乙酰甲胺磷
甲胺磷
生物修复
化学
生物强化
环境化学
降级(电信)
微生物降解
生物降解
杀虫剂
微生物
农学
生物
细菌
污染
有机化学
生态学
电信
遗传学
计算机科学
作者
Ziqiu Lin,Shimei Pang,Zhe Zhou,Xiaozhen Wu,Jiayi Li,Yaohua Huang,Wenping Zhang,Qiqi Lei,Pankaj Bhatt,Sandhya Mishra,Shaohua Chen
标识
DOI:10.1016/j.jhazmat.2021.127841
摘要
The microbial degradation of acephate in pure cultures has been thoroughly explored, but synergistic metabolism at the community level has rarely been investigated. Here, we report a novel microbial consortium, ZQ01, capable of effectively degrading acephate and its toxic product methamidophos, which can use acephate as a source of carbon, phosphorus and nitrogen. The degradation conditions with consortium ZQ01 were optimized using response surface methodology at a temperature of 34.1 °C, a pH of 8.9, and an inoculum size of 2.4 × 108 CFU·mL-1, with 89.5% of 200 mg L-1 acephate degradation observed within 32 h. According to the main products methamidophos, acetamide and acetic acid, a novel degradation pathway for acephate was proposed to include hydrolysis and oxidation as the main pathways of acephate degradation. Moreover, the bioaugmentation of acephate-contaminated soils with consortium ZQ01 significantly enhanced the removal rate of acephate. The results of the present work demonstrate the potential of microbial consortium ZQ01 to degrade acephate in water and soil environments, with a different and complementary acephate degradation pathway.
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