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Transcriptome Profiling of Shewanella oneidensis Gene Expression following Exposure to Acidic and Alkaline pH†

机译:暴露于酸性和碱性pH下的沙瓦氏假单胞菌基因表达的转录组分析†

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摘要

The molecular response of Shewanella oneidensis MR-1 to variations in extracellular pH was investigated based on genomewide gene expression profiling. Microarray analysis revealed that cells elicited both general and specific transcriptome responses when challenged with environmental acid (pH 4) or base (pH 10) conditions over a 60-min period. Global responses included the differential expression of genes functionally linked to amino acid metabolism, transcriptional regulation and signal transduction, transport, cell membrane structure, and oxidative stress protection. Response to acid stress included the elevated expression of genes encoding glycogen biosynthetic enzymes, phosphate transporters, and the RNA polymerase sigma-38 factor (rpoS), whereas the molecular response to alkaline pH was characterized by upregulation of nhaA and nhaR, which are predicted to encode an Na+/H+ antiporter and transcriptional activator, respectively, as well as sulfate transport and sulfur metabolism genes. Collectively, these results suggest that S. oneidensis modulates multiple transporters, cell envelope components, and pathways of amino acid consumption and central intermediary metabolism as part of its transcriptome response to changing external pH conditions.
机译:基于全基因组基因表达谱研究了Shewanella oneidensis MR-1对细胞外pH变化的分子响应。微阵列分析显示,当在60分钟的时间内被环境酸(pH 4)或碱(pH 10)条件挑战时,细胞会引发一般和特定的转录组反应。总体反应包括与氨基酸代谢,转录调节和信号转导,转运,细胞膜结构和氧化应激保护功能相关的基因的差异表达。对酸胁迫的反应包括编码糖原生物合成酶,磷酸盐转运蛋白和RNA聚合酶sigma-38因子(rpoS)的基因的表达升高,而对碱性pH的分子反应的特征是nhaA和nhaR的上调,这预计会分别编码Na + / H +反转运蛋白和转录激活因子,以及硫酸盐转运和硫代谢基因。总的来说,这些结果表明,沙门氏菌调节多种转运蛋白,细胞包膜成分以及氨基酸消耗和中央中间代谢的途径,作为其转录组对变化的外部pH条件的反应的一部分。

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