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Efficient fermentation of xylose to ethanol at high formic acid concentrations by metabolically engineered Saccharomyces cerevisiae

机译:通过代谢工程酿酒酵母将木糖在高甲酸浓度下高效发酵为乙醇

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Recombinant yeast strains highly tolerant to formic acid during xylose fermentation were constructed. Microarray analysis of xylose-fermenting Saccharomyces cerevisiae strain overexpressing endogenous xylulokinase in addition to xylose reductase and xylitol dehydrogenase from Pichia stipitis revealed that upregulation of formate dehydrogenase genes (FDH1 and FDH2) was one of the most prominent transcriptional events against excess formic acid. The quantification of formic acid in medium indicated that the innate activity of FDH was too weak to detoxify formic acid. To reinforce the capability for formic acid breakdown, the FDH1 gene was additionally overexpressed in the xylose-metabolizing recombinant yeast. This modification allowed the yeast to rapidly decompose excess formic acid. The yield and final ethanol concentration in the presence of 20 mM formic acid is as essentially same as that of control. The fermentation profile also indicated that the production of xylitol and glycerol, major by-products in xylose fermentation, was not affected by the upregulation of FDH activity.
机译:构建了在木糖发酵过程中高度耐受甲酸的重组酵母菌株。除木糖还原酶和木糖醇脱氢酶外,过表达内源性木酮糖激酶的酿酒酵母酿酒酵母菌株的微阵列分析表明,甲酸脱氢酶基因(FDH1和FDH2)的上调是针对过量甲酸的最主要的转录事件之一。培养基中甲酸的定量表明FDH的先天活性太弱,无法解毒甲酸。为了增强甲酸分解的能力,FDH1基因在木糖代谢重组酵母中另外过表达。这种修饰使酵母能够迅速分解过量的甲酸。在20 mM甲酸存在下的收率和最终乙醇浓度与对照基本相同。发酵曲线还表明,木糖发酵中主要副产物木糖醇和甘油的生产不受FDH活性上调的影响。

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