Jones Jacob, Studholme David J, Knight Christopher G, Preston Gail M
Department of Plant Sciences, University of Oxford, South Parks Road, Oxford OX13RB, UK.
Environ Microbiol. 2007 Dec;9(12):3046-64. doi: 10.1111/j.1462-2920.2007.01416.x.
The alternative sigma factor RpoN is a key regulator in the acclimation of Pseudomonas to complex natural environments. In this study we show that RpoN is required for efficient colonization of sugar beet seedlings by the plant growth-promoting bacterium Pseudomonas fluorescens SBW25, and use phenotypic and bioinformatic approaches to profile the RpoN-dependent traits and genes of P. fluorescens SBW25. RpoN is required for flagellar biosynthesis and for assimilation of a wide variety of nutrient sources including inorganic nitrogen, amino acids, sugar alcohols and dicarboxylic acids. Chemosensitivity assays indicate that RpoN-regulated genes contribute to acid tolerance and resistance to some antibiotics, including tetracyclines and aminoglycosides. Gain of function changes associated with loss of RpoN included increased tolerance to hydroxyurea and Guanazole. Bioinformatic predictions of RpoN-regulated genes show a close correspondence with phenotypic analyses of RpoN-regulated traits and suggest novel functions for RpoN in P. fluorescens, including regulation of poly(A) polymerase. The reduced plant colonization ability observed for an rpoN mutant of P. fluorescens is therefore likely to be due to defects in multiple traits including nutrient assimilation, protein secretion and stress tolerance.
替代σ因子RpoN是假单胞菌适应复杂自然环境的关键调节因子。在本研究中,我们表明植物促生细菌荧光假单胞菌SBW25有效定殖于甜菜幼苗需要RpoN,并使用表型和生物信息学方法来分析荧光假单胞菌SBW25中依赖RpoN的性状和基因。鞭毛生物合成以及多种营养源(包括无机氮、氨基酸、糖醇和二羧酸)的同化需要RpoN。化学敏感性分析表明,RpoN调控的基因有助于耐酸性和对某些抗生素(包括四环素和氨基糖苷类)的抗性。与RpoN缺失相关的功能获得性变化包括对羟基脲和胍唑的耐受性增加。对RpoN调控基因的生物信息学预测与对RpoN调控性状的表型分析密切相关,并提示了RpoN在荧光假单胞菌中的新功能,包括对聚(A)聚合酶的调控。因此,荧光假单胞菌rpoN突变体观察到的植物定殖能力降低可能是由于包括营养同化、蛋白质分泌和胁迫耐受性在内的多种性状存在缺陷。