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Modelling long-term ecotoxicological effects on an algal population under dynamic nutrient stress

机译:在动态营养胁迫下模拟藻类种群的长期生态毒理作用

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摘要

We study the effects of toxicants on the functioning of phototrophic unicellular organism (an algae) in a simple aquatic microcosm by applying a parameter-sparse model. The model allows us to study the interaction between ecological and toxicological effects. Nutrient stress and toxicant stress, together or alone, can cause extinction of the algal population. The modelled algae consume dissolved inorganic nitrogen (DIN) under surplus light and use it for growth and maintenance. Dead algal biomass is mineralized by bacterial activity, leading to nutrient recycling. The ecological model is coupled with a toxicity-module that describes the dependency of the algal growth and death rate on the toxicant concentration. Model parameter fitting is performed on experimental data from Liebig, M., Schmidt, G., Bontje, D., Kooi, B.W., Streck, G., Traunspurger, W., Knacker, T. [2008. Direct and indirect effects of pollutants on algae and algivorous ciliates in an aquatic indoor microcosm. Aquatic Toxicology 88, 102-110]. These experiments were especially designed to include nutrient limitation, nutrient recycling and long-term exposure to toxicants. The flagellate species Cryptomonas sp. was exposed to the herbicide prometryn and insecticide methyl parathion in semi-closed Erlenmeyers. Given the total limiting amount of nitrogen in the system, the estimated toxicant concentration at which a long-term steady population of algae goes extinct will be derived. We intend to use the results of this study to investigate the effects of ecological (environmental) and toxicological stresses on more realistic ecosystem structure and functioning.
机译:我们通过应用参数稀疏模型研究了有毒物质对简单水生微观世界中光养单细胞生物(藻类)功能的影响。该模型使我们能够研究生态和毒理作用之间的相互作用。营养胁迫和毒物胁迫一起或单独会导致藻类种群灭绝。模拟的藻类在多余的光下会消耗溶解的无机氮(DIN),并将其用于生长和维持。死藻生物质通过细菌活动而矿化,导致营养物质再循环。生态模型与毒性模块耦合,该模块描述了藻类生长和死亡率对毒物浓度的依赖性。对来自Liebig,M.,Schmidt,G.,Bontje,D.,Kooi,B.W.,Streck,G.,Traunspurger,W.,Knacker,T. [2008。污染物对水生室内缩影中的藻类和藻类纤毛虫的直接和间接影响。水生毒理学88,102-110]。这些实验经过专门设计,包括营养限制,营养循环以及长期接触毒物。鞭毛物种Cryptomonas sp。在半封闭的锥形瓶中暴露于除草剂前metry草和杀虫剂甲基对硫磷。给定系统中氮的总量限制,将推导出长期稳定藻类灭绝的估计毒物浓度。我们打算利用这项研究的结果来调查生态(环境)和毒理学应力对更现实的生态系统结构和功能的影响。

著录项

  • 来源
    《Water Research》 |2009年第13期|3292-3300|共9页
  • 作者单位

    Vrije Universiteit, Faculty of Earth & Life Sciences, Department of Theoretical Biology, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands;

    Vrije Universiteit, Faculty of Earth & Life Sciences, Department of Theoretical Biology, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands;

    ECT Oekotoxikologie GmbH, Boettgerstrasse 2-14, D-65439 Floersheim/Main, Germany;

    Vrije Universiteit, Faculty of Earth & Life Sciences, Department of Theoretical Biology, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bio-variability; dynamic energy budget; population extinction threshold; process-based model; extinction probability;

    机译:生物变异性动态能源预算;人口灭绝门槛;基于过程的模型;灭绝概率;
  • 入库时间 2022-08-17 13:51:09

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