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Sublethal toxic effects in a generic aquatic ecosystem

机译:一般水生生态系统中的亚致死毒性

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The dynamical behaviour of an aquatic ecosystem stressed by limiting nutrients and exposure to a conservative toxicant is investigated. The ecosystem downstream of a pollution source consists of: nutrients, biotic pelagic and benthic communities, and detritus pools in the water body and on the sediment. The long-term dynamic behaviour of this system is analysed using bifurcation theory. A reference state is defined and our aim is to quantify the effects of toxicological (toxic exposure), ecological (feeding, predation, competition) and environmental stressors (nutrient supply, dilution rate). To that end we calculate the ranges of stress levels where the long-term dynamics (equilibrium, oscillatory or chaotic behaviour) is qualitatively the same. In this way we obtain levels of toxicological loading where the abundances of all populations are the same as in the reference case, the no-effect region. We will also calculate toxic exposure levels that do not lead to a change in the composition of the ecosystem, and therefore its structure, with respect to the reference unexposed situation, but where population abundances and internal toxicant concentrations may have been changed quantitatively. The model predicts that due to indirect effects even low sublethal toxic exposure can lead to catastrophic changes in the ecosystem functioning and structure, and that the long-term sensitivities of oligotrophic and eutrophic systems to toxic stress are different.
机译:研究了通过限制养分和暴露于保守的有毒物质而引起的水生生态系统的动力学行为。污染源下游的生态系统包括:养分,生物上层和底栖生物群落以及水体和沉积物上的碎屑池。使用分叉理论分析了该系统的长期动态行为。定义了参考状态,我们的目标是量化毒理学(毒物暴露),生态学(进食,捕食,竞争)和环境压力(养分供应,稀释率)的影响。为此,我们计算了长期动态(平衡,振荡或混沌行为)定性相同的应力水平范围。通过这种方式,我们获得了所有种群的丰度与参考案例(无影响区域)相同时毒理学负荷水平。我们还将计算相对于未暴露的参考情况,但种群数量和内部毒物浓度可能已发生定量变化的,不会导致生态系统组成及其结构发生变化的有毒暴露水平。该模型预测,由于间接影响,即使低致死性的低毒性暴露也可能导致生态系统功能和结构发生灾难性变化,并且贫营养和富营养化系统对毒性胁迫的长期敏感性不同。

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