首页> 外文期刊>Journal of Agricultural and Food Chemistry >Fenpropathrin Biodegradation Pathway in Bacillus sp. DG-02 and !ts Potential for Bioremediation of Pyrethroid-Contaminated Soils
【24h】

Fenpropathrin Biodegradation Pathway in Bacillus sp. DG-02 and !ts Potential for Bioremediation of Pyrethroid-Contaminated Soils

机译:芽孢杆菌中的铁原蛋白生物降解途径DG-02和拟除虫菊酯污染土壤的生物修复潜力

获取原文
获取原文并翻译 | 示例
       

摘要

The widely used insecticide fenpropathrin in agriculture has become a public concern because of its heavy environmental contamination and toxic effects on mammals, yet little is known about the kinetic and metabolic behaviors of this pesticide. This study reports the degradation kinetics and metabolic pathway of fenpropathrin in Bacillus sp. DG-02, previously isolated from the pyrethroid-manufacturing wastewater treatment system. Up to 93.3% of 50 mg L~(-1) fenpropathrin was degraded by Bacillus sp. DG-02 within 72 h, and the degradation rate parameters q_(max) K_s and K1 were determined to be 0.05 h~(-1), 9.0 mg L~(-1), and 694.8 mg IT1, respectively. Analysis of the degradation products by gas chromatography—mass Spectrometry led to identification of seven metabolites of fenpropathrin, which suggest that fenpropathrin could be degraded first by cleavage of its carboxylester linkage and diaryl bond, followed by degradation of the aromatic ring and subsequent metabolism. In addition to degradation of fenpropathrin, this strain was also found to be capable of degrading a wide range of synthetic pyrethroids including deltamethrin, λ-cyhalothrin, β-cypermethrin, β-cyfluthrin, bifenthrin, and permethrin, which are also widely used insecticides with environmental contamination problems with the degradation process following the first-order kinetic model. Bioaugmentation of fenpropathrin-contaminated soils with strain DG-02 significantly enhanced the disappearance rate of fenpropathrin, and its half-life was sharply reduced in the soils. Taken together, these results depict the biodegradation mechanisms of fenpropathrin and also highlight the promising potentials of Bacillus sp. DG-02 in bioremediation of pyrethroid-contaminated soils.
机译:由于其严重的环境污染和对哺乳动物的毒害作用,在农业中广泛使用的杀虫剂苯丙酸菊酯已经引起了公众的关注,但对该农药的动力学和代谢行为了解甚少。这项研究报告了芽孢杆菌属中原卟啉的降解动力学和代谢途径。 DG-02,先前从拟除虫菊酯生产废水处理系统中分离出来。芽孢杆菌可降解高达93.3%的50 mg L〜(-1)苯丙酸。 DG-02在72 h内测定降解速率参数q_(max)K_s和K1分别为0.05 h〜(-1),9.0 mg L〜(-1)和694.8 mg IT1。通过气相色谱-质谱法对降解产物进行分析,鉴定出了7种苯酚前体代谢物,这表明苯酚前体可以首先通过其羧基键和二芳基键的裂解而被降解,然后被芳环降解并随后代谢。除了降解原卟啉外,还发现该菌株能够降解多种合成拟除虫菊酯,包括溴氰菊酯,λ-氯氟氰菊酯,β-氯氰菊酯,β-氟氰菊酯,联苯菊酯和苄氯菊酯,它们也是与遵循一级动力学模型的降解过程带来的环境污染问题。 DG-02菌株对强化菌素污染的土壤进行生物强化显着提高了强化菌素的消失率,并且其半衰期在土壤中急剧降低。综上所述,这些结果描述了苯丙酸菊酯的生物降解机制,也突出了芽孢杆菌的潜在潜力。 DG-02在拟除虫菊酯污染土壤的生物修复中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号