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首页> 外文期刊>Journal of Biotechnology >Reduction of glycerol production to improve ethanol yield in an engineered Saccharomyces cerevisiae using glycerol as a substrate
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Reduction of glycerol production to improve ethanol yield in an engineered Saccharomyces cerevisiae using glycerol as a substrate

机译:在以甘油为底物的工程酿酒酵母中减少甘油产量以提高乙醇产量

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Ethanol plays an important role in substituting the increasingly limited oil as the high-value, renewable fuel. In our previous studies, we successfully established the conversion of glycerol to ethanol by overexpression of pGcyaDak with pGup1Cas in Saccharomyces cerevisiae. In addition to increasing ethanol production using glycerol as substrate, we minimized the synthesis of glycerol, which is the main by-product in ethanol fermentation processing. The glycerol production pathway was impaired by deletion of the genes FPS1 and GPD2. Strains deleted for both FPS1 and GPD2 reduce glycerol production and become highly sensitive to osmotic stress. We provide osmotic protection in YPH499fps1 Delta gpd2 Delta by overexpression of Gup1. In this study, S. cerevisiae using glycerol as substrate was modified through one-step gene disruption for redirection of glycerol carbon flux into ethanol by the deletion of two glycerol production genes, FPS1 and GPD2. The overall ethanol production in the modified strain YPH499fps1 Delta gpd2 Delta (pGcyaDak, pGupCas) was about 4.4gla degree 1. These results demonstrate the possibility of providing protection against osmotic stress while simultaneously increasing ethanol and reducing glycerol production in S. cerevisiae strains using glycerol as a carbon source.
机译:乙醇在取代日益受限的石油作为高价值可再生燃料方面发挥着重要作用。在我们以前的研究中,我们成功地通过在酿酒酵母中用pGup1Cas过量表达pGcyaDak来建立甘油到乙醇的转化。除了使用甘油作为底物提高乙醇产量外,我们还最大限度地减少了甘油的合成,甘油是乙醇发酵过程中的主要副产物。甘油生产途径因基因FPS1和GPD2的缺失而受损。 FPS1和GPD2缺失的菌株减少了甘油的产生,并且对渗透压高度敏感。我们通过过表达Gup1在YPH499fps1 Delta gpd2 Delta中提供渗透保护。在这项研究中,通过删除两个甘油生产基因FPS1和GPD2,通过一步基因破坏将甘油碳通量重新定向到乙醇中,对以甘油为底物的酿酒酵母进行了修饰。改良菌株YPH499fps1 Delta gpd2 Delta(pGcyaDak,pGupCas)中的总乙醇产量约为4.4gla 1。作为碳源。

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