谷氨酸棒杆菌
重组工程
代谢工程
基因组工程
清脆的
Cas9
质粒
基因组编辑
基因组
雅罗维亚
生物
突变
计算生物学
合成生物学
基因
突变体
遗传学
作者
Jae Sung Cho,Kyeong Rok Choi,Cindy Pricilia Surya Prabowo,Jae Ho Shin,Dongsoo Yang,Jaedong Jang,Sang Yup Lee
标识
DOI:10.1016/j.ymben.2017.06.010
摘要
Genome engineering of Corynebacterium glutamicum, an important industrial microorganism for amino acids production, currently relies on random mutagenesis and inefficient double crossover events. Here we report a rapid genome engineering strategy to scarlessly knock out one or more genes in C. glutamicum in sequential and iterative manner. Recombinase RecT is used to incorporate synthetic single-stranded oligodeoxyribonucleotides into the genome and CRISPR/Cas9 to counter-select negative mutants. We completed the system by engineering the respective plasmids harboring CRISPR/Cas9 and RecT for efficient curing such that multiple gene targets can be done iteratively and final strains will be free of plasmids. To demonstrate the system, seven different mutants were constructed within two weeks to study the combinatorial deletion effects of three different genes on the production of γ-aminobutyric acid, an industrially relevant chemical of much interest. This genome engineering strategy will expedite metabolic engineering of C. glutamicum.
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