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Mobile CRISPR-Cas9 based anti-phage system in E. coli

《化学科学与工程前沿(英文)》 2022年 第16卷 第8期   页码 1281-1289 doi: 10.1007/s11705-022-2141-7

摘要: Escherichia coli is one of the most important microbial cell factories, but infection by bacteriophages in the environment may have a huge impact on its application in industrial production. Here, we developed a mobile CRISPR-Cas9 based anti-phage system for bacteriophages defense in E. coli. Two conjugative plasmids pGM1 (phosphoglucomutase 1) and pGM2 carrying one and two guide RNAs, respectively, were designed to defend against a filamentous phage. The results showed that the pGM1 and pGM2 could decrease the phage infection rate to 1.6% and 0.2% respectively in infected cells. For preventing phage infection in E. coli, the pGM2 decreased the phage infection rate to 0.1%, while pGM1 failed to block phage infection. Sequence verification revealed that point mutations in protospacer or protospacer adjacent motif sequences of the phage genome caused loss of the defense function. These results support the potential application of MCBAS in E. coli cell factories to defend against phage infections.

关键词: phage infections     anti-phage     CRISPR-Cas9     conjugative transfer     synthetic biology    

Bacteriophages in water pollution control: Advantages and limitations

《环境科学与工程前沿(英文)》 2021年 第15卷 第5期 doi: 10.1007/s11783-020-1378-y

摘要:

•Phages can be better indicators of enteric viruses than fecal indicator bacteria.

关键词: Phage     Water pollution monitoring     Harmful bacteria biocontrol     Horizontal gene transfer     Bacterial resistance    

标题 作者 时间 类型 操作

Mobile CRISPR-Cas9 based anti-phage system in E. coli

期刊论文

Bacteriophages in water pollution control: Advantages and limitations

期刊论文