首页> 外文期刊>Microbiology >An extracytoplasmic function sigma factor cotranscribed with its cognate anti-sigma factor confers tolerance to NaCl, ethanol and methylene blue in Azospirillum brasilense Sp7
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An extracytoplasmic function sigma factor cotranscribed with its cognate anti-sigma factor confers tolerance to NaCl, ethanol and methylene blue in Azospirillum brasilense Sp7

机译:具有其同源抗Σ因素的外晶函数Sigma因子赋予NaCl,乙醇和亚甲基蓝色的耐受性,在Azospirillum Brasilense SP7中的耐受性

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Azospirillum brasilense, a plant-growth-promoting rhizobacterium, is exposed to changes in its abiotic environment, including fluctuations in temperature, salinity, osmolarity, oxygen concentration and nutrient concentration, in the rhizosphere and in the soil. Since extra-cytoplasmic function (ECF) sigma factors play an important role in stress adaptation, we analysed the role of ECF sigma factor (also known as RpoE or σE) in abiotic stress tolerance in A. brasilense. An in-frame rpoE deletion mutant of A. brasilense Sp7 was carotenoidless and slow-growing, and was sensitive to salt, ethanol and methylene blue stress. Expression of rpoE in the rpoE deletion mutant complemented the defects in growth, carotenoid biosynthesis and sensitivity to different stresses. Based on data from reverse transcriptase-PCR, a two-hybrid assay and a pull-down assay, we present evidence that rpoE is cotranscribed with chrR and the proteins synthesized from these two overlapping genes interact with each other. Identification of the transcription start site by 5′ rapid amplification of cDNA ends showed that the rpoE–chrR operon was transcribed by two promoters. The proximal promoter was less active than the distal promoter, whose consensus sequence was characteristic of RpoE-dependent promoters found in alphaproteobacteria. Whereas the proximal promoter was RpoE-independent and constitutively expressed, the distal promoter was RpoE-dependent and strongly induced in response to stationary phase and elevated levels of ethanol, salt, heat and methylene blue. This study shows the involvement of RpoE in controlling carotenoid synthesis as well as in tolerance to some abiotic stresses in A. brasilense, which might be critical in the adaptation, survival and proliferation of this rhizobacterium in the soil and rhizosphere under stressful conditions.
机译:Azospirillum Brasilense,一种植物生长促进的根茎杆菌,暴露于非生物环境的变化,包括在根际和土壤中的温度,盐度,渗透压,氧气浓度和养分和营养浓度的波动。由于细胞质功能(ECF)Sigma因素在应激适应中发挥着重要作用,我们分析了ECF Sigma因子(也称为RPOE或ΣE)在A. Brasilense中的非生物胁迫耐受性的作用。 A.Brasilense SP7的框架RPOE缺失突变体是类胡萝卜素和生长缓慢的,并且对盐,乙醇和亚甲基蓝色应力敏感。 RPOE缺失突变体中RPOE的表达互补了生长,类胡萝卜素生物合成和对不同应力的敏感性。基于来自逆转录酶-PCR的数据,双杂化测定和下拉测定,我们提出了用CHRR和从这两个重叠基因合成的蛋白质与CHRR和蛋白质相互作用的证据。转录开始部位的鉴定通过5'CDNA末端的快速扩增显示RPOE-CHRR操纵子被两个启动子转录。近端启动子比远端启动子较小,其共有序列是在αproteobacteria中发现的RPOE依赖性启动子的特征。虽然近端启动子是RPOE的独立性和组成型表达,但远端启动子是RPOE依赖性的,并且响应固定相和升高水平的乙醇,盐,热和亚甲基蓝而强烈诱导。该研究表明RPOE在控制类胡萝卜素合成中的累积以及对A的一些非生物胁迫的耐受性,这在压力条件下,在土壤和根际的这种根瘤菌的适应,存活率和增殖中可能是至关重要的。

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