Department of Biology, University of Regina, Regina, SK, Canada.
FEMS Microbiol Ecol. 2010 Mar;71(3):327-40. doi: 10.1111/j.1574-6941.2009.00824.x. Epub 2009 Dec 2.
Rhizobium leguminosarum is a soil bacterium with the ability to form nitrogen-fixing nodules on the roots of leguminous plants. Soil-dwelling, free-living R. leguminosarum often encounters desiccation stress, which impacts its survival within the soil. The mechanisms by which soil bacteria resist the effects of desiccation stress have been described. However, the role of the cell envelope in the desiccation tolerance mechanisms of rhizobia is relatively uncharacterized. Using a transposon mutagenesis approach, a mutant of R. leguminosarum bv. viciae was isolated that was highly sensitive to desiccation. The mutation is located in the ATP-binding protein of an uncharacterized ATP-binding cassette transporter operon (RL2975-RL2977). Exopolysaccharide accumulation was significantly lower in the mutant and the decrease in desiccation tolerance was attributed to the decreased accumulation of exopolysaccharide. In addition to desiccation sensitivity, the mutant was severely impaired in biofilm formation, an important adaptation used by soil bacteria for survival. This work has identified a novel transporter required for physiological traits that are important for the survival of R. leguminosarum in the rhizosphere environment.
根瘤菌是一种能在豆科植物根部形成固氮结瘤的土壤细菌。土壤中自由生活的根瘤菌经常会遇到干旱胁迫,这会影响其在土壤中的生存。已经描述了土壤细菌抵抗干旱胁迫影响的机制。然而,细胞包膜在根瘤菌的干燥耐受性机制中的作用相对未知。通过转座子诱变方法,分离到了一种对干燥高度敏感的根瘤菌 bv. viciae 突变体。该突变位于一个未鉴定的 ATP 结合盒转运蛋白操纵子(RL2975-RL2977)的 ATP 结合蛋白中。突变体中胞外多糖的积累显著降低,干燥耐受性的降低归因于胞外多糖积累的减少。除了干燥敏感性外,突变体在生物膜形成方面也受到严重损害,生物膜形成是土壤细菌用于生存的重要适应机制。这项工作鉴定了一种新型转运蛋白,它对于根瘤菌在根际环境中生存的重要生理特性是必需的。