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Effects of deletion of glycerol-3-phosphate dehydrogenase and glutamate dehydrogenase genes on glycerol and ethanol metabolism in recombinant Saccharomyces cerevisiae

机译:重组酿酒酵母中3-磷酸甘油脱氢酶和谷氨酸脱氢酶基因的缺失对甘油和乙醇代谢的影响

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摘要

Bioethanol is currently used as an alternative fuel for gasoline worldwide. For economic production of bioethanol by Saccharomyces cerevisiae, formation of a main by-product, glycerol, should be prevented or minimized in order to reduce a separation cost of ethanol from fermentation broth. In this study, S. cerevisiae was engineered to investigate the effects of the sole and double disruption of NADH-dependent glycerol-3-phosphate dehydrogenase 1 (GPD1) and NADPH-requiring glutamate dehydrogenase 1 (GDH1) on the production of glycerol and ethanol from glucose. Even though sole deletion of GPD1 or GDH1 reduced glycerol production, double deletion of GPD1 and GDH1 resulted in the lowest glycerol concentration of 2.31 g/L, which was 46.4% lower than the wild-type strain. Interestingly, the recombinant S. cerevisiae AGPD1AGDH1 strain showed a slight improvement in ethanol yield (0.414 g/g) compared with the wild-type strain (0.406 g/g). Genetic engineering of the glycerol and glutamate metabolic pathways modified NAD(P)H-requir-ing metabolic pathways and exerted a positive effect on glycerol reduction without affecting ethanol production.
机译:目前,生物乙醇在全球范围内被用作汽油的替代燃料。为了通过酿酒酵母经济地生产生物乙醇,应防止或最小化主要副产物甘油的形成,以降低从发酵液中分离乙醇的成本。在这项研究中,酿酒酵母被设计来研究NADH依赖性甘油-3-磷酸甘油脱氢酶1(GPD1)和NADPH需要谷氨酸脱氢酶1(GDH1)的唯一和双重破坏对甘油和乙醇生产的影响。从葡萄糖。尽管仅删除GPD1或GDH1会降低甘油的产生,但重复删除GPD1和GDH1会导致最低的甘油浓度为2.31 g / L,比野生型菌株低46.4%。有趣的是,与野生型菌株(0.406 g / g)相比,重组酿酒酵母AGPD1AGDH1菌株的乙醇收率(0.414 g / g)略有提高。甘油和谷氨酸代谢途径的遗传工程修饰了需要NAD(P)H的代谢途径,并在不影响乙醇产量的前提下对甘油的还原产生了积极作用。

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