Modeling Pesticide Effects on Multiple Threatened and Endangered Cyprinid Fish Species: The Role of Life-History Traits and Ecology

IF 1.7 Q3 ECOLOGY Ecologies Pub Date : 2022-06-06 DOI:10.3390/ecologies3020015
Chiara Accolla, Amelie Schmolke, Andy Jacobson, Colleen Roy, V. Forbes, R. Brain, N. Galic
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引用次数: 2

Abstract

Mechanistic models are invaluable in ecological risk assessment (ERA) because they facilitate extrapolation of organism-level effects to population-level effects while accounting for species life history, ecology, and vulnerability. In this work, we developed a model framework to compare the potential effects of the fungicide chlorothalonil across four listed species of cyprinid fish and explore species-specific traits of importance at the population level. The model is an agent-based model based on the dynamic energy budget theory. Toxicokinetic-toxicodynamic sub-models were used for representing direct effects, whereas indirect effects were described by decreasing food availability. Exposure profiles were constructed based on hydroxychlorothalonil, given the relatively short half-life of parent chlorothalonil. Different exposure magnification factors were required to achieve a comparable population decrease across species. In particular, those species producing fewer eggs and with shorter lifespans appeared to be more vulnerable. Moreover, sequentially adding effect sub-models resulted in different outcomes depending on the interplay of life-history traits and density-dependent compensation effects. We conclude by stressing the importance of using models in ERA to account for species-specific characteristics and ecology, especially when dealing with listed species and in accordance with the necessity of reducing animal testing.
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农药对多种受威胁和濒危鲤科鱼类的影响建模:生活史特征和生态学的作用
机制模型在生态风险评估(ERA)中是无价的,因为它们有助于将生物体水平的影响外推到种群水平的影响,同时考虑物种生活史、生态学和脆弱性。在这项工作中,我们开发了一个模型框架来比较杀菌剂百菌清对四种鲤科鱼类的潜在影响,并探索种群水平上重要的物种特异性特征。该模型是基于动态能量收支理论的智能体模型。毒性动力学-毒性动力学子模型用于表示直接影响,而间接影响则通过减少食物供应来描述。考虑到母体百菌清相对较短的半衰期,基于羟基百菌清构建了暴露谱。不同的暴露放大系数才能使不同物种的种群数量减少。特别是那些产蛋少、寿命短的物种似乎更容易受到伤害。此外,根据生活史性状的相互作用和密度相关补偿效应的不同,顺序添加效应子模型会产生不同的结果。最后,我们强调了在ERA中使用模型来考虑物种特定特征和生态的重要性,特别是在处理所列物种时,以及根据减少动物试验的必要性。
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