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Genetic Characterization of Pseudomonas fluorescens SBW25 rsp Gene Expression in the Phytosphere and In Vitro

机译:荧光假单胞菌SBW25 rsp基因表达在植物球体内和体外的遗传特征

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摘要

The plant-colonizing Pseudomonas fluorescens strain SBW25 harbors a gene cluster (rsp) whose products show similarity to type III protein secretion systems found in plant and animal pathogens. Here we report a detailed analysis of the expression and regulation of the P. fluorescens rsp pathway, both in the phytosphere and in vitro. A combination of chromosomally integrated transcriptional reporter fusions, overexpressed regulatory genes, and specific mutants reveal that promoters controlling expression of rsp are actively transcribed in the plant rhizosphere but not (with the exception of the rspC promoter) in the phyllosphere. In synthetic medium, regulatory (rspL and rspR) and structural (rspU, plus the putative effector ropE) genes are poorly expressed; the rspC promoter is subject to an additional level of regulatory control. Ectopic expression of regulatory genes in wild-type and mutant backgrounds showed that RspR controls transcription of the alternate sigma factor, rspL, and that RspL controls expression of gene clusters encoding structural genes. Mutation of rspV did not affect RspR-mediated expression of rspU. A search for additional regulators revealed two candidates—one with a role in the conversion of alanine to pyruvate—suggesting that expression of rsp is partly dependent upon the metabolic status of the cell. Mutations in rsp regulators resulted in a significant reduction in competitive colonization of the root tips of sugar beet seedlings but also caused a marked increase in the lag phase of laboratory-grown cultures, indicating that rsp regulatory genes play a more significant general role in the function of P. fluorescens SBW25 than previously appreciated.
机译:植物定殖的荧光假单胞菌菌株SBW25具有一个基因簇(rsp),其产物与动植物病原体中发现的III型蛋白质分泌系统相似。在这里,我们报告了在体育界和体外对荧光假单胞菌rsp途径的表达和调控的详细分析。染色体整合的转录报告基因融合蛋白,过表达的调控基因和特定突变体的组合显示,控制rsp表达的启动子在植物根际中被主动转录,而在叶球根中则不被转录(rspC启动子除外)。在合成培养基中,调控基因(rspL和rspR)和结构基因(rspU,加上假定的效应子ropE)表达不佳。 rspC启动子受到更高级别的调控。调控基因在野生型和突变背景中的异位表达表明,RspR控制备用sigma因子rspL的转录,而RspL控制编码结构基因的基因簇的表达。 rspV的突变不会影响RspR介导的rspU的表达。在寻找其他调节剂时,发现了两个候选基因(一个在丙氨酸向丙酮酸的转化中起作用),这表明rsp的表达部分取决于细胞的代谢状态。 rsp调节剂的突变导致甜菜幼苗根尖竞争性定植显着减少,但也导致实验室生长的培养物的迟滞期显着增加,表明rsp调节基因在该功能中发挥了更重要的一般作用的 P。 SBW25荧光粉比以前赞赏。

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