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首页> 外文期刊>Journal of Bioscience and Bioengineering >Establishment of a transient CRISPR-Cas9 genome editing system in Candida glycerinogenes for co-production of ethanol and xylonic acid
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Establishment of a transient CRISPR-Cas9 genome editing system in Candida glycerinogenes for co-production of ethanol and xylonic acid

机译:建立临时CRAP-CAS9基因组编辑系统在Candida甘油中的共同生产乙醇和木糖酸

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摘要

Candida glycerinogenes, an industrial yeast with excellent multi-stress tolerance, has been applied to glycerol production for decades. However, its genetic manipulation was limited by the absence of meiosis, the diploid genome, and the lack of molecular tools. We described here the implementation of a transient CRISPR-Cas9 system for efficient genome editing in C. glycerinogenes. By targeting the counterselectable marker genes (TRP1, URA3), single and double gene knock-outs were achieved and the auxotroph obtained can be used as a background for targeting other gene (HOG1) at a mutation efficiency of 80%. Further, a xylonic acid producing C. glycerinogenes strain was constructed by knock-in of the xylose dehydrogenase gene, which produced up to 28 g/L ethanol and 9 g/L xylonic acid simultaneously from simulated lignocellulosic hydrolysate (contained 70 g/L glucose and 24 g/L xylose). These results indicated that the CRSIPR-Cas9 system developed here can facilitate the study of gene functions and metabolic pathways in C. glycerinogenes. (C) 2019, The Society for Biotechnology, Japan. All rights reserved.
机译:念珠菌甘油中,一种具有优异的多应力耐受性的工业酵母,已应用于几十年的甘油生产。然而,它的遗传操作受到超细胞凸,二倍体基因组和缺乏分子工具的限制。这里描述了用于在C.甘油中的有效基因组编辑的瞬态CRAP-CAS9系统的实施。通过靶向计数标记基因(TRP1,URA3),实现单和双基因敲除,并且可以用作以80%的突变效率靶向其他基因(HOG1)的背景。此外,通过敲入木聚糖脱氢酶基因构建的木聚糖生成的甘油酸株菌株,其同时由模拟的木质纤维素水解产物产生高达28g / L乙醇和9g / l二甲酸的溶液(含有70g / l葡萄糖)和24克/升木糖)。这些结果表明,这里开发的CRSIPR-CAS9系统可以促进基因功能和C.甘油中的代谢途径的研究。 (c)2019年,日本生物技术协会。版权所有。

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