群体感应
生物
铜绿假单胞菌
细菌
高丝氨酸
基因
微生物学
毒力
转录组
紫红色杆菌
假单胞菌
基因表达
生物化学
遗传学
作者
Roberto A. Bobadilla-Fazzini,Mette E. Skindersoe,Piotr Bielecki,Jacek Puchałka,Michael Givskov,Vítor A. P. Martins dos Santos
标识
DOI:10.1111/j.1462-2920.2012.02792.x
摘要
Summary Many Gram‐negative bacteria employ cell‐to‐cell communication mediated by N ‐acyl homoserine lactones (quorum sensing) to control expression of a wide range of genes including, but not limited to, genes encoding virulence factors. Outside the laboratory, the bacteria live in complex communities where signals may be perceived across species. We here present a newly found natural quorum sensing inhibitor, produced by the pseudomonads Pseudomonas sp. B13 and Pseudomonas reinekei MT1 as a blind end in the biodegradation of organochloride xenobiotics, which inhibits quorum sensing in P. aeruginosa in naturally occurring concentrations. This catabolite, 4‐methylenebut‐2‐en‐4‐olide, also known as protoanemonin, has been reported to possess antibacterial properties, but seems to have dual functions. Using transcriptomics and proteomics, we found that protoanemonin significantly reduced expression of genes and secretion of proteins known to be under control of quorum sensing in P. aeruginosa . Moreover, we found activation of genes and gene products involved in iron starvation response. It is thus likely that inhibition of quorum sensing, as the production of antibiotics, is a phenomenon found in complex bacterial communities.
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