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Acyl-homoserine-lactones receptor LuxR of Shewanella baltica involved in the development of microbiota and spoilage of refrigerated shrimp

机译:波氏希瓦氏菌的酰基-高丝氨酸-内酯受体LuxR参与微生物种群的发展和冷藏虾的腐败

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摘要

Numerous bacterial species utilize quorum sensing molecules acyl-homoserine-lactones (AHLs) to communicate, however, crosstalk often complicates the dynamics and behaviors of mixed populations. In this study, we developed a luxR mutant of wild type Shewanella baltica SA03 (WT SA03), and aimed to investigate the role of S. baltica LuxR (AHLs receptor) involved in the spoilage of refrigerated shrimp (Litopenaeus vannamei) by inoculating WT SA03 and luxR mutant of S. baltica SA03 (ΔluxR SA03), respectively. The results indicated the maximum growth rate of total viable bacteria in shrimp inoculated with ΔluxR SA03 was 73.34% lower than that of WT SA03. The lag time of total bacteria in shrimp treated with ΔluxR SA03 were 87.6 h, significantly longer than that of WT SA03. Meanwhile, the total volatile basic nitrogen concentrations of shrimp treated with WT SA03 were significantly higher than that of ΔluxR SA03 after 2 days of storage, which were in agreement with the decrease of the content of AHLs of the shrimp. The results indicated S. baltica might utilize AHLs produced by other bacteria and accelerate the shrimp spoilage process through LuxR receptor system.
机译:许多细菌物种利用群体感应分子酰基-高丝氨酸-内酯(AHL)进行交流,但是,串扰通常会使混合种群的动态和行为复杂化。在这项研究中,我们开发了野生型波罗的海波氏假单胞菌SA03(WT SA03)的luxR突变体,旨在通过接种WT SA03来研究波罗的链球菌LuxR(AHLs受体)在冷藏虾(凡纳滨对虾)变质中的作用。沙门氏菌SA03的luxR和luxR突变体(ΔluxRSA03)。结果表明,接种ΔluxRSA03的虾中总存活细菌的最大生长速率比WT SA03低73.34%。用ΔluxRSA03处理的虾中总细菌的滞后时间为87.6h,明显长于WT SA03的滞后时间。同时,用WT SA03处理的虾在储存2天后的总挥发性碱性氮浓度显着高于ΔluxRSA03,这与虾的AHLs含量降低是一致的。结果表明,波罗的海藻可能利用其他细菌产生的AHL并通过LuxR受体系统加速虾变质过程。

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