首页> 外文期刊>SAR and QSAR in Environmental Research >QSAR models for biocides: The example of the prediction of Daphnia magna acute toxicity
【24h】

QSAR models for biocides: The example of the prediction of Daphnia magna acute toxicity

机译:杀菌剂的QSAR模型:Daphnia Magna急性毒性预测的示例

获取原文
获取原文并翻译 | 示例
           

摘要

Biocides are multi-component products used to control undesired and harmful organisms able to affect human or animal health or to damage natural and manufactured products. Because of their widespread use, aquatic and terrestrial ecosystems could be contaminated by biocides. The environmental impact of biocides is evaluated through eco-toxicological studies with model organisms of terrestrial and aquatic ecosystems. We focused on the development of in silico models for the evaluation of the acute toxicity (EC50) of a set of biocides collected from different sources on the freshwater crustacean Daphnia magna, one of the most widely used model organisms in aquatic toxicology. Toxicological data specific for biocides are limited, so we developed three models for daphnid toxicity using different strategies (linear regression, random forest, Monte Carlo (CORAL)) to overcome this limitation. All models gave satisfactory results in our datasets: the random forest model showed the best results with a determination coefficient r(2) = 0.97 and 0.89, respectively, for the training (TS) and the validation sets (VS) while linear regression model and the CORAL model had similar but lower performance (r(2) = 0.83 and 0.75, respectively, for TS and VS in the linear regression model and r(2) = 0.74 and 0.75 for the CORAL model).
机译:杀生物剂是用于控制不希望的和有害生物的多组分产品,能够影响人类或动物健康或损坏天然和制造的产品。由于他们广泛的使用,水生和陆地生态系统可能被杀生物剂污染。通过与陆地和水生生态系统的模型生物的生态毒理学研究评估生物杀菌剂的环境影响。我们专注于在淡水甲壳动物Daphnia Magna的不同来源中收集的一组杀菌剂的急性毒性(EC50)的Silico模型的发展,是水生毒理学中最广泛使用的模型生物之一。特异于杀生物剂的毒理学数据是有限的,因此我们使用不同的策略开发了Daphnid毒性的三种模型(线性回归,随机森林,蒙特卡罗(珊瑚))来克服这种限制。所有型号都在我们的数据集中获得了满意的结果:随机森林模型显示最佳结果,即确定系数R(2)= 0.97和0.89,用于训练(TS)和验证集(VS),而线性回归模型珊瑚模型分别具有相似但较低的性能(R(2)= 0.83和0.75,用于线性回归模型中的TS和VS,R(2)= 0.74和0.75用于珊瑚模型)。

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