| Literature DB >> 26505308 |
Qingxia Zhang1, Qi Xiao2, Jingyou Xu2, Yunhui Tong2, Jia Wen3, Xijun Chen2, Lihui Wei4.
Abstract
A hybrid sensor kinase termed RetS (regulator of exopolysaccharide and Type III secretion) controls expression of numerous genes in Pseudomonas aeruginosa. To investigate the function of RetS in P. fluorescens FD6, the retS gene was disrupted. Genetic inactivation of retS resulted in enhanced production of 2, 4-diacetylphloroglucinol, pyrrolnitrin, and pyoluteorin. The retS mutant also exhibited significant increase in phlA-lacZ, prnA-lacZ, and pltA-lacZ transcription levels, influencing expression levels of the small regulatory RNAs RsmX and RsmZ. In the gacSretS double mutant, all the phenotypic changes caused by the retS deletion were reversed to the level of gacS single mutant. Furthermore, the retS mutation drastically elevated biofilm formation and improved the colonization ability of strain FD6 on wheat rhizospheres. Based on these results, we proposed that RetS negatively controlled the production of antibiotics through the Gac/Rsm pathway in P. fluorescens FD6.Entities:
Keywords: Antibiotics; Gac/Rsm; Pseudomonas; RetS
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Year: 2015 PMID: 26505308 DOI: 10.1016/j.micres.2015.07.005
Source DB: PubMed Journal: Microbiol Res ISSN: 0944-5013 Impact factor: 5.415