文章摘要
王龙琦 宋林菲 郑恒睿 李荣贵.一株降解O,O-二甲基-O-(2,2- 二氯乙烯基)磷酸酯的土壤微生物的 分离与鉴定[J].,2014,14(21):4051-4055
一株降解O,O-二甲基-O-(2,2- 二氯乙烯基)磷酸酯的土壤微生物的 分离与鉴定
Isolation and Identification of a DDVP-degrading Bacterial Strain fromSoil
  
DOI:
中文关键词: 细菌  O,O-二甲基-O-(2,2-二氯乙烯基)磷酸酯  降解  鉴定
英文关键词: Bacterium  DDVP  Degradation  Identification
基金项目:山东省自然科学基金项目(ZR2010CM009)
作者单位
王龙琦 宋林菲 郑恒睿 李荣贵 青岛大学生命科学学院 
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中文摘要:
      目的:有机磷农药和杀虫剂广泛应用于众多国内和国外生产的,其数量已超过100 种。大量使用的有机磷农药会增加农业 生产,而且还造成了不可估量的环境污染。研究降解敌敌畏的微生物,为微生物以降低产品敌敌畏农药残留,恢复敌敌畏污染土 壤中的研究奠定基础。方法:本文从种植蔬菜的温室大棚的土壤中分离了一株降解O,O- 二甲基-O-(2,2- 二氯乙烯基)磷酸酯(敌敌 畏)的细菌,根据该菌的形态学、生理生化特征及16S rDNA 序列比对。结果:该菌鉴定为荧光假单胞菌(菌株P)。该菌的最适生长 温度为27 ℃,其培养基的最适初始pH为7.0, 4天内该菌可将培养液中61.24%的降解。结论:本实验从蔬菜大棚的土样中筛选出 一株能降解敌敌畏的菌株,并鉴定为荧光假单胞菌。本研究将为基于微生物以降低产品敌敌畏农药残留,恢复敌敌畏污染土壤中 的研究打下基础。
英文摘要:
      Objective:Organophosphorus pesticides and pesticide widely used in a large number of domestic and foreign production, its number has more than 100 kinds. Heavily used organophosphorus pesticides can increase agricultural production, but also caused incalculable environmental pollution. To research a microorganisms which can degrade DDVP for exploring microbial agents which can decrease the residues of DDVP and restore the pesticides-polluted soils.Methods:A bacterium strain which could degrade one kind of organophosphate pesticides, DDVP (dimethyl-dichloro-vinyl-phosphate), was isolated from soil samples collected from greenhouses planting vegetables in Zibo, Shandong Province. The bacterium strain was identified as Pseudomonas flurescens strain P according to its morphological, physiological, biochemical characteristics and 16S rDNA sequence blast.Results:The optimum growth temperature for this strain was 27 ℃ , and the optimum initial pH was 7.0. P. flurescens strain P could degrade DDVP with an efficiency of 61.24% in four days.Conclusion:This experiment screened a strain capable of efficient degradation of dichlorvos strains of Pseudomonas fluorescence through the identification. This study will lay a foundation for exploring microbial agents which can decrease the residues of DDVP and restore the pesticides-polluted soil.
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