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Bioenergetics modelling to analyse and predict the joint effects of multiple stressors: Meta-analysis and model corroboration

机译:生物能器模型以分析和预测多重压力源的关节效应:Meta分析和模型串联

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Understanding the consequences of the combined effects of multiple stressors-including stress from man-made chemicals-is important for conservation management, the ecological risk assessment of chemicals, and many other ecological applications. Our current ability to predict and analyse the joint effects of multiple stressors is insufficient to make the prospective risk assessment of chemicals more ecologically relevant because we lack a full understanding of how organisms respond to stress factors alone and in combination. Here, we describe a Dynamic Energy Budget (DEB) based bioenergetics model that predicts the potential effects of single or multiple natural and chemical stressors on life history traits. We demonstrate the plausibility of the model using a meta-analysis of 128 existing studies on freshwater invertebrates. We then validate our model by comparing its predictions for a combination of three stressors (i.e. chemical, temperature, and food availability) with new, independent experimental data on life history traits in the daphnid Ceriodaphnia dubia. We found that the model predictions are in agreement with observed growth curves and reproductive traits. To the best of our knowledge, this is the first time that the combined effects of three stress factors on life history traits observed in laboratory studies have been predicted successfully in invertebrates. We suggest that a re-analysis of existing studies on multiple stressors within the modelling framework outlined here will provide a robust null model for identifying stressor interactions, and expect that a better understanding of the underlying mechanisms will arise from these new analyses. Bioenergetics modelling could be applied more broadly to support environmental management decision making.
机译:了解多种压力源的组合效应的后果 - 包括人造化学品的压力 - 对于保护管理是重要的,对化学品的生态风险评估以及许多其他生态应用是重要的。我们目前预测和分析多次压力源的关节效果的能力不足以使化学品的前瞻性风险评估更加生态相关,因为我们缺乏全面了解有机体如何应对单独应力因素和组合的应力因素。在这里,我们描述了一种基于动态的能量预算(DEB)的生物能量学模型,其预测单一或多种自然和化学压力源对生命历史特征的潜在影响。我们使用128种现有研究的淡水无脊椎动物的荟萃分析来证明模型的合理性。然后,我们通过比较其预测的三个压力源(即化学,温度和食物可用性)的预测来验证我们的模型,其具有关于Daphnid Ceriodaphnia Dubia的新的独立实验数据的新的独立实验数据。我们发现模型预测与观察到的生长曲线和生殖特征一致。据我们所知,这是第一次在无脊椎动物中成功预测了在实验室研究中观察到的终身历史特征的三个应力因素的综合影响。我们建议在这里概述的建模框架内的对多个压力源的现有研究的重新分析将提供一种用于识别应力源相互作用的鲁棒空模型,并期望从这些新分析中产生更好地理解潜在机制。生物能器建模可以更广泛地应用,以支持环境管理决策。

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