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A consolidated analysis of the physiologic and molecular responses induced under acid stress in the legume-symbiont model-soil bacterium Sinorhizobium meliloti

机译:综合分析在酸胁迫下豆科植物-共生体模型-土壤细菌苜蓿中华根瘤菌中诱导的生理和分子响应

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摘要

Abiotic stresses in general and extracellular acidity in particular disturb and limit nitrogen-fixing symbioses between rhizobia and their host legumes. Except for valuable molecular-biological studies on different rhizobia, no consolidated models have been formulated to describe the central physiologic changes that occur in acid-stressed bacteria. We present here an integrated analysis entailing the main cultural, metabolic, and molecular responses of the model bacterium Sinorhizobium meliloti growing under controlled acid stress in a chemostat. A stepwise extracellular acidification of the culture medium had indicated that S. meliloti stopped growing at ca. pH 6.0–6.1. Under such stress the rhizobia increased the O2 consumption per cell by more than 5-fold. This phenotype, together with an increase in the transcripts for several membrane cytochromes, entails a higher aerobic-respiration rate in the acid-stressed rhizobia. Multivariate analysis of global metabolome data served to unequivocally correlate specific-metabolite profiles with the extracellular pH, showing that at low pH the pentose-phosphate pathway exhibited increases in several transcripts, enzymes, and metabolites. Further analyses should be focused on the time course of the observed changes, its associated intracellular signaling, and on the comparison with the changes that operate during the sub lethal acid-adaptive response (ATR) in rhizobia.
机译:一般而言,非生物胁迫以及细胞外酸度尤其会扰乱并限制根瘤菌与其宿主豆类之间固氮共生。除了对不同的根瘤菌进行有价值的分子生物学研究外,还没有建立任何综合模型来描述在酸胁迫细菌中发生的主要生理变化。我们在这里提出了一个综合分析,该分析需要化学细菌在恒化器中受控酸胁迫下生长的模型细菌Sinorhizobium meliloti的主要文化,代谢和分子反应。培养基的逐步细胞外酸化表明,苜蓿链球菌在约200℃停止生长。 pH 6.0–6.1。在这种压力下,根瘤菌使每个细胞的O2消耗增加了5倍以上。这种表型,加上几种膜细胞色素的转录物的增加,在酸胁迫的根瘤菌中需要更高的有氧呼吸速率。全球代谢组数据的多变量分析可明确地将特定代谢物谱与细胞外pH相关联,表明在低pH值下,戊糖-磷酸途径显示出多种转录物,酶和代谢物的增加。进一步的分析应集中在观察到的变化的时间过程,其相关的细胞内信号传导以及与根瘤菌在亚致死酸适应性反应(ATR)期间发生的变化的比较上。

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