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首页> 外文期刊>Food microbiology >Quorum sensing asaI mutants affect spoilage phenotypes, motility, and biofilm formation in a marine fish isolate of Aeromonas salmonicida
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Quorum sensing asaI mutants affect spoilage phenotypes, motility, and biofilm formation in a marine fish isolate of Aeromonas salmonicida

机译:群体感应的asaI突变体影响鲑鱼气单胞菌的海水鱼类分离株的腐败表型,运动性和生物膜形成

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Microbial spoilage is associated with the regulation of quorum sensing (QS). A. salmonicida AE03 with QS mediated acylated homoserine lactones (AHLs) activity was isolated from spoiled large yellow croaker (Pseudosciaena crocea). In this study the activity and role of AHLs in spoilage phenotypes, motility and biofilm formation of AE03 were investigated. The strain AE03 could induce Chromobacterium violaceum CV026 to produce the violacein pigment both at 28 degrees C and 4 degrees C in a density-dependent manner. Five types of AHLs were detected in AE03 culture by LC-MS/MS analysis, and N-butanoyl-L-homoserine lactone (C-4-HSL) was a major signal molecule, reaching the highest concentration when incubated for 30 h at 28 degrees C. An asaI-mutant, constructed by a suicide plasmid, failed to produce short chain AHLs signal. Compared with wild type (WT) strain, the production of trimethylamine (TMA), biogenic amino and protease significantly increased in asaI-mutant during the exponential and stationary phase, while the growth rate did not differ. Swimming motility in asaI-mutant was comparatively stronger than that of WT strain, whereas, asaI-mutant resulted in the decrease of maturing biofilm. Furthermore, supplementation of exogenous C-4-HSL restored the production of spoilage metablites, protease and biofilm formation in mutant. In accordance with the effect of asaI deletion on the spoilage phenotypes and motility, asaI-mutant was showed to significantly up-regulate the transcript levels of torA, cadA and fliR, as well as asaR, indicating that C-4-HSL could be involved in the modulation of the spoilage related enzymes and flagella. Indeed, the asaI-mutant promoted the spoilage progress of fish fillets stored at 4 degrees C, while exogenous C-4-HSL repressed the sensory change and TVB-N accumulation. The present study highlighted that AsaI/C-4-HSL was an important regulator in spoilage, motility and biofilm formation of A. salmonicida, and spoilage potential was under the negative control of AsaI/AsaR-type system. (c) 2018 Elsevier Ltd. All rights reserved.
机译:微生物变质与群体感应(QS)的调节有关。从变质的大黄鱼(Pseudosciaena crocea)中分离出具有QS介导的酰化高丝氨酸内酯(AHLs)活性的沙门氏菌AE03。在这项研究中,研究了AHLs在AE03的腐败表型,运动性和生物膜形成中的活性和作用。菌株AE03可以在28℃和4℃下以密度依赖的方式诱导紫红色杆菌CV026产生紫红色素色素。通过LC-MS / MS分析在AE03培养物中检测到五种类型的AHL,N-丁酰-L-高丝氨酸内酯(C-4-HSL)是主要的信号分子,在28℃温育30小时时达到最高浓度由自杀质粒构建的asaI突变体未能产生短链AHLs信号。与野生型(WT)菌株相比,在指数期和固定期,asa突变体中三甲胺(TMA),生物氨基和蛋白酶的产生显着增加,而生长速率没有差异。 asaI突变体的游泳运动性相对于WT菌株强,而asaI突变体导致成熟的生物膜减少。此外,补充外源C-4-HSL可恢复突变体中腐败变质产物的产生,蛋白酶和生物膜的形成。根据asaI缺失对腐败表型和运动性的影响,显示asaI突变体可显着上调torA,cadA和fliR以及asaR的转录水平,表明C-4-HSL可能参与调节腐败相关酶和鞭毛。的确,asa-突变体促进了储存在4摄氏度的鱼片的腐败进程,而外源C-4-HSL抑制了感官变化和TVB-N积累。本研究强调,AsaI / C-4-HSL是鲑鱼曲霉变质,运动和生物膜形成的重要调节剂,变质潜能受AsaI / AsaR型系统的负调控。 (c)2018 Elsevier Ltd.保留所有权利。

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