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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Increased ethanol tolerance associated with the pntAB locus of Oenococcus oeni and Lactobacillus buchneri
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Increased ethanol tolerance associated with the pntAB locus of Oenococcus oeni and Lactobacillus buchneri

机译:增加与Oenococcus Oeni和Lactobacillus Buchneri的Pntab座位相关的乙醇耐受性

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摘要

Lactobacillus buchneri and Oenococcus oeni are two unique ethanol-tolerant Gram-positive bacteria species. Genome comparison analyses revealed that L. buchneri and O. oeni possess a pntAB locus that was absent in almost all other lactic acid bacteria (LAB) genomes. Our hypothesis is that the pntAB locus contributes to the ethanol tolerance trait of these two distinct ethanol-tolerant organisms. The pntAB locus, consisting of the pntA and pntB genes, codes for NADP(H) transhydrogenase subunits. This membrane-bound transhydrogenase catalyzes the reduction of NADP+ and is known as an important enzyme in maintaining cellular redox balance. In this study, the transhydrogenase operon from L. buchneri NRRL B-30929 and O. oeni PSU-1 were cloned and analyzed. The LbpntB shared 71.0% identity with the O. oeni (OopntB). The entire pntAB locus was expressed in Lactococcus lactis ssp. lactis IL1403 resulting in an increased tolerance to ethanol (6%), butanol (1.8%) and isopropanol (1.8%) when compared to the control strain. However, the recombinant E. coli cells carrying the entire pntAB locus did not show any improved ethanol tolerance. Independent expression of OopntB and LbpntB in recombinant E. coli BL21(DE3)pLysS host demonstrated higher tolerance to ethanol when compared with a control E. coli BL21(DE3)pLysS strain carrying pET28b vector. Ethanol tolerance comparison of E. coli strains carrying LbpntB and OopntB showed that LbpntB conferred higher ethanol tolerance (4.5%) and resulted in greater biomass, while the OopntB conferred lower ethanol tolerance (4.0%) resulted lower biomass. Therefore, the pntB gene from L. buchneri is a better choice in generating higher ethanol tolerance. This is the first study to uncover the role of pntAB locus on ethanol tolerance.
机译:Lactobacillus Buchneri和Oenococcus Oeni是两个独特的乙醇耐受革兰氏阳性细菌种类。基因组比较分析显示,L.Buchneri和O. OENi具有在几乎所有其他乳酸菌(实验室)基因组中缺席的PNTab基因座。我们的假设是PNTab基因座有助于这两个不同乙醇耐受性生物的乙醇耐受性。 PNTAB基因座,由PNTA和PNTB基因组成,NADP(H)转氢酶亚基的代码。该膜结合的转氢脱氢酶催化NADP +的还原,并且称为保持细胞氧化还原平衡的重要酶。在该研究中,克隆并分析了来自L.Buchneri NRRL B-30929和O. OENI PSU-1的转氢酶术术。 LBPNTB与O. OENI(OOPNTB)共享71.0%的身份。整个pntab基因座在乳酸乳酸乳乳杆菌ssp中表达。与对照菌株相比,乳酸IL1403导致对乙醇(6%),丁醇(1.8%)和异丙醇(1.8%)的耐受性增加。然而,携带整个Pntab基因座的重组大肠杆菌细胞未显示出任何改善的乙醇耐受性。与对照大肠杆菌BL21(DE3)帘布层菌株携带PET28B载体的对照大肠杆菌BL21(DE3)帘子宿主在重组大肠杆菌BL21(DE3)帘布层宿主中对乙醇的耐受性表现出更高的耐受性。携带LBPNTB和OOPNTB的大肠杆菌菌株的乙醇耐受比较表明,LBPNTB赋予较高的乙醇耐受性(4.5%)并导致更大的生物质,而OOPNTB赋予较低的乙醇耐受(4.0%)导致的低生物质。因此,来自L.Buchneri的PNTB基因是产生更高的乙醇耐受性的更好选择。这是第一项揭示PNTAB基因座对乙醇耐受性的作用的研究。

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