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CRISPR-Cas9 Approach Constructing Cellulase sestc-Engineered Saccharomyces cerevisiae for the Production of Orange Peel Ethanol

机译:CRISPR-Cas9方法构建纤维素酶sestc工程酿酒酵母用于生产橙皮乙醇

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摘要

The development of lignocellulosic bioethanol plays an important role in the substitution of petrochemical energy and high-value utilization of agricultural wastes. The safe and stable expression of cellulase gene sestc was achieved by applying the clustered regularly interspaced short palindromic repeats-Cas9 approach to the integration of sestc expression cassette containing Agaricus biporus glyceraldehyde-3-phosphate-dehydrogenase gene (gpd) promoter in the Saccharomyces cerevisiae chromosome. The target insertion site was found to be located in the S. cerevisiae hexokinase 2 by designing a gRNA expression vector. The recombinant SESTC protein exhibited a size of approximately 44 kDa in the engineered S. cerevisiae. By using orange peel as the fermentation substrate, the filter paper, endo-1,4-β-glucanase, exo-1,4-β-glucanase activities of the transformants were 1.06, 337.42, and 1.36 U/mL, which were 35.3-fold, 23.03-fold, and 17-fold higher than those from wild-type S. cerevisiae, respectively. After 6 h treatment, approximately 20 g/L glucose was obtained. Under anaerobic conditions the highest ethanol concentration reached 7.53 g/L after 48 h fermentation and was 37.7-fold higher than that of wild-type S. cerevisiae (0.2 g/L). The engineered strains may provide a valuable material for the development of lignocellulosic ethanol.
机译:木质纤维素生物乙醇的发展在石化能源的替代和农业废物的高价值利用中起着重要作用。通过将聚簇规则间隔的短回文重复序列-Cas9方法应用于啤酒酵母染色体中含有双歧双歧杆菌甘油醛-3-磷酸-脱氢酶基因(gpd)启动子的sestc表达盒的整合,可实现纤维素酶基因sestc的安全稳定表达。 。通过设计gRNA表达载体,发现目标插入位点位于啤酒糖酵母己糖激酶2中。重组SESTC蛋白在工程酿酒酵母中表现出约44kDa的大小。以桔皮为发酵基质,转化子的滤纸内切1,4-β-葡聚糖酶,exo-1,4-β-葡聚糖酶活性分别为1.06、337.42和1.36 U / mL,为35.3。分别比野生型酿酒酵母高3倍,23.03倍和17倍。处理6小时后,获得约20g / L的葡萄糖。在厌氧条件下,发酵48小时后的最高乙醇浓度达到7.53 g / L,比野生型酿酒酵母(0.2 g / L)高37.7倍。工程菌株可以为开发木质纤维素乙醇提供有价值的材料。

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