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Cnidarian-Microbe Interactions and the Origin of Innate Immunity in Metazoans

机译:念珠菌-微生物相互作用和后生动物的先天免疫起源。

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Most epithelia in animals are colonized by microbial communities. These resident microbes influence fitness and thus ecologically important traits of their hosts, ultimately forming a metaorganism consisting of a multicellular host and a community ofassociated microorganisms. Recent discoveries in the cnidarian Hydra show that components of the innate immune system as well as transcriptional regulators of stem cells are involved in maintaining homeostasis between animals and their resident microbiota. Here I argue that components of the innate immune system with its host-specific antimicrobial peptides and a rich repertoire of pattern recognition receptors evolved in early-branching metazoans because of the need to control the resident beneficial microbes, not because of invasive pathogens. I also propose a mutual intertwinement between the stem cell regulatory machinery of the host and the resident microbiota composition, such that disturbances in one trigger a restructuring and resetting of theother.
机译:动物中的大多数上皮细胞被微生物群落定殖。这些常驻微生物影响其宿主的适应性,从而影响其宿主的重要生态特征,最终形成一种由多细胞宿主和相关微生物群落组成的微生物。刺胞水蛇的最新发现表明,先天免疫系统的成分以及干细胞的转录调节因子参与维持动物及其体内微生物群之间的体内平衡。在这里,我认为先天后生动物进化出具有宿主特异性抗微生物肽和丰富的模式识别受体库的先天免疫系统,这是因为需要控制体内有益微生物,而不是因为侵入性病原体。我还提出了宿主的干细胞调节机制与驻留的微生物群组成之间的相互交织,从而使一个中的干扰触发另一个的重组和重置。

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