Cafaro C, Bonomo M G, Salzano G
Dipartimento di Scienze, Università degli Studi della Basilicata, Potenza, Italy.
J Appl Microbiol. 2014 Jan;116(1):71-80. doi: 10.1111/jam.12351. Epub 2013 Oct 17.
The aim of this study was to investigate the effect of ethanol exposure on the expression level of geranylgeranyl pyrophosphate synthase gene involved in the metabolism of Oenococcus oeni to probe the mechanisms of ethanol tolerance correlated with adaptive changes.
The evaluation of ten potential internal control genes and the comparative study of their stability were performed to select the most stable internal controls for the normalization of expression data. The expression level analysis by qPCR and changes after exposure to ethanol stresses highlighted a significant increase in the presence of higher ethanol concentrations.
The analysis of results suggest that O. oeni adjusts the expression of genes to adapt to stress conditions and the high expression level of ggpps would allow a flow of isoprenoid precursors towards the carotenoids and related pathways to stabilize bacterial cell membranes, improving the cell membrane disturbances and preventing cell death induced by ethanol.
The involvement of ggpps gene in physiological changes of bacterial behaviour confirmed the exposure to stress requires the activation of defence mechanism to be more tolerant to adverse conditions. Improving the knowledge of stress tolerance and adaptation mechanisms of O. oeni is essential to enhance the efficiency of the malolactic starter in wine and to obtain the development of starters able to survive to direct inoculation with a large benefit for wine technology.
本研究旨在探究乙醇暴露对参与酒类酒球菌代谢的香叶基香叶基焦磷酸合酶基因表达水平的影响,以探究与适应性变化相关的乙醇耐受性机制。
对十个潜在的内参基因进行评估并比较其稳定性,以选择最稳定的内参用于表达数据的标准化。通过qPCR进行表达水平分析以及乙醇胁迫后的变化表明,在较高乙醇浓度下表达显著增加。
结果分析表明,酒类酒球菌会调整基因表达以适应胁迫条件,而ggpps的高表达水平会使类异戊二烯前体流向类胡萝卜素及相关途径,从而稳定细菌细胞膜,改善细胞膜紊乱并防止乙醇诱导的细胞死亡。
ggpps基因参与细菌行为的生理变化,证实了暴露于胁迫下需要激活防御机制以更耐受不利条件。提高对酒类酒球菌胁迫耐受性和适应机制的认识对于提高葡萄酒中苹果酸-乳酸发酵起始菌的效率以及开发能够直接接种后存活的起始菌至关重要,这将极大地造福葡萄酒技术。