生物膜
恶臭假单胞菌
群体感应
群体猝灭
细菌
降级(电信)
化学
活性污泥
生物污染
微生物学
假单胞菌
生物降解
污水处理
生物化学
生物
基因
环境工程
有机化学
环境科学
电信
遗传学
膜
计算机科学
作者
Yi-Mei Xue,Yongchao Wang,Yu-Ting Lin,Guanyu Jiang,Rui Chen,Ruolin Qin,Xiaoqiang Jia,Can Wang
出处
期刊:Water Research
[Elsevier BV]
日期:2023-10-03
卷期号:246: 120690-120690
被引量:6
标识
DOI:10.1016/j.watres.2023.120690
摘要
Bacterial communication interruption based on quorum quenching (QQ) has been proven its potential in biofilm formation inhibition and biofouling control. However, it would be more satisfying if QQ could be combined with the efficient degradation of contaminants in environmental engineering. In this study, we engineered a biofilm of Pseudomonas putida through introducing a QQ synthetic gene, which achieved both biofilm formation inhibition and efficient degradation of benzene series in wastewater. The aiiO gene introduced into the P. putida by heat shock method was highly expressed to produce QQ enzyme to degrade AHL-based signal molecules. The addition of this engineered P. putida reduced the AHLs concentration, quorum sensing gene expression, and connections of the microbial community network in activated sludge and therefore inhibited the biofilm formation. Meanwhile, the sodium benzoate degradation assay indicated an enhanced benzene series removal ability of the engineering bacteria on activated sludge. Besides, we also demonstrated a controllable environmental risk of this engineered bacteria through monitoring its abundance and horizontal gene transfer test. Overall, the results of this study suggest an alternative strategy to solve multiple environmental problems through genetic engineering means and provide support for the application of engineered bacteria in environmental biotechnology.
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