生物修复
苊
荧蒽
菲
芴
环境化学
化学
拉伤
芘
邻苯二甲酸
多环芳烃
污染物
苊
废水
生物降解
污染
有机化学
生物
环境科学
环境工程
聚合物
解剖
生态学
作者
Zan Wang,Haiyang Hu,Zhan Zhang,Yongming Xu,Ping Xu,Hongzhi Tang
标识
DOI:10.1016/j.scitotenv.2023.162974
摘要
Polycyclic aromatic hydrocarbons (PAHs) and heterocyclic derivatives are organic pollutants which threaten ecosystems and human beings. In this study, a new strain, Shinella sp. FLN 14, was isolated and characterized. It can utilize fluorene as its sole carbon source and effectively co-metabolize multiple PAHs and heterocyclic derivatives, including phenanthrene, acenaphthene, and fluoranthene. Two possible metabolic pathways are proposed (i.e., salicylic acid pathway and phthalic acid pathway). Whole-genome sequencing revealed that strain FLN14 possesses a chromosome and four plasmids. However, when combined with ensemble genetic information, novel fluorene-degrading functional gene clusters were not located within the genome of FLN 14, except for some new dioxygenases and electron transport chains, which typically initiate the oxidation of aromatic compounds. In wastewater bioremediation, strain FLN14 removed nearly 95 % of PAHs within 5 days and maintained high degrading activity during the 18-day reaction compared to the control. Overall, our study provides a promising candidate to achieve bioremediation of PAHs-contaminated environments.
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