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首页> 外文期刊>Applied and Environmental Microbiology >Salt Stress-Induced Changes in the Transcriptome, Compatible Solutes, and Membrane Lipids in the Facultatively Phototrophic Bacterium Rhodobacter sphaeroides
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Salt Stress-Induced Changes in the Transcriptome, Compatible Solutes, and Membrane Lipids in the Facultatively Phototrophic Bacterium Rhodobacter sphaeroides

机译:盐胁迫诱导的兼性光养细菌球形红球菌转录组,相容溶质和膜脂质的变化

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摘要

Responses to NaCl stress were investigated in phototrophically grown Alphaproteobacterium Rhodobacter sphaeroides by transcriptome profiling, mutational analysis, and measurements of compatible solutes and membrane phospholipids. After exposure to salt stress, genes encoding two putative glycine betaine uptake systems, proVWX and betS, were highly upregulated. Mutational analysis revealed that BetS, not ProVWX, was the primary transporter of this compatible solute. Upon the addition of salt, exogenous glycine betaine was taken up rapidly, and maximal intracellular levels were reached within minutes. In contrast, synthesis of another important compatible solute in R. sphaeroides, trehalose, increased slowly following salt stress, reaching maximal levels only after several hours. This accumulation pattern was consistent with the more gradual increase in salt-induced transcription of the trehalose biosynthesis operon otsBA. Several genes encoding putative transcription factors were highly induced by salt stress. Multiple copies of one of these factors, crpO (RSP1275), whose product is a member of the cyclic AMP receptor protein/fumarate and nitrate reduction regulator (CRP/FNR) family, improved NaCl tolerance. When crpO was provided in multicopy, expression of genes for synthesis or transport of compatible solutes was unaltered, but the membrane phospholipid composition became biased toward that found in salt-stressed cells. Collectively, this study characterized transcriptional responses to salt stress, correlated changes in transcription with compatible solute accumulation rates, identified the main glycine betaine transporter and trehalose synthase, characterized salt-induced changes in phospholipid composition, and uncovered a transcription factor associated with changes in phospholipids. These findings set the stage for deciphering the salt stress-responsive regulatory network in R. sphaeroides.
机译:通过转录组谱分析,突变分析以及相容性溶质和膜磷脂的测定,研究了光养生长的球形变形杆菌Rhodobacter sphaeroides对NaCl胁迫的反应。暴露于盐胁迫后,编码两个假定的甘氨酸甜菜碱摄取系统proVWX和betS的基因高度上调。突变分析显示,BetS而非ProVWX是这种相容性溶质的主要转运蛋白。加入盐后,迅速吸收了外源甘氨酸甜菜碱,并在数分钟内达到了最大的细胞内水平。相反,在盐胁迫下,球形红球菌中另一种重要的相容性溶质海藻糖的合成缓慢增加,仅在数小时后达到最高水平。这种积累模式与盐诱导的海藻糖生物合成操纵子otsBA的转录逐渐增加是一致的。盐胁迫高度诱导了几种编码推定转录因子的基因。这些因子之一crpO(RSP1275)的多个副本提高了NaCl耐受性,其产物是环状AMP受体蛋白/富马酸酯和硝酸盐还原调节剂(CRP / FNR)家族的成员。当提供多拷贝的crpO时,用于合成或运输相容性溶质的基因的表达没有改变,但是膜磷脂成分却偏向于在盐胁迫细胞中发现。总的来说,这项研究表征了对盐胁迫的转录反应,将转录变化与相容的溶质积累速率相关联,鉴定了主要的甘氨酸甜菜碱转运蛋白和海藻糖合酶,表征了盐诱导的磷脂成分变化,并揭示了与磷脂变化相关的转录因子。这些发现为破译红球菌中的盐胁迫响应性调控网络奠定了基础。

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