Liu Xiaoguang, Bimerew Mohammed, Ma Yingxin, Müller Henry, Ovadis Marianna, Eberl Leo, Berg Gabriele, Chernin Leonid
Institute of Life Sciences, Jiangsu University, Zhenjiang, Jiangsu, China.
FEMS Microbiol Lett. 2007 May;270(2):299-305. doi: 10.1111/j.1574-6968.2007.00681.x. Epub 2007 Mar 13.
One mechanism that bacteria have adopted to regulate the production of antimicrobial compounds is population-density-dependent LuxRI-type quorum sensing (QS), exploiting the production of N-acyl homoserine lactone (AHL) autoinducer signals. In biocontrol bacteria, most known cases involve the AHL control of phenazine antibiotics production by rhizospheric pseudomonads. This work is the first to demonstrate that phenazines are not the only group of biocontrol-related antibiotics whose production is regulated by QS systems. Strain HRO-C48 of Serratia plymuthica isolated from the rhizosphere of oilseed rape and described as a chitinolytic bacterium, which protects crops against Verticillium wilt, was also shown to produce wide-range antibiotic pyrrolnitrin and several AHLs, including N-butanoyl-HSL, N-hexanoyl-HSL and N-3-oxo-hexanoyl-HSL (OHHL). The genes splI and splR, which are analogues of luxI and luxR genes from other Gram-negative bacteria, were cloned and sequenced. The mutant AHL-4 (splI::miniTn5) was simultaneously deficient in the production of AHLs and pyrrolnitrin, as well as in its ability to suppress the growth of several fungal plant pathogens in vitro. However, pyrrolnitrin production could be restored in this mutant by introduction of the splIR genes cloned into a plasmid or by addition of the conditioned medium from strain C48 or OHHL standard to the growth medium.
细菌用来调节抗菌化合物产生的一种机制是群体密度依赖性的LuxRI型群体感应(QS),利用N-酰基高丝氨酸内酯(AHL)自诱导信号的产生。在生物防治细菌中,大多数已知案例涉及根际假单胞菌对吩嗪类抗生素产生的AHL控制。这项工作首次证明,吩嗪并不是唯一一类其产生受QS系统调控的与生物防治相关的抗生素。从油菜根际分离出的粘质沙雷氏菌菌株HRO-C48被描述为一种几丁质分解细菌,它能保护作物免受黄萎病侵害,该菌株还被证明能产生广谱抗生素吡咯菌素和几种AHL,包括N-丁酰-HSL、N-己酰-HSL和N-3-氧代己酰-HSL(OHHL)。克隆并测序了与其他革兰氏阴性菌的luxI和luxR基因类似的splI和splR基因。突变体AHL-4(splI::miniTn5)在AHL和吡咯菌素的产生以及体外抑制几种真菌植物病原体生长的能力方面同时存在缺陷。然而,通过将克隆到质粒中的splIR基因导入该突变体,或者向生长培养基中添加来自菌株C48的条件培养基或OHHL标准品,可以恢复吡咯菌素的产生。