Institute of Ecological Chemistry, Helmholtz Zentrum München, Neuherberg, Germany.
FEMS Microbiol Ecol. 2010 Apr;72(1):22-34. doi: 10.1111/j.1574-6941.2009.00828.x. Epub 2010 Jan 10.
The biocontrol strain Pseudomonas putida IsoF, which was isolated from a tomato rhizosphere, is a known N-acyl-homoserine lactone (AHL) producer with only one LuxI/LuxR-like quorum-sensing (QS) system. The production and degradation of AHLs were analysed in different growth phases of the bacterium. Using the analytical tools of ultra performance liquid chromatography and high resolution MS, it was possible to determine not only the various AHLs synthesized over time but also their degradation products. 3-oxo-decanoyl-homoserine lactone was found to be the dominant AHL, which reached its maximum in the early logarithmic growth phase. Although the pH of the medium was neutral, the AHLs were degraded thereafter rapidly to the corresponding homoserines and other metabolites. The proposed lactonase gene of P. putida IsoF could not be identified, because it is apparently quite different from hitherto described lactonases. The analytical data were used to calculate the rates and thresholds of AHL production by mathematical modelling, allowing quantitative predictions and a further understanding of the QS-based regulations in this bacterium. This study, combining microbiological, chemical and mathematical approaches, suggests that AHL degradation is an integral part of the whole autoinducer circuit of P. putida IsoF.
从番茄根际中分离得到的生防菌株 Pseudomonas putida IsoF 是一种已知的 N-酰基高丝氨酸内酯(AHL)产生菌,它只有一个 LuxI/LuxR 样群体感应(QS)系统。在细菌的不同生长阶段分析了 AHL 的产生和降解。使用超高效液相色谱和高分辨 MS 分析工具,不仅可以确定随时间合成的各种 AHL,还可以确定它们的降解产物。发现 3-氧代-癸酰基高丝氨酸内酯是主要的 AHL,它在对数早期生长阶段达到最大值。尽管培养基的 pH 值为中性,但此后 AHL 迅速降解为相应的高丝氨酸和其他代谢物。由于与迄今描述的内酯酶明显不同,因此无法识别 P. putida IsoF 的拟内酯酶基因。分析数据用于通过数学建模计算 AHL 产生的速率和阈值,从而可以进行定量预测,并进一步了解该细菌中基于 QS 的调控。这项结合微生物学、化学和数学方法的研究表明,AHL 降解是 P. putida IsoF 整个自体诱导回路的一个组成部分。