生物降解
生物强化
氯氰菊酯
代谢物
拟除虫菊酯
细菌
生物修复
微生物联合体
化学
环境污染
食品科学
环境化学
杀虫剂
生物
生物技术
微生物
微生物学
生物化学
农学
有机化学
环境科学
环境保护
遗传学
作者
Willian Garcia Birolli,Bianca Ferreira da Silva,Édson Rodrigues Filho
标识
DOI:10.1016/j.envres.2022.114388
摘要
Pyrethroids, such as cypermethrin (CYP), are widely employed in agriculture, promoting environmental pollution and the need for efficient decontamination methods. In this study, bacteria from orange crops were explored for CYP biodegradation. Among 40 tested bacterial strains, 20 grew in the presence of CYP and 19 performed statistically significant CYP biodegradation in 5 days (20.5%–97.8%). In addition, 3-phenoxybenzoic acid, the main metabolite from CYP, was quantified ranging from 1.1 mg.L−1 to 32.1 mg.L−1. The five most efficient strains, and consortia composed of 5, 10 and 20 bacteria biodegraded the CYP formulation as sole carbon source in phosphate buffer and in minimum mineral medium. Under optimized conditions determined employing Response Surface Methodology, Bacillus sp. CSA-1 and the consortium composed of 10 strains biodegraded 71.0% and 71.6% CYP in 24 h, respectively. Moreover, metabolite identification enabled the proposal of an extended biodegradation pathway with 29 identified compounds, including different new amide and amine derivatives that expanded the knowledge about the fate of this compound in the environment. Experiments of bioaugmentation in soil using Bacillus sp. CSA-1 and the consortium of 10 bacterial strains resulted in faster CYP biodegradation than natural attenuation, showing that the selection of efficient strains for composing a consortium is an interesting approach for bioremediation of pyrethroids.
科研通智能强力驱动
Strongly Powered by AbleSci AI