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麦卡蒂氏脱卤拟球菌GPTCE1的分离纯化及其脱卤特性 被引量:1
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作者 杨杰 刘贵平 +2 位作者 李伟 乔文静 蒋建东 《微生物学通报》 北大核心 2025年第12期5601-5615,共15页
【背景】三氯乙烯(trichloroethylene,TCE)是典型的氯代有机污染物。相较于传统的物理化学修复技术,厌氧微生物修复具有经济、环保、无二次污染等优势,但高效厌氧有机卤呼吸菌株的匮乏仍是制约该技术广泛应用的关键瓶颈。【目的】分离... 【背景】三氯乙烯(trichloroethylene,TCE)是典型的氯代有机污染物。相较于传统的物理化学修复技术,厌氧微生物修复具有经济、环保、无二次污染等优势,但高效厌氧有机卤呼吸菌株的匮乏仍是制约该技术广泛应用的关键瓶颈。【目的】分离鉴定有机卤呼吸细菌,拓展三氯乙烯等污染物的脱卤菌种资源。【方法】采用绝迹稀释法从TCE脱氯富集液中分离厌氧还原脱卤菌株,通过富营养培养鉴定法、聚合酶链式反应-限制性片段长度多态性(polymerase chain reaction-restriction fragment length polymorphism,PCR-RFLP)及Sanger测序验证菌株纯度;基于16S rRNA基因系统发育分析及比较基因组分析明确其分类地位;测定菌株的脱卤底物谱、生长动力学、抗生素抗性及地下水污染环境中脱氯能力等基础特征。【结果】分离获得的菌株GPTCE1属于麦卡蒂氏脱卤拟球菌(Dehalococcoides mccartyi),可实现对1,1,2-三氯乙烷、1,2-二氯乙烷及三氯乙烯等5种多氯代烃类物质的高效脱氯。当接种量为(1.5±0.4)×10^(8)时,TCE脱氯速率达(2.3±0.3)μmol/d,菌株生长效率为(2.1±1.2)×10^(8)copies/μmol Cl^(−),能将TCE完全转化为乙烯,并且在地下水污染环境中接种(3.7±0.3)×10^(8)个细胞对TCE脱氯速率达到(4.3±0.2)μmol/d。该菌株对万古霉素、氨苄青霉素和链霉素具有抗性。【结论】从TCE脱氯富集液中成功分离得到一株麦卡蒂氏脱卤拟球菌GPTCE1,系统表征了其高效氯代烃脱氯能力,为原位生物修复技术提供了重要菌株资源。 展开更多
关键词 三氯乙烯 还原脱氯 麦卡蒂氏脱卤拟球菌
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Coupling of bioelectrochemical toluene oxidation and trichloroethene reductive dechlorination for single-stage treatment of groundwater containing multiple contaminants 被引量:3
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作者 Carolina Cruz Viggi Matteo Tucci +4 位作者 Marco Resitano Simona Crognale Maria Letizia Di Franca Simona Rossetti Federico Aulenta 《Environmental Science and Ecotechnology》 SCIE 2022年第3期32-39,共8页
Bioremediation of groundwater contaminated by a mixture of aromatic hydrocarbons and chlorinated solvents is typically challenged because these contaminants are degraded via distinctive oxidative and reductive pathway... Bioremediation of groundwater contaminated by a mixture of aromatic hydrocarbons and chlorinated solvents is typically challenged because these contaminants are degraded via distinctive oxidative and reductive pathways,thus requiring different amendments and redox conditions.Here,we provided the proof-of-concept of a single-stage treatment of synthetic groundwater containing toluene and trichloroethene(TCE)in a tubular bioelectrochemical reactor,known as a“bioelectric well”.Toluene was degraded by a microbial bioanode(up to 150 mmol L^(-1) d^(-1))with a polarized graphite anode(t0.2 V vs.SHE)serving as the terminal electron acceptor.The electric current deriving from microbially-driven toluene oxidation resulted in(abiotic)hydrogen production(at a stainless-steel cathode),which sustained the reductive dechlorination of TCE to less-chlorinated intermediates(i.e.,cis-DCE,VC,and ETH),at a maximum rate of 500 meq L^(-1) d^(-1),in the bulk of the reactor.A phylogenetic and functional genebased analysis of the“bioelectric well”confirmed the establishment of a microbiome harboring the metabolic potential for anaerobic toluene oxidation and TCE reductive dechlorination.However,Toluene degradation and current generation were found to be rate-limited by external mass transport phenomena,thus indicating the existing potential for further process optimization. 展开更多
关键词 Bioelectric well Dehalococcoides mccartyi Electrobioremediation Groundwater remediation TOLUENE TRICHLOROETHENE
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