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Complete genome sequence provides insights into the quorum sensing-related spoilage potential of Shewanella baltica 128 isolated from spoiled shrimp

机译:完整的基因组序列提供了与宠坏的虾分离的Shewanella Baltica 128的法定传感相关腐败潜力的见解

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Shewanella baltica 128 is a specific spoilage organism (SSO) isolated from the refrigerated shrimp that results in shrimp spoilage. This study reported the complete genome sequencing of this strain, with the primary annotations associated with amino acid transport and metabolism (8.66%), indicating that S. baltica 128 has good potential for degrading proteins. In vitro experiments revealed Shewanella baltica 128 could adapt to the stress conditions by regulating its growth and biofilm formation. Genes that related to the spoilage-related metabolic pathways, including trimethylamine metabolism (torT), sulfur metabolism (cysM), putrescine metabolism (speC), biofilm formation (rpoS) and serine protease production (degS), were identified. Genes (LuxS, pfs, LuxR and qseC) that related to the specific QS system were also identified. Complete genome sequence of S. baltica 128 provide insights into the QS-related spoilage potential, which might provide novel information for the development of new approaches for spoilage detection and prevention based on QS target.
机译:Shewanella Baltica 128是从冷藏虾中分离的特定腐败的生物(SSO),导致虾腐败。本研究报告了这种菌株的完全基因组测序,其与氨基酸输送和代谢相关的主要注释(8.66%),表明S.Baltica 128具有良好的降解蛋白质的潜力。体外实验揭示了Shewanella Baltica 128可以通过调节其生长和生物膜形成来适应应力条件。鉴定了与腐败相关的代谢途径有关的基因,包括三甲胺代谢(侵权),硫代谢(Cysm),Putrescine代谢(SPED),生物膜形成(RPO)和丝氨酸蛋白酶产生(DEGS)。还确定了与特定QS系统相关的基因(LUX,PFS,LUXR和QSEC)。 S. Baltica 128的完整基因组序列提供了与QS相关的腐败潜力的见解,这可能提供基于QS目标的腐败检测和预防方法的新颖的信息。

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