡萄球菌或其他革兰氏阳性细菌没有已知功能。蛋白质组反映了细菌感染的选择性领域。结果也证实了难以在体外建模的体内协同相互作用的概念。

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