...
首页> 外文期刊>Environmental Science: Processes & Impacts >Eawag-Soil in enviPath: a new resource for exploring regulatory pesticide soil biodegradation pathways and half-life data
【24h】

Eawag-Soil in enviPath: a new resource for exploring regulatory pesticide soil biodegradation pathways and half-life data

机译:EAWAG-TANIPATH中的土壤:探索监管农药土壤生物降解路径和半衰期数据的新资源

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Developing models for the prediction of microbial biotransformation pathways and half-lives of trace organic contaminants in different environments requires as training data easily accessible and sufficiently large collections of respective biotransformation data that are annotated with metadata on study conditions. Here, we present the Eawag-Soil package, a public database that has been developed to contain all freely accessible regulatory data on pesticide degradation in laboratory soil simulation studies for pesticides registered in the EU (282 degradation pathways, 1535 reactions, 1619 compounds and 4716 biotransformation half-life values with corresponding metadata on study conditions). We provide a thorough description of this novel data resource, and discuss important features of the pesticide soil degradation data that are relevant for model development. Most notably, the variability of half-life values for individual compounds is large and only about one order of magnitude lower than the entire range of median half-life values spanned by all compounds, demonstrating the need to consider study conditions in the development of more accurate models for biotransformation prediction. We further show how the data can be used to find missing rules relevant for predicting soil biotransformation pathways. From this analysis, eight examples of reaction types were presented that should trigger the formulation of new biotransformation rules, e.g., Ar-OH methylation, or the extension of existing rules, e.g., hydroxylation in aliphatic rings. The data were also used to exemplarily explore the dependence of half-lives of different amide pesticides on chemical class and experimental parameters. This analysis highlighted the value of considering initial transformation reactions for the development of meaningful quantitative-structure biotransformation relationships (QSBR), which is a novel opportunity offered by the simultaneous encoding of transformation reactions and corresponding half-lives in Eawag-Soil. Overall, Eawag-Soil provides an unprecedentedly rich collection of manually extracted and curated biotransformation data, which should be useful in a great variety of applications.
机译:开发用于预测微生物生物转化途径的模型和不同环境中痕量有机污染物的半衰期需要作为训练数据,并且可以在研究条件上用元数据注释的各个生物转化数据的易于访问和足够大的集合。在这里,我们展示了一款被制定的公共数据库,该数据库已开发出来,该数据库是在欧盟登记的农药(282降解途径,1535个反应,1619种化合物和4716中)生物转化与研究条件相应元数据的半衰期值)。我们提供了对这种新型数据资源的全面描述,并讨论了与模型开发相关的农药土壤退化数据的重要特征。最值得注意的是,各种化合物的半衰期值的可变性大于大约比所有化合物跨越的中值半衰期值的整个数量级,表明需要考虑更多地区的发展精确的生物翻译预测模型。我们进一步展示了如何使用数据来找到缺失的规则,与预测土壤生物转化途径相关。从该分析中,提出了八种反应类型的实例,其应引发新的生物转化规则,例如Ar-OH甲基化或现有规则的延伸,例如脂肪族环中的羟基化。该数据还用于示例性地探讨不同酰胺农药半衰期对化学类别和实验参数的依赖性。该分析突出了考虑初始转化反应的初始转化反应,以发展有意义的定量结构的生物转换关系(QSBR),这是通过同时编码转化反应和EAWAG土壤中相应半衰期的新机会。总体而言,Eawag-Fach提供了前所未有的丰富的手动提取和策划生物转化数据集,这应该在各种应用中有用。

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