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营养胁迫诱导细菌物种之间的细胞物质交换和能量偶联。

Nutritional stress induces exchange of cell material and energetic coupling between bacterial species.

机构信息

Laboratoire de Bioénergétique et Ingénierie des Protéines, Institut de Microbiologie de la Méditerranée, CNRS-Aix-Marseille Université, 31 Chemin Joseph Aiguier, 13009 Marseille, France.

INRA, UR050, Laboratoire de Biotechnologie de l'Environnement, Avenue des Etangs, F-11100 Narbonne, France.

出版信息

Nat Commun. 2015 Feb 23;6:6283. doi: 10.1038/ncomms7283.

Abstract

Knowledge of the behaviour of bacterial communities is crucial for understanding biogeochemical cycles and developing environmental biotechnology. Here we demonstrate the formation of an artificial consortium between two anaerobic bacteria, Clostridium acetobutylicum (Gram-positive) and Desulfovibrio vulgaris Hildenborough (Gram-negative, sulfate-reducing) in which physical interactions between the two partners induce emergent properties. Molecular and cellular approaches show that tight cell-cell interactions are associated with an exchange of molecules, including proteins, which allows the growth of one partner (D. vulgaris) in spite of the shortage of nutrients. This physical interaction induces changes in expression of two genes encoding enzymes at the pyruvate crossroads, with concomitant changes in the distribution of metabolic fluxes, and allows a substantial increase in hydrogen production without requiring genetic engineering. The stress induced by the shortage of nutrients of D. vulgaris appears to trigger the interaction.

摘要

了解细菌群落的行为对于理解生物地球化学循环和开发环境生物技术至关重要。在这里,我们展示了两种厌氧菌——产丁酸梭菌(革兰氏阳性菌)和脱硫弧菌(革兰氏阴性菌,硫酸盐还原菌)之间形成人工共生体的过程,其中两个伙伴之间的物理相互作用诱导出了新的特性。分子和细胞方法表明,紧密的细胞间相互作用与分子(包括蛋白质)的交换有关,这使得一个伙伴(脱硫弧菌)能够生长,尽管营养物质短缺。这种物理相互作用诱导了与丙酮酸交叉路口的两种酶的基因表达的变化,同时改变了代谢通量的分布,并允许在不进行基因工程的情况下大量生产氢气。脱硫弧菌因营养物质短缺而产生的压力似乎触发了这种相互作用。

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