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Positive Regulation of Spoilage Potential and Biofilm Formation in Shewanella baltica OS155 via Quorum Sensing System Composed of DKP and Orphan LuxRs

机译:通过由DKP和孤立LuxRs组成的群体感应系统, Baltica OS155中腐败势和生物膜形成的正调控

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The spoilage potential and biofilm formation of Shewanella baltica are reported to be regulated by Quorum sensing (QS) system from the phenotype point of view, but the specific mechanism is not fully understood. In the present study, the QS autoinducers were detected by UHPLC-MS/MS, cell density-dependent luxR -type genes were obtained through autoregulation experiments among a series of candidates in S. baltica OS155 (The SSO of large yellow croaker). The direct interaction between cyclo-( L -Pro- L -Phe) (PP) and LuxR01 as well as LuxR02 proteins was revealed via in vitro binding assay. Deletion of luxR -type genes ( luxR01 and luxR02 ) impaired spoilage potential and biofilm formation of S. baltica OS155 in various degrees. Transcriptional analysis and qRT-PCR validation showed that spoilage and biofilm-related genes torS, speF , and pomA were down-regulated in luxR 01 and luxR 02 deletion strains. In addition, exogenous PP promoted spoilage potential and biofilm formation, which could be attenuated by luxR 01 or luxR 02 deletion. Our results revealed an explicit QS system employing PP as autoinducer and two orphan LuxRs as receptors which positively regulated spoilage capacity and biofilm formation via transcriptional regulation of corresponding genes in S. baltica OS155, which provides potential specific targets for seafood preservation involving QS system.
机译:据报道,从表型的角度来看,波罗的希瓦氏菌的腐败潜力和生物膜形成受群体感应(QS)系统的调节,但具体机理尚不完全清楚。在本研究中,通过UHPLC-MS / MS检测了QS自诱导物,通过自动调控实验在波罗的海OS OS155(大黄鱼的SSO)中的一系列候选物中获得了细胞密度依赖性luxR型基因。通过体外结合测定揭示了环-(L-Pro-L-Phe)(PP)与LuxR01以及LuxR02蛋白之间的直接相互作用。 luxR型基因(luxR01和luxR02)的缺失在不同程度上损害了波罗的海链球菌OS155的腐败潜力和生物膜形成。转录分析和qRT-PCR验证显示,在luxR 01和luxR 02缺失菌株中,腐败和与生物膜相关的基因torS,speF和pomA被下调。此外,外源PP促进了腐败的潜力和生物膜的形成,这可能被luxR 01或luxR 02缺失所减弱。我们的研究结果揭示了一个明确的QS系统,该系统使用PP作为自动诱导物,并使用两个孤儿LuxRs作为受体,通过波罗的海藻OS155中相应基因的转录调控来正向调节腐败能力和生物膜形成,从而为涉及QS系统的海产品保藏提供了潜在的特异性靶标。

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