生物炭
生物膜
阿特拉津
环境修复
生物修复
生物降解
环境化学
生物强化
微生物
环境科学
化学
杀虫剂
环境工程
污染
生物
农学
生态学
细菌
有机化学
遗传学
热解
作者
Bo Zhang,Shouxin Zhang,Yu-Ping Wang,Jianhua Qu,Zhao Jiang,Xu Zhang,Yue Tao,Yifan Wang,Zhonghui Kang,Songting Han,Jingyi Zhang,Ying Zhang
标识
DOI:10.1016/j.jhazmat.2023.133237
摘要
The abuse and residue of herbicides in the black soil area had seriously affected the soil structure, function and crop growth, posing severe threats to agricultural soil environment and public health. Given the limitation of routine microbial remediation, innovative and eco-friendly functional bacterial biofilm which could adapt under adverse conditions was developed on the biochar to investigate its enhanced bioremediation and metabolic characteristics of typical herbicide atrazine. Results revealed that the atrazine degrading strain Acinetobacter lwoffii had competitive advantage in soil indigenous microorganisms and formed dense biofilms on the biochar which was beneficial to cell viability maintenance and aggregations. Metatranscriptomics and RT-qPCR analysis demonstrated that the biochar-mediated biofilm improved the frequency of intercellular communications through quorum sensing and two-component signal regulation systems, and enhanced the atrazine biodegradation efficiency through horizontal gene transfer in co-metabolism mode, providing important scientific basis for the biological remediation of farmland soil non-point source pollution.
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