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Enhanced ethanol production from industrial lignocellulose hydrolysates by a hydrolysate-cofermenting Saccharomyces cerevisiae strain

机译:通过水解产物发酵酿酒酵母菌株提高工业木质纤维素水解产物的乙醇生产

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摘要

Industrial production of lignocellulosic ethanol requires a microorganism utilizing both hexose and pentose, and tolerating inhibitors. In this study, a hydrolysate-cofermenting Saccharomyces cerevisiae strain was obtained through one step in vivo DNA assembly of pentose-metabolizing pathway genes, followed by consecutive adaptive evolution in pentose media containing acetic acid, and direct screening in biomass hydrolysate media. The strain was able to coferment glucose and xylose in synthetic media with the respective maximal specific rates of glucose and xylose consumption, and ethanol production of 3.47, 0.38 and 1.62g/gDW/h, with an ethanol titre of 41.07g/L and yield of 0.42g/g. Industrial wheat straw hydrolysate fermentation resulted in maximal specific rates of glucose and xylose consumption, and ethanol production of 2.61, 0.54 and 1.38g/g DW/h, respectively, with an ethanol titre of 54.11g/L and yield of 0.44g/g. These are among the best for wheat straw hydrolysate fermentation through separate hydrolysis and cofermentation.
机译:木质纤维素乙醇的工业生产需要同时利用己糖和戊糖以及耐受性抑制剂的微生物。在这项研究中,通过一步代谢戊糖代谢途径基因的体内DNA组装,然后在含有乙酸的戊糖培养基中连续进行适应性进化,并在生物质水解产物培养基中进行直接筛选,从而获得了一种水解产物发酵酿酒酵母菌株。该菌株能够在合成培养基中发酵葡萄糖和木糖,各自的最大葡萄糖和木糖消耗率,乙醇产量分别为3.47、0.38和1.62g / gDW / h,乙醇滴度为41.07g / L,产量0.42克/克。工业小麦秸秆水解产物发酵产生的最大葡萄糖和木糖消耗率,乙醇产量分别为2.61、0.54和1.38g / g DW / h,乙醇滴度为54.11g / L,产量为0.44g / g 。通过单独的水解和发酵,这些是麦秸水解产物发酵的最佳方法。

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