Jofré Edgardo, Fischer Sonia, Príncipe Analía, Castro Marina, Ferrari Walter, Lagares Antonio, Mori Gladys
Departamento de Ciencias Naturales, Facultad de Ciencias Exactas, Físico-Químicas y Naturales, Universidad Nacional de Río Cuarto, Río Cuarto, Córdoba, Argentina.
FEMS Microbiol Lett. 2009 Jan;290(2):236-46. doi: 10.1111/j.1574-6968.2008.01421.x. Epub 2008 Nov 18.
Bacteria of the genus Azospirillum are free-living nitrogen-fixing, rhizobacteria that are found in close association with plant roots, where they exert beneficial effects on plant growth and yield in many crops of agronomic importance. Unlike other bacteria, little is known about the genetics and biochemistry of exopolysaccharides in Azospirillum brasilense. In an attempt to characterize genes associated with exopolysaccharides production, we generated an A. brasilense Cd Tn5 mutant that showed exopolysaccharides overproduction, decreased tolerance to saline conditions, altered cell morphology, and increased sensitivity to detergents. Genetic characterization showed that the Tn5 was inserted within a ddlB gene encoding for a d-alanine-d-alanine ligase, and located upstream of the ftsQAZ gene cluster responsible for cell division in different bacteria. Heterologous complementation of the ddlB Tn5 mutant restored the exopolysaccharides production to wild-type levels and the ability to grow in the presence of detergents, but not the morphology and growth characteristics of the wild-type bacteria, suggesting a polar effect of Tn5 on the fts genes. This result and the construction of a nonpolar ddlB mutant provide solid evidence of the presence of transcriptional coupling between a gene associated with peptidoglycan biosynthesis and the fts genes required to control cell division.
固氮螺菌属细菌是一类自由生活的固氮根际细菌,与植物根系紧密相关,在许多具有重要农艺价值的作物中,它们对植物生长和产量产生有益影响。与其他细菌不同,关于巴西固氮螺菌胞外多糖的遗传学和生物化学知之甚少。为了表征与胞外多糖产生相关的基因,我们构建了一个巴西固氮螺菌Cd Tn5突变体,该突变体表现出胞外多糖过量产生、对盐胁迫的耐受性降低、细胞形态改变以及对去污剂的敏感性增加。遗传表征表明,Tn5插入到一个编码d -丙氨酸 - d -丙氨酸连接酶的ddlB基因内,且位于负责不同细菌细胞分裂的ftsQAZ基因簇的上游。ddlB Tn5突变体的异源互补将胞外多糖的产生恢复到野生型水平,并恢复了在去污剂存在下生长的能力,但未恢复野生型细菌的形态和生长特性,这表明Tn5对fts基因具有极性效应。这一结果以及非极性ddlB突变体的构建,为与肽聚糖生物合成相关的基因和控制细胞分裂所需的fts基因之间存在转录偶联提供了确凿证据。