International Centre for Genetic Engineering & Biotechnology, Trieste, ItalyInternational Centre for Genetic Engineering & Biotechnology, Biosafety Outstation, Ca'Tron, Treviso, ItalyUnité de Phytopathologie, Université catholique de Louvain, Louvain-la-Neuve, Belgium.
Environ Microbiol. 2011 Jan;13(1):145-162. doi: 10.1111/j.1462-2920.2010.02316.x.
Pseudomonas fuscovaginae is a Gram-negative fluorescent pseudomonad pathogenic towards several plant species. Despite its importance as a plant pathogen, no molecular studies of virulence have thus far been reported. In this study we show that P. fuscovaginae possesses two conserved N-acyl homoserine lactone (AHL) quorum sensing (QS) systems which we designated PfsI/R and PfvI/R. The PfsI/R system is homologous to the BviI/R system of Burkholderia vietnamiensis and produces and responds to C10-HSL and C12-HSL whereas PfvI/R is homologous to the LasI/R system of Pseudomonas aeruginosa and produces several long-chain 3-oxo-HSLs and responds to 3-oxo-C10-HSL and 3-oxo-C12-HSL and at high AHL concentrations can also respond to structurally different long-chain AHLs. Both systems were found to be negatively regulated by a repressor protein which was encoded by a gene located intergenically between the AHL synthase and LuxR-family response regulator. The pfsI/R system was regulated by a novel repressor designated RsaM while the pfvI/R system was regulated by both the RsaL repressor and by RsaM. The two systems are not transcriptionally hierarchically organized but share a common AHL response and both are required for plant virulence. Pseudomonas fuscovaginae has therefore a unique complex regulatory network composed of at least two different repressors which directly regulate the AHL QS systems and pathogenicity.
黄褐假单胞菌是一种革兰氏阴性荧光假单胞菌,对多种植物物种具有致病性。尽管它是一种重要的植物病原体,但迄今为止尚未报道其毒力的分子研究。在这项研究中,我们表明,黄褐假单胞菌拥有两个保守的 N-酰基高丝氨酸内酯(AHL)群体感应(QS)系统,我们将其命名为 PfsI/R 和 PfvI/R。PfsI/R 系统与越南伯克霍尔德菌的 BviI/R 系统同源,产生并响应 C10-HSL 和 C12-HSL,而 PfvI/R 与铜绿假单胞菌的 LasI/R 系统同源,产生几种长链 3-氧代-HSL,并响应 3-氧代-C10-HSL 和 3-氧代-C12-HSL,并且在高 AHL 浓度下也可以响应结构不同的长链 AHL。发现这两个系统都受到位于 AHL 合酶和 LuxR 家族响应调节剂之间的基因座间编码的抑制蛋白的负调控。pfsI/R 系统由一种新型的抑制蛋白 RsaM 调节,而 pfvI/R 系统由 RsaL 抑制剂和 RsaM 调节。这两个系统不是转录层次组织的,但共享一个共同的 AHL 响应,并且都需要植物毒力。因此,黄褐假单胞菌具有由至少两个直接调节 AHL QS 系统和致病性的不同抑制剂组成的独特的复杂调控网络。