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Two Homologues of the Global Regulator Csr/Rsm Redundantly Control Phaseolotoxin Biosynthesis and Virulence in the Plant Pathogen

机译:全球调节剂CSR / RSM的两个同源物冗余控制植物病原体中的疗效毒素生物合成和毒力

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摘要

The widely conserved Csr/Rsm (carbon storage regulator/repressor of stationary-phase metabolites) post-transcriptional regulatory system controls diverse phenotypes involved in bacterial pathogenicity and virulence. Here we show that Pseudomonas amygdali pv. phaseolicola 1448A contains seven rsm genes, four of which are chromosomal. In RNAseq analyses, only rsmE was thermoregulated, with increased expression at 18 °C, whereas the antagonistic sRNAs rsmX1, rsmX4, rsmX5 and rsmZ showed increased levels at 28 °C. Only double rsmA-rsmE mutants showed significantly altered phenotypes in functional analyses, being impaired for symptom elicitation in bean, including in planta growth, and for induction of the hypersensitive response in tobacco. Double mutants were also non-motile and were compromised for the utilization of different carbon sources. These phenotypes were accompanied by reduced mRNA levels of the type III secretion system regulatory genes hrpL and hrpA, and the flagellin gene, fliC. Biosynthesis of the phytotoxin phaseolotoxin by mutants in rsmA and rsmE was delayed, occurring only in older cultures, indicating that these rsm homologues act as inductors of toxin synthesis. Therefore, genes rsmA and rsmE act redundantly, although with a degree of specialization, to positively regulate diverse phenotypes involved in niche colonization. Additionally, our results suggest the existence of a regulatory molecule different from the Rsm proteins and dependent on the GacS/GacA (global activator of antibiotic and cyanide production) system, which causes the repression of phaseolotoxin biosynthesis at high temperatures.
机译:广泛保守的CSR / RSM(碳储量稳压器/静态阶段代谢物的阻遏物)转录后调节系统控制了种植细菌致病性和毒力的不同表型。在这里,我们展示了amygdali pv。 phableolicola 1448a含有七个RSM基因,其中四种是染色体。在RNASEQ分析中,仅在18°C下进行RSME,在18°C下表达增加,而抗拮抗SRNASRMX1,RSMX4,RSMX5和RSMZ在28°C下显示出增加的水平。只有双RSMA-RSME突变体显示出在功能分析中显着改变的表型,豆类中症状引发的表型,包括在植物生长中,以及诱导烟草中过敏反应的诱导。双突变体也是非运动,并且妥协用于利用不同的碳源。这些表型伴随着III型分泌系统调节基因HRPL和HRPA的mRNA水平,以及鞭毛蛋白基因,FLIC。通过RSMA和RSME的突变体的植物毒素调直毒素的生物合成仅在较旧的培养物中发生,表明这些RSM同源物作​​为毒素合成的电感。因此,虽然具有一定程度的专业化,但仍然冗余地,基因rsma和rsme行动冗余,以积极调节参与利基殖民化的不同表型。此外,我们的结果表明,存在与RSM蛋白不同的调节分子,并依赖于GACS / GACA(全球抗生素和氰化物产生)系统,这导致在高温下抑制潜水毒素生物合成。

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