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Co-fermentation using Recombinant Saccharomyces cerevisiae Yeast Strains Hyper-secreting Different Cellulases for the Production of Cellulosic Bioethanol

机译:使用重组酿酒酵母的共同发酵酿酒酵母酵母菌菌株的超分泌不同的纤维素酶用于生产纤维素生物乙醇

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摘要

Abstract To realize the economical production of ethanol and other bio-based chemicals from lignocellulosic biomass by consolidated bioprocessing (CBP), various cellulases from different sources were tested to improve the level of cellulase secretion in the yeast Saccharomyces cerevisiae by screening an optimal translational fusion partner (TFP) as both a secretion signal and fusion partner. Among them, four indispensable cellulases for cellulose hydrolysis, including Chaetomium thermophilum cellobiohydrolase (CtCBH1), Chrysosporium lucknowense cellobiohydrolase (ClCBH2), Trichoderma reesei endoglucanase (TrEGL2), and Saccharomycopsis fibuligera β-glucosidase (SfBGL1), were identified to be highly secreted in active form in yeast. Despite variability in the enzyme levels produced, each recombinant yeast could secrete approximately 0.6–2.0 g/L of cellulases into the fermentation broth. The synergistic effect of the mixed culture of the four strains expressing the essential cellulases with the insoluble substrate Avicel and several types of cellulosic biomass was demonstrated to be effective. Co-fermentation of these yeast strains produced approximately 14 g/L ethanol from the pre-treated rice straw containing 35 g/L glucan with 3-fold higher productivity than that of wild type yeast using a reduced amount of commercial cellulases. This process will contribute to the cost-effective production of bioenergy such as bioethanol and biochemicals from cellulosic biomass.
机译:摘要为了实现经济地生产乙醇,并从由联合生物加工(CBP)木质纤维素生物质的其它生物基化学品,来自不同源的不同的纤维素酶进行测试,以提高纤维素酶的分泌在酵母酿酒酵母的水平通过筛选最佳翻译融合伙伴(TFP)同时作为分泌信号和融合配偶体。其中,四个必不可少纤维素酶用于水解纤维素,包括嗜热毛壳纤维二糖水解(CtCBH1),勒克瑙金孢菌纤维二糖水解(ClCBH2),里氏木霉内切葡聚糖酶(TrEGL2),和囊复膜酵母β葡糖苷酶(SfBGL1),被鉴定为在活性高度分泌形成酵母。尽管所产生的酶水平变异性,每种重组酵母分泌可能的纤维素酶的约0.6-2.0克/升到发酵液中。 4株表达与不溶性底物的Avicel和几种类型的纤维素生物质的主要纤维素酶的混合培养物的协同效应被证明是有效的。这些酵母菌株的共发酵从含有35g / L葡聚糖与经预处理的稻草产生约14g / L乙醇的3倍使用商业的纤维素酶的量减少比野生型酵母的更高的生产率。这个过程将有助于成本效益的生产生物能源如生物乙醇和生物化学从纤维素生物质。

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