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通过调节氮同化来控制吸引和发病机制。

controls both attraction and pathogenesis by regulating nitrogen assimilation.

作者信息

Marogi Jacob G, Murphy Coleen T, Myhrvold Cameron, Gitai Zemer

出版信息

bioRxiv. 2023 Nov 29:2023.11.29.569279. doi: 10.1101/2023.11.29.569279.

Abstract

Detecting chemical signals is important for identifying food sources and avoiding harmful agents. Like most animals, use olfaction to chemotax towards their main food source, bacteria. However, little is known about the bacterial compounds governing attraction to bacteria and the physiological importance of these compounds to bacteria. Here, we address these questions by investigating the function of a small RNA, P11, in the pathogen, that was previously shown to mediate learned pathogen avoidance. We discovered that this RNA also affects the attraction of untrained to and does so by controlling production of ammonia, a volatile odorant produced during nitrogen assimilation. We untangle the complex regulation of nitrogen assimilation, which is mediated by a partner-switching mechanism involving environmental nitrates, sensor proteins, and P11. In addition to mediating attraction, nitrogen assimilation is important for bacterial fitness and pathogenesis during infection by . These studies define ammonia as a major mediator of trans-kingdom signaling, reveal the physiological importance of nitrogen assimilation for both bacteria and host organisms, and highlight how a bacterial metabolic pathway can either benefit or harm a host in different contexts.

摘要

检测化学信号对于识别食物来源和避开有害物质至关重要。与大多数动物一样,(此处缺失主语)利用嗅觉向其主要食物来源——细菌进行趋化。然而,关于控制对细菌吸引力的细菌化合物以及这些化合物对细菌的生理重要性,我们知之甚少。在这里,我们通过研究一种小RNA(P11)在病原体中的功能来解决这些问题,该病原体先前已被证明能介导习得性病原体回避。我们发现这种RNA也会影响未训练的(此处缺失相关对象)对(此处缺失相关对象)的吸引力,并且是通过控制氨的产生来实现的,氨是氮同化过程中产生的一种挥发性气味物质。我们解开了氮同化的复杂调控机制,它是由一种涉及环境硝酸盐、传感器蛋白和P11的伴侣切换机制介导的。除了介导(此处缺失相关对象)吸引力外,氮同化对于(此处缺失相关病原体)感染期间的细菌适应性和致病性也很重要。这些研究将氨定义为跨物种信号传导的主要介质,揭示了氮同化对细菌和宿主生物体的生理重要性,并突出了细菌代谢途径在不同情况下如何对宿主产生有益或有害影响。

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