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预测化学品从生物体到生态系统服务提供的影响:以杀虫剂对淡水湖的影响为例。

Predicting impacts of chemicals from organisms to ecosystem service delivery: A case study of insecticide impacts on a freshwater lake.

机构信息

Syngenta Crop Protection LLC., Greensboro, NC, USA.

Environmental Science and Studies Program, and the Department of Biological Sciences, Towson University, Towson, MD, USA.

出版信息

Sci Total Environ. 2019 Sep 10;682:426-436. doi: 10.1016/j.scitotenv.2019.05.187. Epub 2019 May 17.

Abstract

Assessing and managing risks of anthropogenic activities to ecological systems is necessary to ensure sustained delivery of ecosystem services for future generations. Ecological models provide a means of quantitatively linking measured risk assessment endpoints with protection goals, by integrating potential chemical effects with species life history, ecological interactions, environmental drivers and other potential stressors. Here we demonstrate how an ecosystem modeling approach can be used to quantify insecticide-induced impacts on ecosystem services provided by a lake from toxicity data for organism-level endpoints. We used a publicly available aquatic ecosystem model AQUATOX that integrates environmental fate of chemicals and their impacts on food webs in aquatic environments. By simulating a range of exposure patterns, we illustrated how exposure to a hypothetical insecticide could affect aquatic species populations (e.g., recreational fish abundance) and environmental properties (e.g., water clarity) that would in turn affect delivery of ecosystem services. Different results were observed for different species of fish, thus the decision to manage the use of the insecticide for ecosystem services derived by anglers depends upon the favored species of fish. In our hypothetical shallow reservoir, water clarity was mostly driven by changes in food web dynamics, specifically the presence of zooplankton. In contrast to the complex response by fishing value, water clarity increased with reduced insecticide use, which produced a monotonic increase in value by waders and swimmers. Our study clearly showed the importance of considering nonlinear ecosystem feedbacks where the presence of insecticide changed the modeled food-web dynamics in unexpected ways. Our study highlights one of the main advantages of using ecological models for risk assessment, namely the ability to generalize to meaningful levels of organization and to facilitate quantitative comparisons among alternative scenarios and associated trade-offs among them while explicitly accounting for different groups of beneficiaries.

摘要

评估和管理人为活动对生态系统的风险对于确保为后代持续提供生态系统服务是必要的。生态模型通过将潜在的化学效应与物种生活史、生态相互作用、环境驱动因素和其他潜在胁迫因素相结合,为定量链接测量的风险评估终点与保护目标提供了一种手段。在这里,我们展示了如何使用生态系统建模方法,根据生物体水平终点的毒性数据,量化杀虫剂对湖泊提供的生态系统服务的影响。我们使用了一种公开可用的水生生态系统模型 AQUATOX,该模型整合了化学物质在环境中的归宿及其对水生环境中食物网的影响。通过模拟一系列暴露模式,我们说明了暴露于假设的杀虫剂如何影响水生物种种群(例如,娱乐性鱼类的丰度)和环境特性(例如,水的清澈度),这反过来又会影响生态系统服务的提供。不同的鱼类物种观察到了不同的结果,因此,为了保护由钓鱼者获得的生态系统服务而管理杀虫剂的使用的决策取决于受青睐的鱼类物种。在我们假设的浅水库中,水的清澈度主要受食物网动态变化的驱动,特别是浮游动物的存在。与钓鱼价值的复杂反应形成对比的是,水的清澈度随着杀虫剂使用的减少而增加,这使得涉禽和游泳者的价值呈单调增加。我们的研究清楚地表明了考虑非线性生态系统反馈的重要性,即杀虫剂的存在以意想不到的方式改变了模型化的食物网动态。我们的研究强调了使用生态模型进行风险评估的主要优势之一,即能够概括到有意义的组织水平,并在明确考虑不同受益群体的情况下,促进对替代方案的定量比较及其之间的权衡取舍。

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