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首页> 外文期刊>Research in Microbiology >A quorum-quenching approach to identify quorum-sensing-regulated functions in Azospirillum lipoferum.
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A quorum-quenching approach to identify quorum-sensing-regulated functions in Azospirillum lipoferum.

机译:一种群体猝灭方法,用于鉴定脂杆螺旋藻中群体感应调节的功能。

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摘要

A quorum-quenching approach was exploited in order to identify functions regulated by quorum-sensing (QS) in the plant growth-promoting bacterium Azospirillum lipoferum. The AttM lactonase from Agrobacterium tumefaciens was shown to enzymatically inactivate N-acyl homoserine lactones (AHLs) produced by two A. lipoferum strains. The targeted analysis of several phenotypes revealed that in strain B518, a rice endophyte, AHL inactivation abolished pectinase activity, increased siderophore synthesis and reduced indoleacetic acid production (in stationary phase) but no effect was observed on cellulase activity or on swimming and swarming motilities. None of the tested phenotypes appeared to be under QS regulation in strain TVV3 isolated from the rice rhizosphere. Moreover, AHL inactivation had no deleterious effect on the phytostimulatory effect of the two strains in vitro. A global proteomic approach revealed little modification of protein patterns when comparing attM-expressing TVV3 and the wild-type strain, but numerous proteins appeared to be regulated by the AHL-mediated QS system in strain B518. Several proteins identified by MS-MS analysis were revealed to be implicated in transport (such as OmaA) and chemotaxis (ChvE). Altogether, the results indicate that in A. lipoferum, QS regulation is strain-specific and is dedicated to regulating functions linked to rhizosphere competence and adaptation to plant roots.
机译:利用群体猝灭方法来鉴定在促进植物生长的细菌脂氮螺旋藻中群体感应(QS)调控的功能。来自根癌农杆菌的AttM内酯酶显示出使两种脂肪铁杆菌菌株产生的N-酰基高丝氨酸内酯(AHL)酶促失活。对几种表型的针对性分析显示,在菌株B518中,一种水稻内生菌,AHL失活消除了果胶酶的活性,增加了铁载体的合成,减少了吲哚乙酸的产生(在固定相中),但未观察到对纤维素酶活性或游泳和成群运动的影响。从水稻根际分离的TVV3菌株中没有一个受测表型受QS调控。此外,AHL灭活对两种菌株的体外植物刺激作用均无有害作用。比较表达attM的TVV3和野生型菌株时,全球蛋白质组学方法显示蛋白质模式几乎没有修饰,但菌株B518中的AHL介导的QS系统似乎调节了许多蛋白质。通过MS-MS分析鉴定出的几种蛋白质显示与运输(例如OmaA)和趋化性(ChvE)有关。总而言之,结果表明在脂铁曲霉中,QS调节是菌株特异性的,并且致力于调节与根际能力和对植物根的适应有关的功能。

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