CNRS, CGM, UPR 3404, Université Paris Sud, 1 Ave. de la Terrasse, Gif-sur-Yvette, F-91198, France.
Microbiologyopen. 2013 Jun;2(3):431-46. doi: 10.1002/mbo3.82. Epub 2013 Mar 21.
Photosynthetic bacteria can switch from planktonic lifestyle to phototrophic biofilm in mats in response to environmental changes. The mechanisms of phototrophic biofilm formation are, however, not characterized. Herein, we report a two-component system EmbRS that controls the biofilm formation in a photosynthetic member of the Burkholderiales order, the purple bacterium Rubrivivax gelatinosus. EmbRS inactivation results in cells that form conspicuous bacterial veils and fast-sinking aggregates in liquid. Biofilm analyses indicated that EmbRS represses the production of an extracellular matrix and biofilm formation. Mapping of transposon mutants that partially or completely restore the wild-type (WT) phenotype allowed the identification of two gene clusters involved in polysaccharide synthesis, one fully conserved only in Thauera sp., a floc-forming wastewater bacterium. A second two-component system BmfRS and a putative diguanylate cyclase BdcA were also identified in this screen suggesting their involvement in biofilm formation in this bacterium. The role of polysaccharides in sinking of microorganisms and organic matter, as well as the importance and the evolution of such regulatory system in phototrophic microorganisms are discussed.
光合细菌可以根据环境变化从浮游生物生活方式转变为光养生物膜。然而,光养生物膜形成的机制尚不清楚。在此,我们报告了一个双组分系统 EmbRS,它控制着 Burkholderiales 目光合成员紫色细菌 Rubrivivax gelatinosus 的生物膜形成。EmbRS 失活导致细胞形成明显的细菌面纱和快速下沉的液体聚集物。生物膜分析表明,EmbRS 抑制细胞外基质的产生和生物膜形成。转座子突变体的定位,这些突变体部分或完全恢复了野生型 (WT) 表型,使我们能够鉴定出两个参与多糖合成的基因簇,一个完全保守在絮状废水细菌 Thauera sp. 中。在这个筛选中还鉴定出了第二个双组分系统 BmfRS 和一个假定的二鸟苷酸环化酶 BdcA,这表明它们参与了该细菌的生物膜形成。本文还讨论了多糖在微生物和有机物下沉中的作用,以及这种调控系统在光合微生物中的重要性和进化。