bioRxiv · 10.1101/2020.04.27.063917
Metabolic exchange and energetic coupling between nutritionally stressed bacterial species, the possible role of QS molecules
Abstract
To clarify the principles controlling inter-species interactions, we previously developed a co-culture model with two anaerobic bacteria, Clostridium acetobutylicum and Desulfovibrio vulgaris Hildenborough, in which nutritional stress for D. vulgaris induced tight cell-cell inter-species interaction. Here we show that exchange of metabolites produced by C. acetobutylicum allows D. vulgaris to duplicate its DNA, and to be energetically viable even without its substrates. Physical interaction between C. acetobutylicum and D. vulgaris (or Escherichia coli and D. vulgaris) is linked to the quorum-sensing molecule AI-2, produced by C. acetobutylicum and E. coli. 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.
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RANAVA, D., Backes, C., Karthikeyan, G., Ouari, O., Soric, A., Guiral, M., Cardenas, M. L., Giudici-Orticoni, M. T.. 2020-04-29. Metabolic exchange and energetic coupling between nutritionally stressed bacterial species, the possible role of QS molecules. https://doi.org/10.1101/2020.04.27.063917
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