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《一株新的多菌灵高效降解菌的筛选与降解特性分析.pdf》由会员上传分享,免费在线阅读,更多相关内容在行业资料-天天文库。
1、农业环境科学学报2012,31(3):563—569JournalofAgro-EnvironmentScience一株新的多菌灵高效降解菌的筛选与降解特性分析王呈玉1,2李明石17曲迪1,李成龙1,崔俊涛1,胡耀辉扩,王玉军p(1.吉林农业大学资源与环境学院,长春130118;2.吉林农业大学食品科学与工程学院,长春130118)摘要:从长期施用多菌灵农药的土壤中,通过富集筛选,获得1株新的多菌灵高效降解菌株。通过生理生化实验和16SrDNA序列同源性分析鉴定该菌株,应用高效液相色谱法对纯培养条件下菌株的降解特
2、性和粗酶提取液的降解性能进行了分析。结果表明,筛选所获得的菌株与Raoultella菌属的亲缘关系最近,将其命名为Raoultellasp.MBC,该菌株能在以多菌灵为唯一碳源的无机盐培养基中生长;25oC、pH7.0、200r·min。的最适生长条件下避光振荡培养72h,多菌灵的降解率达到100%;在最适培养条件下外加氮源和碳源在培养后期均可以提高多菌灵的降解率,外加氮源对多菌灵的降解效果优于外加碳源;该菌体的粗酶提取液具有降解多菌灵活性,且多菌灵降解酶为诱导酶。研究结果为多菌灵污染土壤的生物修复和酶修复提供了
3、材料和理论依据。关键词:多菌灵;拉乌尔菌属;分离鉴定;生物降解;降解特性中图分类号:X172文献标志码:A文章编号:1672—2043(2012)03—0563—07IdentificationandCharacterizationofaNewlyIsolatedCarbendazim-degradingBacterialStrainMBCWANGCheng-yul乞LIMing-shil,QUDil,LICheng-lon91,CUIJun-ta01,HUYao-hui’,WANGYu-jun”(1.CoHeg
4、eofResourcesandEnvironmentalSciences,JilinAgriculturalUniversity,Changchun130118,China;2.CoHegeofFoodScienceandEngineering,JilinAgriculturalUniversity,Changchun130118,China)Abstract:Anovelbacterialstrain,whichcaneffectivelyusecarbendazimassolecarbonandenergys
5、ource,wasisolatedfromlong-termcarbendazimadministeredsoilbyenrichmentscreening.Basedontheanalysisofphysiologicalandbiochemicalcharacteristics,16SrDNAgenesequeneehomologyandphylogenetictree,theisolatewasidentified.Itsdegradationcharacteristicsanddegradationcap
6、abilityofthelysateweretestedbyHPLC.ThenewbacterialstrainwasidentifiedasRaoultellasp.andnamedMBC.Resultsshowedthatthisstraincouldutilizecarbendazimassolecarbonsourceforgrowth,andcoulddegrade100%ofcarbendazimafter72hshakingcultureat200r·min一,25℃andpH7.0.Itsdegr
7、adationratewasincreasedbyaddingexogenouscarbonandnitrogensourceintothemediumatthelaterstageofculture,andthedegradationofaddingexogenousnitrogensourcewasmoreeffectivethanthatofcarbonsource.Thelysatehadadegradingactivityofcarbendazim,andthecatabolicenzymesweret
8、heinducedenzyme.Theseresultsprovidedarationaleandamaterialforbio-remediationoflong-termcarbendazim-contaminatedsoil.Keywords:carbendazim;Raoultellasp.;isolationandidentification;biodegrad
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