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α变形菌红杆菌(Rhodobacter sphaeroides)适应静止期。

Adaptation of the Alphaproteobacterium Rhodobacter sphaeroides to stationary phase.

机构信息

Institut für Mikrobiologie und Molekularbiologie, IFZ, Justus-Liebig-Universität, 35392, Giessen, Germany.

Biomolecular Mass Spectrometry, Max-Planck-Institute for Heart and Lung Research, Bad Nauheim, Germany.

出版信息

Environ Microbiol. 2019 Nov;21(11):4425-4445. doi: 10.1111/1462-2920.14809. Epub 2019 Oct 17.

Abstract

Exhaustion of nutritional resources stimulates bacterial populations to adapt their growth behaviour. General mechanisms are known to facilitate this adaptation by sensing the environmental change and coordinating gene expression. However, the existence of such mechanisms among the Alphaproteobacteria remains unclear. This study focusses on global changes in transcript levels during growth under carbon-limiting conditions in a model Alphaproteobacterium, Rhodobacter sphaeroides, a metabolically diverse organism capable of multiple modes of growth including aerobic and anaerobic respiration, anaerobic anoxygenic photosynthesis and fermentation. We identified genes that showed changed transcript levels independently of oxygen levels during the adaptation to stationary phase. We selected a subset of these genes and subjected them to mutational analysis, including genes predicted to be involved in manganese uptake, polyhydroxybutyrate production and quorum sensing and an alternative sigma factor. Although these genes have not been previously associated with the adaptation to stationary phase, we found that all were important to varying degrees. We conclude that while R. sphaeroides appears to lack a rpoS-like master regulator of stationary phase adaptation, this adaptation is nonetheless enabled through the impact of multiple genes, each responding to environmental conditions and contributing to the adaptation to stationary phase.

摘要

营养资源的耗尽会刺激细菌种群适应其生长行为。人们已经知道了一些通用机制,这些机制通过感知环境变化和协调基因表达来促进这种适应。然而,在α变形菌中是否存在这种机制尚不清楚。本研究专注于模型α变形菌——球形红杆菌在碳限制条件下生长过程中的转录水平的全局变化,该菌是一种代谢多样的生物体,能够进行多种生长方式,包括有氧和无氧呼吸、无氧厌氧光合作用和发酵。我们确定了在适应静止期过程中,独立于氧水平变化而显示转录水平变化的基因。我们选择了这些基因的一个子集进行突变分析,包括预测与锰摄取、聚羟基丁酸酯生产和群体感应以及替代σ因子有关的基因。尽管这些基因以前没有与适应静止期有关,但我们发现它们都在不同程度上很重要。我们得出结论,虽然 R. sphaeroides 似乎缺乏适应静止期的 rpoS 样主调节因子,但这种适应仍然是通过多个基因的影响实现的,每个基因都对环境条件作出反应,并有助于适应静止期。

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