节点文献

白腐真菌对异狄氏剂的降解特性及降解机理

Degradation Characteristics and Mechanism of Endrin by a White Rot Fungus,Phlebia acanthocystis TMIC34875

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 肖鹏飞; 近藤隆一郎;

【Author】 XIAO Pengfei1& Kondo Ryuichiro2(1College of Forestry,Northeast Forestry University,Harbin 150040,China)(2Faculty of Agriculture,Kyushu University,Fukuoka 812-8581,Japan)

【机构】 东北林业大学林学院; 九州大学农学院;

【摘要】 异狄氏剂作为一种防治农业害虫的杀虫剂在世界范围内曾被大量使用,其在环境中的残留及生物毒性已经引起广泛关注.为开发异狄氏剂降解菌资源,并阐明异狄氏剂的微生物降解机制,采用液体培养法研究了一株对狄氏剂具有降解能力的白腐真菌Phlebia acanthocystis TMIC34875对异狄氏剂的降解性能及机理.结果表明,在菌体接种量为15%(V/V)时,异狄氏剂在10 d培养期间的降解率达到最高的57%左右.该菌株在异狄氏剂的初始浓度为20μmol L-1时具有最大降解速率,为0.053μmol L-1h-1.在培养温度为25-35℃,pH值为4.5-5.5之间时,菌株对异狄氏剂具有较好的降解效果.相同条件下,菌株在马铃薯液体培养基中显示出比在Kirk合成液体培养基中更高的降解活性.通过气相色谱–质谱分析发现了多个未曾报道过的代谢产物,包括3个单一羟基化产物和1个羧基化产物,表明该菌株对异狄氏剂的降解途径不同于已知的细菌降解途径.

【Abstract】 Endrin is an organochlorine pesticide that was extensively used for the control of agricultural pests in the past several decades around the world.In this study,degradation characteristics and mechanism of endrin was investigated using a white rot fungus,Phlebia acanthocystis TMIC34875,which is capable of degrading dieldrin.The degradation rate was about 57% when the strain with an inoculum amount of 15% was incubated for 10 d.This strain showed the comparatively greatest degradation rate(0.053 μmol L-1h-1) with initial endrin concentration of 20 μmol L-1.The optimal pH and temperature for endrin degradation were 4.5-5.5 and 25-35 ℃,respectively.The strain showed the higher degradation activity of endrin in the PDB medium than in Kirk medium.At least five metabolites of endrin including three hydroxylated products and a carboxylic acid product were detected from fungal culture using GC/MS analysis,indicating that the metabolic mechanism of endrin degradation by P.acanthocystis TMIC34875 is different from the known pathway.

【基金】 中央高校基本科研业务费专项资金项目(DL12BA05);日本农林水产省农产品安全项目(PO-3216)资助~~
  • 【文献出处】 应用与环境生物学报 ,Chinese Journal of Applied and Environmental Biology , 编辑部邮箱 ,2013年01期
  • 【分类号】X172
  • 【被引频次】3
  • 【下载频次】192
节点文献中: 

本文链接的文献网络图示:

本文的引文网络