...
首页> 外文期刊>The Science of the Total Environment >Formation of 2,4-D bound residues in soils: New insights into microbial metabolism
【24h】

Formation of 2,4-D bound residues in soils: New insights into microbial metabolism

机译:土壤中2,4-D结合残留物的形成:微生物代谢的新见解

获取原文
获取原文并翻译 | 示例

摘要

The microbial contribution to the formation of bound residues in soils is studied by characterizing the metabolic activity of three microorganisms (Trametes versicolor, Fusarium solani and Ralstonia eutropha) on ~(14)C-2,4-dichlorophenoxyacetic acid (2,4-D) during incubation in synthetic liquid media and soil. A fractionation protocol was applied to quantify the ~(14)C-2,4-D that was incorporated into the biomass among biomolecular-like fractions. Successive fractionation of microbial biomass was implemented to break up and quantify the methanol/dichloromethane fraction (corresponding to the ~(14)C-lipid-like fraction), the trichloroacetic acid fraction (or hydrolysed ~(14)C-polysaccharide-like fraction) and the acid hydrolysable fraction (or the hydrolysed ~(14)C-protein-like fraction). Relevant differences in the 2,4-D degradation and biomass radioactivity distribution among the three microorganisms were found. The ~(14)C-protein-like fraction was the most consistent biomass fraction for reflecting the pesticide use capacity of the microorganisms under liquid and soil conditions. 2,4-D and its metabolite 4-chlorophenol were detected in methanol/dichloromethane and trichloroacetic acid fractions of the biomass of microorganisms exhibiting a low capacity to mineralize 2,4-D, thus proving that the microbial participation in the formation of bound residues while conserving the initial pesticide structure under natural soil conditions may be intimately associated with the lipid- and polysaccharide-like constituents. The fractionation protocol differentiates between ~(14)C that is incorporated into biomass as a biomolecular constituent and the pesticide or its metabolites that accumulate in the biomass and thus correspond to the stricto sensu definition of bound residues.
机译:通过表征三种微生物(杂色Trametes,杂色镰刀菌和富营养的Ralstonia eutropha)在〜(14)C-2,4-dichlorophenoxyacetic acid(2,4-D)上的代谢活性,研究了微生物对土壤中结合残基形成的影响。 )在合成液体培养基和土壤中孵育。应用了分馏方案来量化〜(14)C-2,4-D,其被掺入到生物分子样馏分中的生物质中。进行微生物生物质的连续分馏以分解并定量甲醇/二氯甲烷馏分(对应于〜(14)C-脂质样馏分),三氯乙酸馏分(或水解的〜(14)C-多糖样馏分) )和酸可水解部分(或已水解的〜(14)C蛋白样部分)。发现了三种微生物之间2,4-D降解和生物量放射性分布的相关差异。 〜(14)C-蛋白样馏分是反映液体和土壤条件下微生物对农药使用能力的最一致的生物质馏分。在微生物/生物质的甲醇/二氯甲烷和三氯乙酸馏分中检测到2,4-D及其代谢物4-氯苯酚,其矿化2,4-D的能力较低,从而证明微生物参与了结合残基的形成同时在天然土壤条件下保留农药的初始结构可能与脂质和多糖样成分密切相关。分馏方案区分了作为生物分子成分掺入生物质的〜(14)C和在生物质中积累的农药或其代谢产物,因此对应于结合残基的严格定义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号