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RpoS Affects Gene Expression in Salmonella enterica serovar Typhi Under Early Hyperosmotic Stress

机译:RPO在早期高骨肉胁迫下影响沙门氏菌肠道肠道Typhi中的基因表达

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During the infectious procedure of Salmonella enterica serovar Typhi (S. Typhi), Salmonella would suffer from some severe environmental stresses, such as gastric acid stress, enteric hyperosmotic stress, bile acids stress, and oxidative stress. S. Typhi must regulate the expression of numerous genes through the complex regulatory network to adapt strict stresses. RpoS, which encodes sigma factor sigma(s), was reported to be a very important regulator in the maximal survival of enteric pathogens including S. enterica in the stress conditions. However, the role of RpoS in S. Typhi under early hyperosmotic stress is not clear. In this study, we prepared the RpoS-deleted mutant (a-(3)RpoS) and compared the growth of a-(3)RpoS and wild-type strain. In addition, we analyzed its global transcription profile under early hyperosmotic stress by a microarray. The results showed that a-(3)RpoS grew significantly slower than wild-type strain and 24 genes displayed differential expression between the wild-type strain and Delta RpoS upon 30-min exposure in the high osmolarity. Most of these genes are associated with enzymes of metabolism. Taken together, our study firstly demonstrated that RpoS affects gene expression in S. Typhi under early hyperosmotic stress and may impact the growth of bacteria by regulating bacterial metabolic enzymes.
机译:在沙门氏菌的传染性手术过程中,沙门氏菌会患有一些严重的环境压力,例如胃酸胁迫,肠溶浓度胁迫,胆汁酸应激和氧化应激。 S. Typhi必须通过复杂的监管网络调节许多基因的表达,以适应严格的应力。据报道,编码Sigma因子Sigma的RPO是一种非常重要的调节因子,其肠道病原体的最大存活率包括在压力条件下的S.肠道。然而,RPO在早期高血液胁迫下,RPO在S. Typhi中的作用尚不清楚。在该研究中,我们制备了RPOS缺失的突变体(A-(3)RPO)并比较了A-(3)RPO和野生型菌株的生长。此外,我们通过微阵列将其全局转录概况分析。结果表明,在高渗透性30分钟暴露于高渗透压时,A-(3)A-(3)RPO比野生型菌株和24个基因显示出野生型菌株和DELTA RPO之间的差异表达。大多数这些基因与代谢的酶有关。我们的研究一起参加了首先证明RPO在早期的高血白胁迫下影响S. Typhi中的基因表达,并且可以通过调节细菌代谢酶影响细菌的生长。

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