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孔雀石绿降解菌arthrobactersp.m6的分离及降解特性

DOI: 10.3724/SP.J.1145.2010.00581, PP. 581-584

Keywords: 孔雀石绿,生物降解,节杆菌属,降解特性,废水处理

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Abstract:

从活性污泥中分离得到一株能以孔雀石绿为唯一碳源和能源生长的细菌m6,根据其形态、生理生化特性以及16srrna基因序列相似性分析结果,将其初步鉴定为节杆菌属(arthrobactersp.).该菌株在12h内对20mg/l的孔雀石绿降解率高于80%;降解孔雀石绿的最适ph为7.0,最适温度为30℃,降解速率与初始接种量呈正相关.研究结果对于孔雀石绿的生物降解以及含孔雀石绿废水的处理具有重要意义.图6参20

References

[1]  1culpsj,belandfa.malachitegreen:atoxicologicalreview.amcolltoxicol,1996,15:219~238
[2]  5fernandesc,lalithavs,raovk.enhancingeffectsofmalachitegreenondevelopmentofhepaticpreneoplasticlesionsinducedbyn-nitrosodiethylamineinrats.carcinogenesis,1991,12:839~845
[3]  6raokvk.inhibitionofdnasynthesisinprimaryrathepatocyteculturesbymalachitegreen:anewlivertumorpromoter.toxicollett,1995,81(223):107~113
[4]  7gouranchatc.malachitegreeninfishculture(stateoftheartandperspectives).bibliographicstudies.veterinaireenvtnantesfrance:ecolenatl,2000,1:42~44
[5]  18ausubelfm,brentr,kingstonre,kingstonre.shortprotocolsinmolecularbiology.beijing,china(北京:科学出版社),1999.39~40
[6]  19yupj(余培建).highperformanceliquidchromatographymalachitegreenanditsmetabolitesinthesediment.chemanalmeasurement(化学分析计量),2007,16(2):27~29
[7]  20linh(林洪),fuxt(付晓婷),qiuxj(邱绪建),jiangj(江洁),lizx(李振兴).determinationofresiduesofmalachitegreen,gentiandeterminationofresiduesofmalachitegreen,gentianvioletandtheirmetabolitesinfishtissuesbyhighperformanceliquidchromatography.periodoceanunivchina(中国海洋大学学报),2006,36:919~922
[8]  2xiest(谢世涛),ouym(欧阳敏),xiesh(谢世红),xujh(徐节华).residuesofmalachitegreeninaquaticproductsof.jiangxifishsci(江西水产科技),2006(1):20~23
[9]  3lumx(卢迈新),huangzh(黄樟翰).americaneelonthesensitivityofseveraldrugs.freshwaterfish(淡水渔业),2000,30(5):28~29
[10]  4meyerfp,jorgensenta.teratologicalandothereffectsofmalachitegreenonthedevelopmentofrainbowtroutandrabbits.transamfishsoc,1983,112(6):818~824
[11]  8songwh(宋文华),hugc(胡国臣),yanh(颜慧),zhous(周爽),daisg(戴树桂).studyonthedecoloringcharacterization,degradingenzymesystemandgenelocationfordyedegradingatrains.advenvironsci(环境科学进展),1999,7(1):25~32
[12]  9moosvis,kehariah,madamward.decolourizationoftextiledyereactiveviolet5byanewlyisolatedbacterialconsortiumrvm11.1.worldjmicrobiol&biotechnol,2005,21:667~672
[13]  10daneshvarn,ayazloom,khataeear,pourhassanm.biologicaldecolorizationofdyesolutioncontainingmalachitegreenbymicroalgaecosmariumsp.bioresourtechnol,2007,98:1176~1182
[14]  11parshettig,kalmes,sarataleg,govindwars.biodegradationofmalachitegreenbykocuriaroseamtcc1532.actachimslov,2006,53:492~498
[15]  12rensz(任随周),guoj(郭俊),zenggq(曾国驱),sungp(孙国萍).decolorizationoftriphenylmethane,azo,andanthraquinonedyesbyanewlyisolatedaeromonashydrophilastrain.chinjapplenvironbiol(应用与环境生物学报),2006,72:1316~1321
[16]  13shedbalkaru,dhanver,jadhavj.biodegradationoftriphenylmethanedyecottonbluebypenicilliumochrochloronmtcc517.jhazardmat,2008,65:156~160
[17]  14mcmullang,meehanc,conneelya,kirbyn,robinsont.microbialdecolourisationanddegradationoftextiledyes.applmicrobiolbiotechnol,2001,56:81~87
[18]  15meih(梅�),hongq(洪青),lisp(李顺鹏).isolation,identificationandcharacterizationofamalachitegreen-degradingbacterium.chinjapplenvironbiol(应用与环境生物学报),2010,16(3):390~393
[19]  16huz(胡忠),wuyr(吴奕瑞),xuy(徐燕),huangtw(黄通旺),zhengtl(郑天凌).screeningofamarinephenol-degradingyeastcandidasp.p5anditsbiodegradationcharacteristics.chinjapplenvironbiol(应用与环境生物学报),2007,13(2):243~247
[20]  17dongxz(东秀珠),caimy(蔡妙英).常见细菌系统鉴定手册.beijing,china:sciencepress(北京:科学出版社),2001.370~410

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