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Responses of periphyton communities to abrupt changes in water temperature and velocity, and the relevance of morphology: A mesocosm approach

机译:珀西尔顿社区对水温速度突然变化的反应,与形态学的相关性:一种中科科博语方法

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摘要

Sudden instream releases of watet from hydropower plants (hydropeaking [HP]) can cause abrupt temperature variations (thermopeaking [TP]), typically on a daily/sub-daily basis. In alpine rivers, hydropeaking and thermopeaking waves usually overlap, which leads to a multiple stressor of flow velocity pulses and temperature alteration. Periphytic communities could give important insights into the effects of combined thermo- and hydropeaking (THP) in stream ecosystems. Thus, the study's first aim was to assess the combined effects of thermo-hydropeaking on structural (composition, biomass) and functional (photosynthesis, enzyme activity) properties of periphyton. The second aim was to assess the interaction between periphytic algae and the heterotrophic communities (bacteria) and determine how biotic and abiotic factors explain the variability of bacterial enzymatic activities in the periphyton. We assessed the effects of repeated cold and warm thermo-hydropeaking for 24 days on periphyton, by manipulating discharge and temperature in six experimental flumes directly fed by an Alpine stream. Our study revealed that THP had structural and functional effects on periphyton in oligotrophic streams, where the effects depending on the direction of the temperature change (cold/warm) and on the morphological setting (pool/riffle). The results showed that even a short-term increase in flow velocity and temperature decrease could induce better growth conditions for diatoms. Additionally, an increase in the interaction between periphytic algae and bacteria during thermo-hydropeaking was also shown, this coupling being more pronounced in pool than in riffle sections. Our results clearly showed that riffle sections develop less periphytic algal biomass and activity and therefore, THP can reduce biomass availability for primary consumers in large areas of impacted streams. These findings highlight the importance of mitigation measures, focusing on establishing heterogeneous stream bed areas, with frequent pool and riffle sequences.
机译:水电站突然的仪器释放水电站(水质箱[HP])可以造成突然的温度变化(热电曝光[TP]),通常是每日/次日的基础。在阿尔卑斯河河流中,水料和热电跳动波通常重叠,这导致流速脉冲和温度变化的多个压力源。凸鸟类社区可以对溪流生态系统中的热和水质箱(THP)的影响提供重要见解。因此,该研究的首次目的是评估热水箱对Periphyton的结构(组成,生物质)和功能(光合作用,酶活性)性质的综合影响。第二个目的是评估危害藻类和异养社区(细菌)之间的相互作用,并确定生物和非生物因素如何解释哌啶顿中细菌酶活性的变异性。我们通过操纵通过高山流直接喂养的六个实验叶片,通过操纵排出和温度来评估重复冷热热水水质箱24天的影响。我们的研究表明,THP对植物水溶液的结构和功能作用在寡营养物流中,其中效果取决于温度变化(冷/暖)和形态设置(池/浅滩)。结果表明,即使是流速和温度降低的短期增加也可能诱导硅藻的更好的生长条件。另外,还示出了在热水释放期间屈地藻类和细菌之间的相互作用的增加,该耦合在池中比在Riffle部分中更明显。我们的结果清楚地表明,Riffle Sections显得较少的围网藻类生物量和活性,因此,THP可以降低大面积的受影响流的主要消费者的生物量可用性。这些调查结果突出了减缓措施的重要性,重点是建立异质流床区,频繁的泳池和浅级序列。

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  • 来源
    《Science of the total environment》 |2021年第10期|145200.1-145200.11|共11页
  • 作者单位

    Institute of Hydrobiology and Aquatic Ecosystem Management Department of Water Atmosphere and Environment University of Natural Resources and Life Sciences Vienna Gregor Mendel Strasse 33 A-1 180 Vienna Austria WasserCluster Lunz - biologische Station 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 Gregor Mendel Strasse 33 A-1 180 Vienna Austria WasserCluster Lunz - biologische Station 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 Gregor Mendel Strasse 33 A-1 180 Vienna Austria WasserCluster Lunz - biologische Station Lunz am See Carl Kupelwieser Prom. 5 A-3293 Lunz/See 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 thermo-and hydropeaking; Periphyton composition; Photosynthesis; Extracellular enzyme activities;

    机译:多个压力源;每日热水和水质箱;Periphyton组成;光合作用;细胞外酶活性;

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