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首页> 外文期刊>The Journal of Applied Ecology >Multiple stressors in periphyton - comparison of observed and predicted tolerance responses to high ionic loads and herbicide exposure
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Multiple stressors in periphyton - comparison of observed and predicted tolerance responses to high ionic loads and herbicide exposure

机译:多个压力固着生物的比较观察和预测公差反应高离子负载和除草剂曝光

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As a result of the increasing human impact on aquatic ecosystems, freshwater organisms are often exposed to multiple stressors simultaneously. The joint actions between stressors can result in combined effects and unexpected ecological effects. Therefore, a better understanding of the interactive effects on ecosystems is required. This study aimed to identify potential interactions between high ionic loads and herbicides. A microcosm study, using periphyton as model community, was conducted with a factorial design. Two levels of ionic loads were used as single stressor and in combination with prometryn. Structural (biomass, algal class and diatom composition) and functional parameters (tolerance development) were determined over a growth period of 6 weeks. The concept of pollution-induced community tolerance (PICT) was applied to quantify integrated community responses. Long-term community responses to the combined exposure were predicted using the model of independent action. No co-tolerance of high ionic loads and prometryn or vice versa was found. Stress-induced succession resulted in a distinct community structure for each stressor and combination of stressors. Multiple stressors led to the selection of opportunistic species and higher tolerances to prometryn than predicted by the model of independent action. However, joint effects for high ionic loads and prometryn were concentration and time-dependent. The PICT concept enabled the quantification of community-level effects in systems receiving multiple stresses. Synthesis and applications. Multiple stressors might explain the failure to achieve good ecological status for many European water bodies within the context of the EU-Water Framework Directive (WFD). We propose PICT as a diagnostic tool for investigative monitoring to clarify stressor conditions by testing the tolerances of local communities to preselected site-specific compounds. Multiple stressors might explain the failure to achieve good ecological status for many European water bodies within the context of the EU-Water Framework Directive (WFD). We propose PICT as a diagnostic tool for investigative monitoring to clarify stressor conditions by testing the tolerances of local communities to preselected site-specific compounds.
机译:由于人类的影响增加水生生态系统,淡水生物经常暴露于多种压力同时进行。压力会导致联合效应意想不到的生态效应。更好地理解的互动效果对生态系统是必需的。识别潜在的高之间的相互作用离子负载和除草剂。社区,利用固着生物模型进行析因设计。离子负载作为单一的压力源和结合扑草净。藻类和硅藻组成)和类功能参数(宽容发展)测定了6周的增长时期。污染导致社区的概念公差(皮克特人)是用于量化综合社会反应。社区应对合并后的接触使用模型预测的独立行动。没有co-tolerance高离子负载和扑草净反之亦然。继承导致不同的社区对于每一个压力源和组合结构紧张的因素。的选择机会和更高的物种公差比预测的扑草净模型的独立行动。影响高离子负载和扑草净浓度和时间。使量化的概念在系统接收社区水平的影响多重压力。多个压力或许可以解释的失败对于许多欧洲取得良好的生态地位水体EU-Water的上下文中框架指令(WFD)。诊断工具调查监测澄清压力条件下通过测试公差预选的当地社区特定场地的化合物。解释未能取得良好的生态对于许多欧洲水体中的地位上下文EU-Water框架的指令(WFD)。调查监测澄清压力源由当地的公差测试条件社区预选的特定站点化合物。

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