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首页> 外文期刊>International Biodeterioration & Biodegradation >Alternative biodegradation pathway of the herbicide diuron
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Alternative biodegradation pathway of the herbicide diuron

机译:除草剂Diuron的替代生物降解途径

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Native soil microbiota is important to maintain the quality of the environment, but with the intensive use of agrochemicals, changes in microbial biomass and formation of toxic waste have been observed. Studies have emphasized the importance of using bioremediation to reduce the diuron in the environment, as well as other pesticides. The biodegradation of diuron is usually described under aerobic conditions, in which microorganisms perform an N-demethylation of the urea group and subsequent hydrolysis, producing three different metabolites: 3-(3,4-dichlorophenyl)-3-methylurea, 3,4-dichlorophenylurea, and 3,4-dichloroaniline. In this study, the biodegradation of this herbicide by bacteria isolated from a sugarcane cultivation area and the degradation pathway of diuron were evaluated. The metabolites generated from diuron biodegradation were analyzed by High Performance Liquid Chromatography coupled to a mass spectrometer with an electrospray ionization source and ion trap analyzer. Isolate 5204, identified as Escherichia fergusonii by sequencing of the 16S rDNA, adk, gyrB and recA was able to remove the chlorine from the herbicide molecule, as well as forming the metabolites already described. Therefore, these results suggest that isolate 5204 can degrade diuron by a different pathway not yet described.
机译:本土土壤微生物达对维持环境质量非常重要,但随着农业化学物质的密集使用,已经观察到微生物生物量的变化和有毒废物的形成。研究强调了使用生物修复减少环境中的利剂以及其他杀虫剂的重要性。 Diuron的生物降解通常在有氧条件下描述,其中微生物进行尿素组的N-去甲基化和随后的水解,产生三种不同的代谢物:3-(3,4-二氯苯基)-3-甲基脲,3,4-二氯苯脲和3,4-二氯苯胺。在该研究中,评估来自甘蔗栽培区域中分离的细菌的这种除草剂的生物降解和利尿剂的降解途径。通过高性能液相色谱法分析从二核生物降解产生的代谢物,其具有电喷雾电离源和离子捕集分析仪的质谱仪。通过测序16S RDNA,ADK,GyrB和RECA鉴定为Escherichia Fergusonii的分离物5204能够从除草剂分子中除去氯,以及形成已经描述的代谢物。因此,这些结果表明,分离物5204可以通过尚未描述的不同途径降解Diuron。

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