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首页> 外文期刊>Biotechnology for Biofuels >Improved xylose and arabinose utilization by an industrial recombinant Saccharomyces cerevisiae strain using evolutionary engineering
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Improved xylose and arabinose utilization by an industrial recombinant Saccharomyces cerevisiae strain using evolutionary engineering

机译:利用进化工程技术改进工业酿酒酵母菌株对木糖和阿拉伯糖的利用

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摘要

Background Cost-effective fermentation of lignocellulosic hydrolysate to ethanol by Saccharomyces cerevisiae requires efficient mixed sugar utilization. Notably, the rate and yield of xylose and arabinose co-fermentation to ethanol must be enhanced. Results Evolutionary engineering was used to improve the simultaneous conversion of xylose and arabinose to ethanol in a recombinant industrial Saccharomyces cerevisiae strain carrying the heterologous genes for xylose and arabinose utilization pathways integrated in the genome. The evolved strain TMB3130 displayed an increased consumption rate of xylose and arabinose under aerobic and anaerobic conditions. Improved anaerobic ethanol production was achieved at the expense of xylitol and glycerol but arabinose was almost stoichiometrically converted to arabitol. Further characterization of the strain indicated that the selection pressure during prolonged continuous culture in xylose and arabinose medium resulted in the improved transport of xylose and arabinose as well as increased levels of the enzymes from the introduced fungal xylose pathway. No mutation was found in any of the genes from the pentose converting pathways. Conclusion To the best of our knowledge, this is the first report that characterizes the molecular mechanisms for improved mixed-pentose utilization obtained by evolutionary engineering of a recombinant S. cerevisiae strain. Increased transport of pentoses and increased activities of xylose converting enzymes contributed to the improved phenotype.
机译:背景技术通过酿酒酵母将木质纤维素水解产物成本有效地发酵成乙醇需要有效的混合糖利用。值得注意的是,必须提高木糖和阿拉伯糖共发酵为乙醇的速率和产率。结果采用进化工程技术,可改善重组糖酵母工业菌株中木糖和阿拉伯糖向乙醇的同时转化,该菌株携带整合到基因组中的木糖和阿拉伯糖利用途径的异源基因。在有氧和无氧条件下,进化菌株TMB3130显示出木糖和阿拉伯糖的消耗率增加。以木糖醇和甘油为代价提高了厌氧乙醇的产量,但阿拉伯糖几乎以化学计量方式转化为阿拉伯糖醇。菌株的进一步表征表明,在木糖和阿拉伯糖培养基中长时间连续培养期间的选择压力导致木糖和阿拉伯糖的运输改善,并且来自引入的真菌木糖途径的酶水平增加。在戊糖转化途径的任何基因中均未发现突变。结论据我们所知,这是第一份报道了通过重组酿酒酵母菌株的进化工程获得的改善混合戊糖利用的分子机制的报告。戊糖转运增加和木糖转化酶活性增加有助于表型的改善。

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