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首页> 外文期刊>The Science of the Total Environment >Antagonistic and synergistic effects on a stream periphyton community under the influence of pulsed flow velocity increase and nutrient enrichment
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Antagonistic and synergistic effects on a stream periphyton community under the influence of pulsed flow velocity increase and nutrient enrichment

机译:脉冲流速增加和养分富集影响下河水生植物的拮抗和协同作用

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摘要

Aquatic ecosystems are generally affected by multiple stressors, and therefore, analysing single stressor responses is not appropriate to evaluate the whole range of effects on these ecosystems. We assessed the interaction effects of two strong stressors (higher flow velocity due to e.g. daily hydropeaking) and nutrient enrichment for an oligotrophic stream periphyton community. As periphyton has a rapid reproduction rate and very short life cycles, it can therefore be expected to reflect short-term impacts and sudden changes/disturbances in the environment. We measured biomass development, algal group distribution and photosynthesis efficiency during a time period of 33 days in an experimental flume setting in Lunz am See (Austria). We conducted the experiment with two treatments (no hydropeaking and hydropeaking) and three nutrient enrichments (nitrate, phosphate and nitrate + phosphate enrichment) and control (no nutrient addition). The results showed a significant lower biomass development in the hydropeaking treatment (HP), compared to the no-hydropeaking treatment (NHP) in a later successional stage (day 33). Nutrient subsidy effects were not observed, because the biomass development (chlorophyll-a) of periphyton was highly diminished through the pulsed flow velocity increase. Also a negative synergistic interaction (more negative than predicted additively) was observed. Our study confirmed for periphyton communities that for different algal groups and functional guilds the same multiple stressor combination can be detrimental for one species group (e.g. chlorophyta) while beneficial for another (e.g. diatoms). We conclude for multiple stressor studies to consider the successional stage and community composition, when estimating the interaction effects of these stressors.
机译:水生生态系统通常受到多种压力源的影响,因此,分析单个压力源的响应不适用于评估对这些生态系统的整个影响范围。我们评估了两种营养胁迫(贫营养流周生植物群落)的相互作用(较高的流速,例如由于每天的水峰导致较高的流速)和养分富集的相互作用。由于附生植物具有快速的繁殖速度和非常短的生命周期,因此可以预期它会反映环境的短期影响和突然的变化/干扰。我们在奥地利伦茨的实验水槽环境中,在33天的时间内测量了生物量的发育,藻类的分布和光合作用的效率。我们进行了两种处理(无加水和加水)和三种养分富集(硝酸盐,磷酸盐和硝酸盐+磷酸盐富集)和对照(无养分添加)的实验。结果表明,与随后连续演替阶段(第33天)的非加水峰值处理(NHP)相比,加水峰值处理(HP)的生物量显着降低。没有观察到营养补贴的效果,因为通过脉冲流速的增加,围生植物的生物量发育(叶绿素-a)大大降低了。还观察到负的协同相互作用(比预期的相加负更多)。我们的研究证实,对于附生植物群落而言,对于不同的藻类群体和功能行会来说,相同的多重应激源组合可能对一个物种组(例如绿藻)有害,而对另一个物种组(例如硅藻)有利。我们得出结论,在估算这些压力源的相互作用影响时,需要进行多个压力源研究,以考虑演替阶段和社区组成。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|594-602|共9页
  • 作者单位

    WasserCluster Lunz - Inter-university Center for Aquatic Ecosystem Research, Lunz am See, Carl Kupelwieser Prom. 5, A-3293 Lunz/See, Austria ,Institute of Hydrobiology and Aquatic Ecosystem Management, Department of Water, Atmosphere and Environment, University of Natural Resources and Life Sciences, Vienna, Max Emanuelstr. 17, A-1180 Vienna, Austria;

    WasserCluster Lunz - Inter-university Center for Aquatic Ecosystem Research, Lunz am See, Carl Kupelwieser Prom. 5, A-3293 Lunz/See, Austria ,Institution of Higher Education for Economic and Environmental Business, Schulstrasse 13,3683 Yspertal, Austria;

    WasserCluster Lunz - Inter-university Center for Aquatic Ecosystem Research, Lunz am See, Carl Kupelwieser Prom. 5, A-3293 Lunz/See, Austria ,Institution of Higher Education for Economic and Environmental Business, Schulstrasse 13,3683 Yspertal, Austria;

    WasserCluster Lunz - Inter-university Center for Aquatic Ecosystem Research, Lunz am See, Carl Kupelwieser Prom. 5, A-3293 Lunz/See, Austria ,Ecole Nationale du Genie de l'Eau et de l'Environnement de Strasbourg, 1 quai Koch -BP 61039,67070 Strasbourg Cedex, France;

    WasserCluster Lunz - Inter-university Center for Aquatic Ecosystem Research, Lunz am See, Carl Kupelwieser Prom. 5, A-3293 Lunz/See, Austria ,Institute of Hydrobiology and Aquatic Ecosystem Management, Department of Water, Atmosphere and Environment, University of Natural Resources and Life Sciences, Vienna, Max Emanuelstr. 17, A-1180 Vienna, Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multiple stressor; Daily hydropeaking; Nutrient enrichment; Experimental flumes; Periphyton composition; Photosynthesis;

    机译:多重压力源;每日水峰值;营养丰富;实验水槽;附生植物组成;光合作用;

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