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三氯乙烯好氧共代谢降解菌鉴定和降解特性研究
引用本文:张祥胜,李军辉,康怡军,董珊珊.三氯乙烯好氧共代谢降解菌鉴定和降解特性研究[J].环境科学与技术,2013(1):61-64,119.
作者姓名:张祥胜  李军辉  康怡军  董珊珊
作者单位:盐城师范学院生命科学与技术学院,江苏省滩涂生物资源与环境保护重点建设实验室;澳门大学科技学院土木与环境工程系
基金项目:国家自然科学基金项目(10905035,41101235);江苏省滩涂生物资源与环境保护重点建设实验室开放课题资助
摘    要:由加油站附近污染土壤分离到一株好氧共代谢降解三氯乙烯的菌株Em-1,对其进行了形态学、生理生化和分子鉴定,表明为假单胞菌属。该菌可以利用甲苯为唯一碳源生长,可以以甲苯为生长底物降解三氯乙烯。对Em-1在甲苯中的生长曲线进行了分析,发现经过活化的菌株在甲苯培养基中8 h左右进入对数生长期。在摇瓶水平上进行了连续降解实验,表明甲苯经过24 h即消耗完毕,在含200 mg/L甲苯和50 mg/L三氯乙烯的无机盐培养基中,经168 h培养,三氯乙烯去除率达29.6%。为研究微生物共代谢降解三氯乙烯提供了借鉴。

关 键 词:好氧共代谢  生物降解  假单胞菌属  三氯乙烯  甲苯

Isolation and Characterization of a Novel Pseudomonas sp. Strain Em-1 Capable of Degrading Trichloroethylene by Cometabolism under Aerobic Conditions
ZHANG Xiang-sheng,LI Jun-hui,KANG Yi-jun,DONG Shan-shan.Isolation and Characterization of a Novel Pseudomonas sp. Strain Em-1 Capable of Degrading Trichloroethylene by Cometabolism under Aerobic Conditions[J].Environmental Science and Technology,2013(1):61-64,119.
Authors:ZHANG Xiang-sheng  LI Jun-hui  KANG Yi-jun  DONG Shan-shan
Institution:1.Jiangsu Provincial Key Laboratory of Coast Wetland Bioresource and Environmental Protection,Yancheng Normal College,Yancheng 224002,China;2.Department of Civil and Environmental Engineering,College of Science and Technology,University of Macau,Macau SAR,China)
Abstract:A novel cometabolic trichloroethylene(TCE) degrading strain Em-1 was isolated from the soil nearby a gas station and characterized morphologically,biochemically and physiologically.Combined with 16S rRNA sequence analysis,it was identified as Pseudomonas sp.It could grow with toluene as the sole carbon source.Analysis of growth curve showed that Em-1 could reach the logarithmic phase around 8 h.Continuous sampling showed that toluene was exhausted within 1 d.With 168 h incubation in mineral salt media with 200 mg/L toluene and 50 mg/L TCE,the TCE bioremoval efficiency could reach 29.6%.The study would provide some reference for further study in TCE biodegradation by co-metabolism.
Keywords:aerobic cometabolism  biodegradation  Pseudomonas sp    trichloroethylene  toluene
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