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首页> 外文期刊>Research in Microbiology >Characterization of a luxI/luxR-type quorum sensing system and N-acyl-homoserine lactone-dependent regulation of exo-enzyme and antibacterial component production in Serratia plymuthica RVH1.
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Characterization of a luxI/luxR-type quorum sensing system and N-acyl-homoserine lactone-dependent regulation of exo-enzyme and antibacterial component production in Serratia plymuthica RVH1.

机译:粘质沙雷氏菌RVH1的luxI / luxR型群体感应系统和N-酰基高丝氨酸内酯依赖的外切酶和抗菌成分生产的调节。

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摘要

Quorum sensing by means of N-acyl-l-homoserine lactones (AHLs) is widespread in Gram-negative bacteria, where diverse AHLs influence a wide variety of functions, even in a single genus such as Serratia. Here we report the identification and characterization of the quorum sensing system of Serratia plymuthica strain RVH1. This strain isolated from a raw vegetable processing line produces at least three AHLs which were identified as N-butanoyl- (C4-HSL), N-hexanoyl- (C6-HSL) and N-(3-oxo-hexanoyl)-homoserine lactone (3-oxo-C6-HSL). The identified LuxI homolog SplI synthesizes 3-oxo-C6-HSL, and influences the production of C4-HSL and C6-HSL, as splI gene inactivation resulted in loss of 3-oxo-C6-HSL production and smaller amounts of C4-HSL and C6-HSL produced. SplI-dependent quorum sensing controls 2,3-butanediol fermentation (previously reported) and the production of an extracellular chitinase, nuclease, protease and antibacterial compound. The identity of the latter is not yet elucidated, but appears to be different from the known antibacterial compounds produced by Serratia strains. SplR, the homolog of the LuxR regulator, appears to act as a repressor of synthesis of extracellular enzymes and antibacterial compound and to autorepress its own expression, probably by binding to a 21bp lux box sequence.
机译:借助N-酰基-1-高丝氨酸内酯(AHL)进行的群体感应在革兰氏阴性细菌中很普遍,在这里革兰氏阴性细菌会影响广泛的功能,甚至在沙雷氏菌等单个属中也是如此。在这里,我们报告鉴定和表征的沙雷氏菌Plumuthica株RVH1群体感应系统。从生菜生产线中分离出的该菌株产生至少三个AHL,分别被鉴定为N-丁酰基-(C4-HSL),N-己酰基-(C6-HSL)和N-(3-氧代-己酰基)-高丝氨酸内酯(3-氧代-C6-HSL)。鉴定的LuxI同源SplI合成了3-oxo-C6-HSL,并影响C4-HSL和C6-HSL的产生,因为splI基因失活导致3-oxo-C6-HSL产生的损失和少量的C4-HSL和生产的C6-HSL。 SplI依赖性群体感应控制2,3-丁二醇发酵(先前已报道)以及细胞外几丁质酶,核酸酶,蛋白酶和抗菌化合物的产生。后者的身份尚未阐明,但似乎与沙雷氏菌菌株产生的已知抗菌化合物不同。 SplR,LuxR调节剂的同源物,似乎充当细胞外酶和抗菌化合物合成的阻遏物,并可能通过与21bp lux盒序列结合而自动抑制其自身表达。

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