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降解2-氯酚厌氧污泥中微生物种群结构研究
引用本文:黄爱群,傅以钢,陈皓,陈玲.降解2-氯酚厌氧污泥中微生物种群结构研究[J].同济大学学报(自然科学版),2006,34(12):1651-1656.
作者姓名:黄爱群  傅以钢  陈皓  陈玲
作者单位:同济大学,污染控制与资源化研究国家重点实验室,上海,200092
基金项目:国家高技术研究发展计划(863计划)
摘    要:采用聚合酶链式反应-变性梯度凝胶电泳(PCR-DGGE)技术,研究Fe^2+,Ni^2+金属离子对经2-氯酚(2-CP)驯化后的厌氧生物反应器颗粒污泥的微生物种群结构的影响.结果表明,经2-CP驯化后,厌氧体系微生物多样性减少,产生了能适应或降解2-CP的主要菌群发光杆菌属、埃希氏菌属和志贺氏菌属.投加Fe^2+,Ni^2+后,降解2-CP的厌氧污泥微生物多样性均呈减少趋势,其中,加Fe^2+后的厌氧体系微生物多样性明显减少,并产生新的条带,经分析,证明为专性厌氧梭菌属.

关 键 词:2-氯酚  金属离子  厌氧颗粒污泥  微生物种群结构  聚合酶链式反应-变性梯度凝胶电泳
文章编号:0253-374X(2006)12-1651-06
收稿时间:08 19 2005 12:00AM
修稿时间:2005-08-19

Study on Microbial Community Structure in Anaerobic Granular Sludge for 2-chlorophenol-degradation
HUANG Aiqun,FU Yigang,CHEN Hao,CHEN Ling.Study on Microbial Community Structure in Anaerobic Granular Sludge for 2-chlorophenol-degradation[J].Journal of Tongji University(Natural Science),2006,34(12):1651-1656.
Authors:HUANG Aiqun  FU Yigang  CHEN Hao  CHEN Ling
Institution:State Key Laboratory of Pollution Control and Resource Reuse, Tongji University,Shanghai 200092, China
Abstract:The influence of Fe~(2 ) and Ni~(2 ) metal ions on microbial community structure in(2-chlorophenol)(2-CP)-acclimated anaerobic granular sludge was investigated with modern molecular biological techniques. Total DNA was extracted directly from anaerobic granular sludge and was amplified with polymerase chain reaction(PCR) technique.The PCR products were fingerprinted by denaturing gradient gel electrophoresis(DGGE).Biodiversity of microbial community decreased in 2-CP-acclimated anaerobic granular sludge and some predominant microbes which can adapt to or degrade 2-CP were developed after acclimation,including Photorhabdus luminescen genus,Escherichia genus and Shigella genus.After adding Fe~(2 ) and Ni~(2 ) to the anaerobic system,biodiversity of microbial community decreased dramatically and a new band was observed in Fe~(2 )-added sludge,which was verified to be Clostridium genus.
Keywords:2-chlorophenol  metal ions  anaerobic granular sludge  microbial community structure  polymerase chain reaction-denaturing gradient gel electrophoresis
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