School of Life Science, University of Science and Technology of China, Hefei, Anhui 230027, PR China.
Institutes of Life Sciences, Anhui Medical University, Hefei, Anhui 230032, PR China.
Bioresour Technol. 2016 Sep;216:227-37. doi: 10.1016/j.biortech.2016.05.068. Epub 2016 May 21.
Engineered Kluyveromyces marxianus strains were constructed through over-expression of various transporters for simultaneous co-fermentation of glucose and xylose. The glucose was converted into ethanol, whereas xylose was converted into xylitol which has higher value than ethanol. Over-expressing xylose-specific transporter ScGAL2-N376F mutant enabled yeast to co-ferment glucose and xylose and the co-fermentation ability was obviously improved through increasing ScGAL2-N376F expression. The production of glycerol was blocked and acetate production was reduced by disrupting gene KmGPD1. The obtained K. marxianus YZJ119 utilized 120g/L glucose and 60g/L xylose simultaneously and produced 50.10g/L ethanol and 55.88g/L xylitol at 42°C. The yield of xylitol from consumed xylose was over 98% (0.99g/g). Through simultaneous saccharification and co-fermentation at 42°C, YZJ119 produced a maximal concentration of 44.58g/L ethanol and 32.03g/L xylitol or 29.82g/L ethanol and 31.72g/L xylitol, respectively, from detoxified or non-detoxified diluted acid pretreated corncob.
通过过表达各种转运蛋白,构建了工程化的克鲁维酵母菌株,以实现葡萄糖和木糖的共发酵。葡萄糖被转化为乙醇,而木糖被转化为木糖醇,其价值高于乙醇。过表达木糖特异性转运蛋白 ScGAL2-N376F 突变体能使酵母共发酵葡萄糖和木糖,并且通过增加 ScGAL2-N376F 的表达,共发酵能力明显提高。通过敲除基因 KmGPD1 阻断甘油的产生并减少乙酸的产生。获得的克鲁维酵母 YZJ119 同时利用 120g/L 葡萄糖和 60g/L 木糖,在 42°C 下生产 50.10g/L 乙醇和 55.88g/L 木糖醇。消耗的木糖转化为木糖醇的产率超过 98%(0.99g/g)。通过在 42°C 下同时糖化和共发酵,YZJ119 从解毒或未解毒的稀酸预处理玉米芯中分别产生了 44.58g/L 乙醇和 32.03g/L 木糖醇或 29.82g/L 乙醇和 31.72g/L 木糖醇的最大浓度。