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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Heterologous expression of the puuE puuE from Oenococcus oeni Oenococcus oeni SD‐2a in Lactobacillus plantarum Lactobacillus plantarum WCFS1 improves ethanol tolerance
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Heterologous expression of the puuE puuE from Oenococcus oeni Oenococcus oeni SD‐2a in Lactobacillus plantarum Lactobacillus plantarum WCFS1 improves ethanol tolerance

机译:来自Oenococcus Oeni Oenococcus Oeni SD-2a的异源表达来自乳杆菌植物乳杆菌植物乳杆菌WCFS1改善了乙醇耐受性

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Abstract Oenococcus oeni is the main bacteria extensively used in malolactic fermentation due to its high tolerance against stress factors in wine production. Among these, ethanol is one of the main challenges to O. oeni , and its ethanol tolerance mechanism remains unclear. In this study, the puuE gene related to ethanol tolerance from O. oeni SD‐2a was heterologously expressed in Lactobacillus plantarum WCFS1. Results showed that the recombinant strain (W‐pMG36e puuE ) exhibited better growth performance and survival rate compared to the control strain (W‐pMG36e) under ethanol‐stress conditions. In addition, it was found that the activities of superoxide dismutase and the concentration of glutathione of W‐pMG36e puuE were significantly higher than those of W‐pMG36e. This resulted in the decrease of intracellular reactive oxygen species (ROS) accumulation (10.34% lower than control). Moreover, heterologous expression of puuE in WCFS1 exhibited improved activities of two ATPases in membrane, increasing the cell membrane integrity (37.67% higher than control). These results revealed the role of the puuE gene in improving ethanol tolerance in O. oeni by decreasing ROS accumulation and enhancing cell membrane integrity.
机译:摘要Oenococcus Oeni是由于其葡萄酒生产中的耐受胁迫因素的高耐受性而广泛用于恶性发酵的主要细菌。其中,乙醇是对O. OENI的主要挑战之一,其乙醇耐受机制仍然不清楚。在该研究中,与O. OENI SD-2A的乙醇耐受相关的普及基因在乳酸杆菌WCFS1中异源地表达。结果表明,与乙醇 - 胁迫条件下的对照菌株(W-PMG36E)相比,重组菌株(W-PMG36E PVUE)与对照菌株(W-PMG36E)相比表现出更好的生长性能和存活率。此外,发现超氧化物歧化酶的活性和W-PMG36E普ue的谷胱甘肽浓度明显高于W-PMG36e的活性。这导致细胞内反应性氧(ROS)积累的降低(比对照低10.34%)。此外,WCFS1中的铅的异源表达表现出膜中的两个ATP酶的改善,增加细胞膜完整性(比对照37.67%)。这些结果揭示了普韦基因通过降低ROS积累和增强细胞膜完整性来改善O. OENI的乙醇耐受性的作用。

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