Degradation of iprodione by a novel strain Azospirillum sp. A1-3 isolated from Tibet
文献类型: 外文期刊
第一作者: Pan, Hu
作者: Pan, Hu;Dai, Yanna;Pan, Hu;Zhu, Beike;Bu, Wenbin;Lu, Xiangyang;Liu, Huhu;Tian, Yun;Li, Jin;Zhou, Ziqiong
作者机构:
关键词: Azospirillum; novel taxa; iprodione; degradation pathway; bioremediation
期刊名称:FRONTIERS IN MICROBIOLOGY ( 影响因子:5.2; 五年影响因子:6.2 )
ISSN:
年卷期: 2023 年 13 卷
页码:
收录情况: SCI
摘要: A bacterial strain A1-3 with iprodione-degrading capabilities was isolated from the soil for vegetable growing under greenhouses at Lhasa, Tibet. Based on phenotypic, phylogenetic, and genotypic data, strain A1-3 was considered to represent a novel species of genus Azospirillum. It was able to use iprodione as the sole source of carbon and energy for growth, 27.96 mg/L (50.80%) iprodione was reduced within 108 h at 25 degrees C. During the degradation of iprodione by Azospirillum sp. A1-3, iprodione was firstly degraded to N-(3,5-dichlorophenyl)-2,4-dioxoimidazolidine, and then to (3,5-dichlorophenylurea) acetic acid. However, (3,5-dichlorophenylurea) acetic acid cannot be degraded to 3,5-dichloroaniline by Azospirillum sp. A1-3. A ipaH gene which has a highly similarity (98.72-99.92%) with other previously reported ipaH genes, was presented in Azospirillum sp. A1-3. Azospirillum novel strain with the ability of iprodione degradation associated with nitrogen fixation has never been reported to date, and Azospirillum sp. A1-3 might be a promising candidate for application in the bioremediation of iprodione-contaminated environments.
分类号:
- 相关文献
作者其他论文 更多>>
-
A Maximum Dose Bioassay to Assess Efficacy of Spinetoram against Cowpea Thrip Megalurothrips usitatus in China
作者:Yu, Huailiang;Wu, Mingyue;Li, Shaoka;Zou, Xiang;Kong, Xiangyi;Yu, Huailiang;Li, Shaoka;Li, Jin;Guo, Zhaojiang;Wu, Qingjun;Zhang, Youjun;Xie, Wen;Guo, Zhaojiang;Wu, Qingjun;Zhang, Youjun;Xie, Wen
关键词:cowpea thrip; Megalurothrips usitatus (Bagnall); spinetoram; maximum dose bioassay
-
Biotransformation of HBCDs by the microbial communities enriched from mangrove sediments
作者:Yu, Fei;Zhang, Bing;Liu, Yongjin;Luo, Wenqi;Chen, Haonan;Gao, Jun'na;Peng, Tao;Wang, Hui;Huang, Tongwang;Hu, Zhong;Ye, Xueying;Li, Jin;Xie, Qingyi
关键词:Microbial community; HBCDs; Biotransformation; Dehalogenase
-
The superior allele LEA12OR in wild rice enhances salt tolerance and yield
作者:Ge, Yuwei;Chen, Gaoming;Cheng, Xinran;Li, Chao;Tian, Yunlu;Chi, Wenchao;Li, Jin;Dai, Zhaoyang;Wang, Chunyuan;Duan, Erchao;Wang, Chunming;Wan, Jianmin;Liu, Yan;Sun, Zhiguang;Li, Jingfang;Wang, Baoxiang;Xu, Dayong;Sun, Xianjun;Zhang, Hui;Wan, Jianmin;Zhang, Wenhua;Wang, Chunming
关键词:rice (Oryza sativa L.); wild rice (Oryza rufipogon Griff.); superior allele; salt tolerance (ST); late embryogenesis abundant (LEA) protein; abscisic acid (ABA)
-
Pararhizobium qamdonense sp. nov., Isolated from an Alpine Soil in Tibet and the Reclassification of Rhizobium gei Shi et al. 2016 as Pararhizobium gei comb. nov.
作者:Zhang, Yi-fan;Dai, Yan-na;Pu, Ji-feng;Pan, Hu;Liu, Hu-hu;Pan, Hu;Tian, Yun;Zhang, Yi-fan;Dai, Yan-na;Pu, Ji-feng;Pan, Hu;Yang, Xiao-feng
关键词:
-
Robust nitrogen-rich covalent polymeric networks for ultra-efficient and selective palladium capture under harsh conditions
作者:Yang, Yuxiang;Zhang, Zeqian;Jiang, Yongjie;Li, Jin;Cai, Yimin;Yuan, Lihua;Feng, Wen;Wang, Ying;Li, Qing;Yang, Pinghua
关键词:Covalent polymeric network; Palladium capture; High-level liquid waste; Macroscopic adsorbent
-
QTL detection and candidate gene identification of qCTB1 for cold tolerance in the Yunnan plateau landrace rice
作者:Guo, Haifeng;Zou, Andong;Khan, Najeeb Ullah;Gu, Yunsong;Li, Jin;Sun, Xingming;Zhang, Zhanying;Zhang, Hongliang;Li, Jinjie;Li, Zichao;Guo, Yongmei;Li, Huahui;Wu, Zhigang;Yuan, Pingrong;Zeng, Yawen;Guo, Haifeng;Peng, Youliang
关键词:Rice; Cold tolerance; QTL analysis; QTL pyramiding; Candidate gene
-
Transmission from seed to seedling and elimination of alfalfa viruses
作者:Li, Jin;Luo, Yingning;Ban, Liping;Li, Jin;Shang, Qiaoxia;Shang, Qiaoxia;Wei, Shuhua;Zhao, Chaoyang
关键词:alfalfa viruses; transmission from seed to seedling; alfalfa mosaic virus (AMV); Medicago sativa alphapartitivirus 2 (MsAPV2); viruses elimination