恶臭假单胞菌
生物修复
环境修复
生物
基因工程
生物安全
微观世界
生化工程
环境化学
污染
生态学
细菌
化学
工程类
生物化学
基因
遗传学
作者
Yubin Xue,Tianlei Qiu,Zhi Sun,Feixia Liu,Bo Yu
标识
DOI:10.1111/1462-2920.16038
摘要
Summary Hazardous materials, such as heavy metals, are the major sources of health risk. Using genetically modified organisms (GMOs) to dispose heavy metals has the advantages of strong environmental compatibility and high efficiency. However, the biosecurity of GMOs used in the environment is a major concern. In this study, a self‐controlled genetic circuit was designed and carefully fine‐tuned for programmable expression in Pseudomonas putida KT2440, which is a widely used strain for environmental bioremediation. The cell behaviours were controlled by automatically sensing the variation of Hg 2+ concentration without any inducer requirement or manual interventions. More than 98% Hg 2+ was adsorbed by the engineered strain with a high cell recovery rate of 96% from waterbody. The remaining cells were killed by the suicide module after the mission was accomplished. The escape frequency of the engineered P . putida strain was lower than 10 −9 , which meets the recommendation of US NIH guideline for GMOs release (<10 −8 ). The same performance was achieved in a model experiment by using natural lake water with addition of Hg 2+ . The microbial diversity analysis further confirmed that the remediation process made little impact on the indigenous ecosystem. Thus, this study provides a practical method for environmental remediation by using GMOs.
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