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通过基因编辑手段从源头上控制水处理生物技术的致病风险。

Controlling pathogenic risks of water treatment biotechnologies at the source by genetic editing means.

作者信息

Wu Jie, Liu Dong-Feng, Li Hui-Hui, Min Di, Liu Jia-Qi, Xu Peng, Li Wen-Wei, Yu Han-Qing, Zhu Yong-Guan

机构信息

CAS Key Laboratory of Urban Pollutant Conversion, Department of Environmental Science and Engineering, University of Science and Technology of China, Hefei, 230026, China.

University of Science and Technology of China-City University of Hong Kong Joint Advanced Research Center, Suzhou Institute for Advance Research of USTC, Suzhou, 215123, China.

出版信息

Environ Microbiol. 2021 Dec;23(12):7578-7590. doi: 10.1111/1462-2920.15851. Epub 2021 Nov 27.

Abstract

Antimicrobial-resistant pathogens in the environment and wastewater treatment systems, many of which are also important pollutant degraders and are difficult to control by traditional disinfection approaches, have become an unprecedented treat to ecological security and human health. Here, we propose the adoption of genetic editing techniques as a highly targeted, efficient and simple tool to control the risks of environmental pathogens at the source. An 'all-in-one' plasmid system was constructed in Aeromonas hydrophila to accurately identify and selectively inactivate multiple key virulence factor genes and antibiotic resistance genes via base editing, enabling significantly suppressed bacterial virulence and resistance without impairing their normal phenotype and pollutant-degradation functions. Its safe application for bioaugmented treatment of synthetic textile wastewater was also demonstrated. This genetic-editing technique may offer a promising solution to control the health risks of environmental microorganisms via targeted gene inactivation, thereby facilitating safer application of water treatment biotechnologies.

摘要

环境和废水处理系统中的抗微生物病原体,其中许多也是重要的污染物降解菌,并且难以通过传统消毒方法加以控制,已对生态安全和人类健康构成了前所未有的威胁。在此,我们提议采用基因编辑技术作为一种高度靶向、高效且简便的工具,从源头上控制环境病原体的风险。我们在嗜水气单胞菌中构建了一种“一体化”质粒系统,通过碱基编辑准确识别并选择性灭活多个关键毒力因子基因和抗生素抗性基因,在不损害其正常表型和污染物降解功能的情况下,显著抑制细菌的毒力和抗性。还证明了其在合成纺织废水生物强化处理中的安全应用。这种基因编辑技术可能为通过靶向基因失活来控制环境微生物的健康风险提供一种有前景的解决方案,从而促进水处理生物技术的更安全应用。

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