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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Display of cellulases on the cell surface of Saccharomyces cerevisiae for high yield ethanol production from high-solid lignocellulosic biomass
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Display of cellulases on the cell surface of Saccharomyces cerevisiae for high yield ethanol production from high-solid lignocellulosic biomass

机译:在酿酒酵母细胞表面展示纤维素酶,可从高固体木质纤维素生物质中高产乙醇

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摘要

Economically feasible processes for industrial cellulosic ethanol production requires increasing the final ethanol titer during fermentation due to the high energy demands of the subsequent ethanol distillation. In the present study, high-yield ethanol production was achieved by short-term liquefaction and fermentation of lignocellulose biomass in a novel drum-type rotary fermentation system using a yeast strain developed for cell-surface display of fungal endoglucanase, cellobiohydrolase, and β-glucosidase. In the presence of 10. FPU/g-biomass cellulase added, the recombinant cellulolytic strain produced 1.4-fold higher ethanol (89% of theoretical yield) from high-solid (200. g-dry weight/L) rice straw within 72. h of fermentation than wild type strain. Cell-surface engineering successfully reduced the amount of commercial enzyme required for the fermentation of cellulose. This study demonstrates that cellulases displayed on the yeast cell surface are capable of hydrolyzing cellulose that was not hydrolyzed by commercial cellulases, leading to increased sugar utilization for improved ethanol production.
机译:用于工业纤维素乙醇生产的经济上可行的方法由于后续乙醇蒸馏的高能量需求而需要在发酵过程中提高最终乙醇滴度。在本研究中,通过在新型鼓型旋转发酵系统中使用开发用于真菌内切葡聚糖酶,纤维二糖水解酶和β-葡萄糖苷酶。在添加10 FPU / g生物质纤维素酶的情况下,重组纤维素分解菌株从72内高固含量(200 g干重/ L)的稻草中产生的乙醇高1.4倍(理论产量的89%)。发酵h比野生型菌株。细胞表面工程成功减少了纤维素发酵所需的商业酶量。这项研究表明,酵母细胞表面展示的纤维素酶能够水解未被商业纤维素酶水解的纤维素,从而提高了糖的利用率,从而改善了乙醇的生产。

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