生物降解
寡养单胞菌
化学
共代谢
环境化学
微生物代谢
氮气循环
细菌
代谢途径
新陈代谢
微生物学
生物
氮气
生物化学
生物修复
有机化学
基因
遗传学
16S核糖体RNA
作者
Julianna Peixoto,Carla Simone Vizzotto,Alexandre Floriani Ramos,Gabriel Sérgio Costa Alves,Andrei Stecca Steindorff,Ricardo Henrique Krüger
标识
DOI:10.1016/j.jhazmat.2022.128682
摘要
Polyethylene (PE) is the most widely used plastic and its accumulation on natural environments has reached alarming levels causing severe damage to wildlife and human health. Despite the significance of this global issue, little is known about specific metabolic mechanisms behind PE biodegradation-a promising and sustainable remediation method. Herein, we describe a novel role of nitrogen metabolism in the fragmentation and oxidation of PE mediated by biological production of NOx in three PE-degrading strains of Comamonas, Delftia, and Stenotrophomonas. Resultant nitrated PE fragments are assimilated and then metabolized by these bacteria in a process assisted by nitronate monooxygenases and nitroreductases to support microbial growth. Due to the conservation of nitrogen metabolism genes, we anticipate that this oxidative mechanism is potentially shared by other nitrifier and denitrifier microbes.
科研通智能强力驱动
Strongly Powered by AbleSci AI