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Metabolic Exchange and Energetic Coupling between Nutritionally Stressed Bacterial Species: Role of Quorum-Sensing Molecules

机译:营养压力细菌种类之间的代谢交换和能量耦合:批量传感分子的作用

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Bacteria have usually been studied in single culture in rich media or under specific starvation conditions. However, in nature they coexist with other microorganisms and build an advanced society. ABSTRACT Formation of multispecies communities allows nearly every niche on earth to be colonized, and the exchange of molecular information among neighboring bacteria in such communities is key for bacterial success. To clarify the principles controlling interspecies interactions, we previously developed a coculture model with two anaerobic bacteria, Clostridium acetobutylicum (Gram positive) and Desulfovibrio vulgaris Hildenborough (Gram negative, sulfate reducing). Under conditions of nutritional stress for D. vulgaris , the existence of tight cell-cell interactions between the two bacteria induced emergent properties. Here, we show that the direct exchange of carbon metabolites produced by C. acetobutylicum allows D vulgaris to duplicate its DNA and to be energetically viable even without its substrates. We identify the molecular basis of the physical interactions and how autoinducer-2 (AI-2) molecules control the interactions and metabolite exchanges between C. acetobutylicum and D. vulgaris (or Escherichia coli and D. vulgaris ). With nutrients, D. vulgaris produces a small molecule that inhibits in vitro the AI-2 activity and could act as an antagonist in vivo . Sensing of AI-2 by D. vulgaris could induce formation of an intercellular structure that allows directly or indirectly metabolic exchange and energetic coupling between the two bacteria.
机译:通常在富培养基或特定饥饿条件下在单一培养物中进行细菌。然而,在自然中,他们与其他微生物共存并建立一个先进的社会。摘要多数社区的形成允许地球上的每个利基被殖民化,并且这种社区中邻近细菌之间的分子信息交换是细菌成功的关键。为了澄清控制Interspecies相互作用的原则,我们以前开发了一种具有两个厌氧细菌,乙酸梭菌(克阳性)和脱硫Hildenborough(Gram阴性,硫酸盐还原)的共培养模型。在D.Vulgaris的营养应激条件下,两种细菌诱导的紧急性能之间的细胞细胞相互作用的存在。在这里,我们表明C.丙基丁基酯产生的碳代谢物直接交换允许Ventgaris允许其DNA复制并使即使没有其基质也能够充满活力。我们鉴定了物理相互作用的分子基础,以及AutoInducer-2(AI-2)分子如何控制C.丙酮丁糖和D.Vulgaris(或大肠杆菌和D.Ventgaris)之间的相互作用和代谢物交换。含有营养素,D.Vulgaris产生一种抑制体外AI-2活性的小分子,并且可以作为体内的拮抗剂。 D. Ventgaris对AI-2的感测可以诱导形成细胞间结构,其允许直接或间接代谢交换和两种细菌之间的能量耦合。

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