The Two-Component Monooxygenase MeaXY Initiates the Downstream Pathway of Chloroacetanilide Herbicide Catabolism in Sphingomonads
文献类型: 外文期刊
第一作者: Meng, Qiang
作者: Meng, Qiang;Yang, Youjian;Chu, Cuiwei;Hong, Qing;Yan, Xin;He, Jian;Cheng, Minggen;Chen, Qing;Li, Yi;Cheng, Dan
作者机构:
关键词: chloroacetanilide herbicides;2-methyl-6-ethylaniline;2;6-diethylaniline;para-hydroxylation;MeaXY;flavoprotein monooxygenase;sphingomonads
期刊名称:APPLIED AND ENVIRONMENTAL MICROBIOLOGY ( 影响因子:4.792; 五年影响因子:5.26 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: Due to the extensive use of chloroacetanilide herbicides over the past 60 years, bacteria have evolved catabolic pathways to mineralize these compounds. In the upstream catabolic pathway, chloroacetanilide herbicides are transformed into the two common metabolites 2-methyl-6-ethylaniline (MEA) and 2,6-diethylaniline (DEA) through N-dealkylation and amide hydrolysis. The pathway downstream of MEA is initiated by the hydroxylation of aromatic rings, followed by its conversion to a substrate for ring cleavage after several steps. Most of the key genes in the pathway have been identified. However, the genes involved in the initial hydroxylation step of MEA are still unknown. As a special aniline derivative, MEA cannot be transformed by the aniline dioxygenases that have been characterized. Sphingobium baderi DE-13 can completely degrade MEA and use it as a sole carbon source for growth. In this work, an MEA degradation-deficient mutant of S. baderi DE-13 was isolated. MEA catabolism genes were predicted through comparative genomic analysis. The results of genetic complementation and heterologous expression demonstrated that the products of meaX and meaY are responsible for the initial step of MEA degradation in S. baderi DE-13. MeaXY is a two-component flavoprotein mono-oxygenase system that catalyzes the hydroxylation of MEA and DEA using NADH and Flavin mononucleotide (FMN) as cofactors. Nuclear magnetic resonance (NMR) analysis confirmed that MeaXY hydroxylates MEA and DEA at the para-position. Transcription of meaX was enhanced remarkably upon induction of MEA or DEA in S. baderi DE-13. Additionally, meaX and meaY were highly conserved among other MEA-degrading sphingomonads. This study fills a gap in our knowledge of the biochemical pathway that carries out mineralization of chloroacetanilide herbicides in sphingomonads.
分类号: Q939.9`X1
- 相关文献
作者其他论文 更多>>
-
The AaBBX21-AaHY5 module mediates light-regulated artemisinin biosynthesis in Artemisia annua L.
作者:He, Weizhi;Liu, Hang;Wu, Zhangkuanyu;Miao, Qing;Hu, Xinyi;Yan, Xin;Wen, Hangyu;Zhang, Yaojie;Fu, Xueqing;Tang, Kexuan;Li, Ling;Ren, Li
关键词:AaBBX21; AaHY5; AaCOP1; Artemisia annua L.; artemisinin biosynthesis; light
-
Patterns and causes of soil heavy metals and carbon stock in green spaces along an urbanization gradient
作者:Zou, Cui;Huang, Jun-long;Li, Yi;Zhao, Yang;Liu, Yu-ying;Zhao, Xiao-jun;Zhu, Guang-yu;Qian, Shen-hua;Wang, Chen-chen;Hu, Xin-zhi
关键词:Soil heavy metal; Soil nitrogen; Soil organic carbon; Soil pH; Soil phosphorus
-
Multifunctional Dual Network Hydrogel Loaded with Novel Tea Polyphenol Magnesium Nanoparticles Accelerates Wound Repair of MRSA Infected Diabetes
作者:Hu, Xulin;Qian, Zhiyong;Hu, Xulin;Qian, Zhiyong;Hu, Xulin;Wang, Chun;Wang, Yao;Hu, Xulin;Wang, Chun;Wang, Yao;He, Jian;Qiao, Liang;Wang, Chun;Wang, Yao;Yu, Rongxin;Xu, Wei;Zhang, Xiangchun;Wang, Fan;Yang, Shuhao
关键词:diabetes wound healing; double network hydrogel; magnesium nanoparticles; MRSA biofilm; tea polyphenol
-
Near-gapless and haplotype-resolved apple genomes provide insights into the genetic basis of rootstock-induced dwarfing
作者:Li, Wei;Li, Hui;Sun, Haochen;Wang, Shiyao;Wang, Zijun;Li, Yuqi;Zhou, Bowen;Fan, Xingqiang;Xiong, Yao;Wang, Yi;Xu, Xuefeng;Han, Zhenhai;Chu, Chong;Zhang, Hengtao;Foster, Toshi M.;Lopez-Girona, Elena;Yu, Jiaxin;Li, Yi;Ma, Yue;Zhang, Ke;Zhang, Ke;Han, Yongming;Deng, Cecilia H.
关键词:
-
Restricted colloidal-bound phosphorus release controlled by alternating flooding and drying cycles in an alkaline calcareous soil
作者:Ding, Shuai;Zhang, Shuai;Chen, Shuo;Chen, Qing;Zhang, Shuai;Wang, Yang
关键词:Moisture management; Colloidal transport; Phosphorus loss; Ionic strength; Phosphorus sorption
-
Engineering Antimicrobial Metal-Phenolic Network Nanoparticles with High Biocompatibility for Wound Healing
作者:Yu, Rongxin;Chen, Hongping;Zheng, Qinqin;Fu, Zhouping;Lu, Chengyin;Zhang, Xiangchun;He, Jian;Zhang, Zhichao;Zhou, Jiajing;Lin, Zhixing;Caruso, Frank
关键词:biofilms; metal-organic materials; polyphenols; quinoprotein; selective antimicrobial
-
Ammonium addition reduces phosphorus leaching in a long-term mineral or organic fertilized calcareous soil during flooding conditions
作者:Wei, Lulu;Zhou, Yan;Yin, Guiming;Cui, Jianyu;Liu, Rui;Chen, Qing;Zhang, Shuai;Yin, Junhui;Zhang, Shuai
关键词:Phosphorus leaching; Flooded; Calcareous soil; Ammonium; Calcium; Magnesium