首页> 外文期刊>Journal of microbiology and biotechnology >High β-glucosidase secretion in Saccharomyces cerevisiae improves the efficiency of cellulase hydrolysis and ethanol production in simultaneous saccharification and fermentation
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High β-glucosidase secretion in Saccharomyces cerevisiae improves the efficiency of cellulase hydrolysis and ethanol production in simultaneous saccharification and fermentation

机译:酿酒酵母中较高的β-葡萄糖苷酶分泌提高了同时糖化和发酵过程中纤维素酶水解和乙醇生产的效率

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Bioethanol production from lignocellulose is considered as a sustainable biofuel supply. However, the low cellulose hydrolysis efficiency limits the cellulosic ethanol production. The cellulase is strongly inhibited by the major end product cellobiose, which can be relieved by the addition of β-glucosidase. In this study, three β-glucosidases from different organisms were respectively expressed in Saccharomyces cerevisiae and the β-glucosidase from Saccharomycopsis fibuligera showed the best activity (5.2 U/ml). The recombinant strain with S. fibuligera β-glucosidase could metabolize cellobiose with a specific growth rate similar to the control strain in glucose. This recombinant strain showed higher hydrolysis efficiency in the cellulose simultaneous saccharification and fermentation, when using the Trichoderma reesei cellulase, which is short of the β-glucosidase activity. The final ethanol concentration was 110% (using Avicel) and 89% (using acid-pretreated corncob) higher than the control strain. These results demonstrated the effect of β-glucosidase secretion in the recombinant S. cerevisiae for enhancing cellulosic ethanol conversion.
机译:从木质纤维素生产生物乙醇被认为是可持续的生物燃料供应。然而,低的纤维素水解效率限制了纤维素乙醇的生产。纤维素酶受到主要最终产物纤维二糖的强烈抑制,可以通过添加β-葡萄糖苷酶来缓解。在这项研究中,来自不同生物体的三种β-葡萄糖苷酶分别在酿酒酵母中表达,而来自腓肠酵母的β-葡萄糖苷酶表现出最好的活性(5.2 U / ml)。带有S. fibuligeraβ-葡萄糖苷酶的重组菌株可以以与葡萄糖中的对照菌株相似的特定生长速率代谢纤维二糖。当使用里氏木霉纤维素酶时,该重组菌株在纤维素同时糖化和发酵中显示出更高的水解效率,该酶缺乏β-葡萄糖苷酶活性。最终乙醇浓度比对照菌株高110%(使用Avicel)和89%(使用酸预处理的玉米芯)。这些结果证明了重组酿酒酵母中β-葡糖苷酶分泌对增强纤维素乙醇转化的作用。

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