Single-plasmid systems based on CRISPR-Cas9 for gene editing in Lactococcus lactis

清脆的 生物 乳酸乳球菌 Cas9 亚基因组mRNA 基因组编辑 质粒 同源重组 基因组 基因 基因敲除 基因组工程 基因靶向 计算生物学 引导RNA 遗传学 细菌 乳酸
作者
Xin Song,Lu Liu,Xinxin Liu,Zhiqiang Xiong,Chunliang Xie,Shij-Jie Wang,Lianzhong Ai
出处
期刊:Journal of Dairy Science [Elsevier BV]
卷期号:104 (10): 10576-10585 被引量:13
标识
DOI:10.3168/jds.2020-19901
摘要

Lactococcus lactis is a food-grade lactic acid bacterial species that is widely used in food and medical industries. Due to its relatively small genome and simple metabolism, L. lactis is commonly engineered to produce large quantities of recombinant proteins. The most common single-gene knockout strategy in L. lactis involves RecA-dependent homologous double-crossover recombination, which is relatively time-consuming and laborious. In this study, a precise and efficient genome-editing plasmid for L. lactis NZ9000 genome engineering, pLL, was established based on clustered regularly interspaced short palindromic repeats (CRISPR)-Cas9 technology. By studying the effects of different single guide RNA (sgRNA) promoters, the efficiency of gene deletion was optimized. For LLNZ_02045 (ldh), gene deletion efficiency of up to 50% was achieved. Effective sequential gene deletion of LLNZ_11240 (upp) and LLNZ_04580 (upp1) was also demonstrated using this tool. Additionally, the gene that encodes for uracil phosphoribosyltransferase was identified using this system. Similar robust gene deletion efficiencies of sgRNA that targeted different regions of a single gene suggested that gene deletion was not affected by the location of sgRNA binding. Thus, our study established a new gene-editing tool that may allow further investigation and understanding of the L. lactis NZ9000 genome.
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