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基于混合有机肥载体的二苯醚类除草剂降解菌Za的固体菌剂研制

Development of solid agents of the diphenyl ether herbicide degrading bacterium sp. Za based on a mixed organic fertilizer carrier.

作者信息

Zhao Guoqiang, Tian Yanning, Yu Houyu, Li Jintao, Mao Dongmei, Faisal Rayan Mazin, Huang Xing

机构信息

Department of Microbiology, College of Life Sciences, Nanjing Agricultural University, Nanjing, China.

Department of Biology, College of Science, University of Mosul, Mosul, Iraq.

出版信息

Front Microbiol. 2022 Nov 24;13:1075930. doi: 10.3389/fmicb.2022.1075930. eCollection 2022.

Abstract

The long-term and widespread use of diphenyl ether herbicides has caused serious soil residue problems and threatens the agricultural ecological environment. The development of biodegrading agents using high-efficiency degrading strains as pesticide residue remediation materials has been widely recognized. In this study, the strain sp. Za was used to prepare solid agents for the remediation of diphenyl ether herbicides-contaminated soil. The ratio of organic fertilizer was 1:3 (pig manure: cow dung), the inoculum amount of Za was 10%, the application amount of solid agents was 7%, and the application mode was mixed application, all of which were the most suitable conditions for solid agents. After the solid agents were stored for 120 days, the amount of Za remained above 10 CFU/g. The degradation rates of the solid agents for lactofen, bifenox, fluoroglycofen, and fomesafen in soil reached 87.40, 82.40, 78.20, and 65.20%, respectively, on the 7th day. The application of solid agents alleviated the toxic effect of lactofen residues on maize seedlings. A confocal laser scanning microscope (CLSM) was used to observe the colonization of Za- on the surface of maize roots treated in the solid agents, and Za- mainly colonized the elongation zone and the mature area of maize root tips, and the colonization time exceeded 21 days. High-throughput sequencing analysis of soil community structural changes in CK, J (solid agents), Y (lactofen), and JY (solid agents + lactofen) groups showed that the addition of solid agents could restore the bacterial community structure in the rhizosphere soil of maize seedlings. The development of solid agents can facilitate the remediation of soil contaminated with diphenyl ether herbicide residues and improve the technical level of the microbial degradation of pesticide residues.

摘要

二苯醚类除草剂的长期广泛使用造成了严重的土壤残留问题,威胁着农业生态环境。利用高效降解菌株开发生物降解剂作为农药残留修复材料已得到广泛认可。本研究利用菌株Za制备用于修复二苯醚类除草剂污染土壤的固体剂。有机肥比例为1:3(猪粪:牛粪),Za接种量为10%,固体剂施用量为7%,施用方式为混施,这些均为固体剂的最适宜条件。固体剂储存120天后,Za数量仍保持在10 CFU/g以上。第7天时,固体剂对土壤中乳氟禾草灵、乙羧氟草醚、氟磺胺草醚和三氟羧草醚的降解率分别达到87.40%、82.40%、78.20%和65.20%。固体剂的施用减轻了乳氟禾草灵残留对玉米幼苗的毒害作用。利用共聚焦激光扫描显微镜(CLSM)观察了Za在固体剂处理的玉米根表面的定殖情况,Za主要定殖在玉米根尖的伸长区和成熟区,定殖时间超过21天。对CK、J(固体剂)、Y(乳氟禾草灵)和JY(固体剂+乳氟禾草灵)组土壤群落结构变化进行高通量测序分析表明,添加固体剂可恢复玉米幼苗根际土壤细菌群落结构。固体剂的开发有助于修复二苯醚类除草剂残留污染的土壤,提高农药残留微生物降解技术水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d62e/9729343/052a0b97886c/fmicb-13-1075930-g001.jpg

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