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Influence of Taxonomic Relatedness and Chemical Mode of Action in Acute Interspecies Estimation Models for Aquatic Species

机译:分类学上的关联性和化学作用方式在水生物种的急性物种估计模型中的影响

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摘要

Ecological risks to aquatic organisms are typically assessed using acute toxicily data for relatively few species and with limited understanding of relative species sensitivity. We developed a comprehensive set of interspecies correlation estimation (ICE) models based on acute toxicrty data for aquatic organisms and evaluated three key sources of model uncertainty: taxonomic relatedness, chemical mode of action (MOA), and model parameters. Models are least-squares regressions of acute toxicity of surrogate and predicted species. A total of 780 models were derived from acute values for 77 species of aquatic organisms and over 550 chemicals. Cross-validation of models showed that accurate model prediction was greatest for models with surrogate and predicted taxa within the same family (91% of predictions within 5-fold of measured values). Recursive partitioning provided user guidance for selection of robust models using model mean square error and taxonomic relatedness. Models built with a single MOA were more robust than models built using toxicity values with multiple MOAs, and improve predictions among species pairs with large taxonomic distance (e.g., within phylum). These results indicate that between-species toxicity extrapolation can be improved using MQA-based models for less related taxa pairs and for those specific MOAs.
机译:通常使用相对较少物种的急性毒性数据,并且对相对物种敏感性的了解有限,来评估对水生生物的生态风险。我们基于水生生物的急性毒性数据,开发了一套全面的种间相关估计(ICE)模型,并评估了模型不确定性的三个关键来源:分类学相关性,化学作用方式(MOA)和模型参数。模型是替代物种和预测物种急性毒性的最小二乘回归。从77种水生生物和550多种化学物质的急性值中得出了总共780个模型。模型的交叉验证显示,对于在同一家族中具有替代和预测分类单元的模型,准确的模型预测最大(91%的预测在测量值的5倍之内)。递归分区为使用模型均方误差和分类相关性的健壮模型选择提供了用户指南。使用单个MOA构建的模型比使用具有多个MOA毒性值的模型建立的模型更健壮,并且可以改善具有较大分类距离(例如,门内)的物种对之间的预测。这些结果表明,使用基于MQA的模型对关联性较低的类群和那些特定的MOA可以改善种间毒性外推。

著录项

  • 来源
    《Environmental Science & Technology》 |2010年第19期|p.7711-7716|共6页
  • 作者单位

    US Environmental Protection Agency, National Health and Environmental Effects Laboratory, Gulf Ecology Division,1 Sabine Island Dr., Gulf Breeze, Florida 32561;

    rnUS Environmental Protection Agency, National Health and Environmental Effects Laboratory, Gulf Ecology Division,1 Sabine Island Dr., Gulf Breeze, Florida 32561;

    rnUS Environmental Protection Agency, National Health and Environmental Effects Laboratory, Gulf Ecology Division,1 Sabine Island Dr., Gulf Breeze, Florida 32561;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 14:04:02

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