Department of Microbiology, University of Manitoba, Winnipeg, MB, Canada.
Department of Plant Science, University of Manitoba, Winnipeg, MB, Canada.
Microbiology (Reading). 2012 Jan;158(Pt 1):207-216. doi: 10.1099/mic.0.053082-0. Epub 2011 Oct 20.
The stringent response (SR) is a regulatory mechanism that enables bacteria to adapt to nutrient stress through the production of the alarmone (p)ppGpp. The aim of the current study was to understand how the SR affects the antifungal (AF) activity of Pseudomonas chlororaphis PA23. Two SR mutants were generated, PA23relA and PA23relAspoT, that no longer produced (p)ppGpp. Both mutants exhibited increased inhibition of Sclerotinia sclerotiorum in vitro and elevated pyrrolnitrin (PRN), lipase and protease production. Phenazine (PHZ) levels, on the other hand, remained unchanged. Through transcriptional fusion analysis we discovered that prnA-lacZ (PRN) activity was increased in the SR mutants, whereas phzA-lacZ (PHZ) activity was equal to that of the wild-type. We also examined how the sigma factor RpoS impacts PA23-mediated antagonism. Similar to the SR mutants, an rpoS mutant of PA23, called PA23rpoS, exhibited enhanced AF activity in vitro and increased expression of PRN, protease and lipase. However, PHZ production and expression of phzA-lacZ were dramatically reduced. Consistent with what has been reported for other bacteria, the SR exerted positive control over rpoS expression. In addition, providing rpoS in trans restored the SR phenotype to that of the wild-type. Collectively, our findings indicate that this global stress response impacts production of PA23 AF compounds via regulation of rpoS transcription and has an overall negative influence on S. sclerotiorum antagonism.
严格反应(SR)是一种调节机制,使细菌能够通过产生警报素(p)ppGpp 来适应营养压力。本研究的目的是了解 SR 如何影响假单胞菌 Chlororaphis PA23 的抗真菌(AF)活性。生成了两个不再产生(p)ppGpp 的 SR 突变体,PA23relA 和 PA23relAspoT。这两个突变体在体外对核盘菌的抑制作用增强,并且吡咯菌素(PRN)、脂肪酶和蛋白酶的产量增加。另一方面,吩嗪(PHZ)水平保持不变。通过转录融合分析,我们发现 prnA-lacZ(PRN)活性在 SR 突变体中增加,而 phzA-lacZ(PHZ)活性与野生型相同。我们还研究了 sigma 因子 RpoS 如何影响 PA23 介导的拮抗作用。与 SR 突变体相似,PA23 的 rpoS 突变体 PA23rpoS 在体外表现出增强的 AF 活性,并且 PRN、蛋白酶和脂肪酶的表达增加。然而,PHZ 产量和 phzA-lacZ 的表达显著降低。与其他细菌的报道一致,SR 对 rpoS 表达施加正调控。此外,提供 rpoS 可以使 SR 表型恢复为野生型。总的来说,我们的研究结果表明,这种全局应激反应通过调节 rpoS 转录对 PA23 AF 化合物的产生产生影响,并对核盘菌的拮抗作用产生整体负面影响。