Simultaneous fermentation of glucose and xylose at elevated temperatures co-produces ethanol and xylitol through overexpression of a xylose-specific transporter in engineered Kluyveromyces marxianus
•A glucose–xylose simultaneous co-fermentation K. marxianus strain was constructed.•Higher value product xylitol was produced from xylose instead of ethanol.•More than 98% yield of xylitol was achieved through co-fermentation.•Strain YZJ119 efficiently produced xylitol & ethanol at 42°C through...
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Veröffentlicht in: | Bioresource technology 2016-09, Vol.216, p.227-237 |
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Sprache: | eng |
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Zusammenfassung: | •A glucose–xylose simultaneous co-fermentation K. marxianus strain was constructed.•Higher value product xylitol was produced from xylose instead of ethanol.•More than 98% yield of xylitol was achieved through co-fermentation.•Strain YZJ119 efficiently produced xylitol & ethanol at 42°C through corncob SSCF.
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. |
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ISSN: | 0960-8524 1873-2976 |
DOI: | 10.1016/j.biortech.2016.05.068 |