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首页> 外文期刊>Science of the total environment >Microbial communities in floodplain ecosystems in relation to altered flow regimes and experimental flooding
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Microbial communities in floodplain ecosystems in relation to altered flow regimes and experimental flooding

机译:洪泛区的微生物社区与改变流动制度和实验洪水相关的生态系统

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摘要

River floodplains are spatially diverse ecosystems that respond quickly to flow variations and disturbance. How-ever, it remains unclear how flow alteration and hydrological disturbance impacts the structure and biodiversity of complex microbial communities in these ecosystems. Here, we examined the spatial and seasonal dynamics of microbial communities in aquatic (benthic) and terrestrial habitats of three hydrologically contrasting (natural flow, residual flow, hydropeaking flow) floodplain systems. Microbial communities (alpha and beta diversity) differed more among floodplain habitats than between riverine floodplains. Microbial communities in all systems displayed congruent seasonal effects. In the residual and hydropeaking systems, an experimental flood was re-leased from a reservoir to mimic a natural high flow event causing hydromorphological disturbance. The exper-imental flood caused a temporary shift in microbial communities by releasing microbes from the reservoir as well as redistributing communities among floodplain habitats. The flood-mediated shift in community structures had only a transient impact as pelagic bacteria did not persist within floodplain habitats over time after the flood. More frequent pulse disturbances might lead to an alternate structure of bacterial communities in floodplains over time.
机译:河洪泛平板是空间多样化的生态系统,迅速响应流动变化和干扰。然而,仍然尚不清楚流动改变和水文扰动如何影响这些生态系统中复杂的微生物社区的结构和生物多样性。在这里,我们研究了三种水生(底栖)和陆地栖息地的微生物社区的空间和季节性动态(自然流动,残余流动,水料流量)泛滥系统。微生物社区(α和β多样性)在河流栖息地之间的不同之处在于河流洪泛区之间。所有系统中的微生物社区都显示了一致的季节性效果。在残留和水质箱系统中,从储存器重新租用实验洪水以模仿引起水样扰动的自然高流量事件。通过从水库释放微生物的微生物群落以及洪泛平原栖息地重新分配社区,对微生物群落引起了微生物群落的临时转变。洪水介导的社区结构的转变只有瞬态影响,因为洪水之后的洪水平坦栖息地没有持续存在。更频繁的脉冲扰动可能导致洪水平均细菌社区的交替结构随时间。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|147497.1-147497.13|共13页
  • 作者单位

    Ecohydrology Research Group Institute of Natural Resource Sciences Zurich University of Applied Sciences (ZHAW) Wadenswil Switzerland eQcharta GmbH Waedenswil Switzerland;

    Institute of Molecular Health Science ETH Zuerich Switzerland;

    Ecohydrology Research Group Institute of Natural Resource Sciences Zurich University of Applied Sciences (ZHAW) Wadenswil Switzerland;

    Ecohydrology Research Group Institute of Natural Resource Sciences Zurich University of Applied Sciences (ZHAW) Wadenswil Switzerland Environmental Genomics and Systems Biology Research Group Institute for Natural Resource Sciences Zurich University of Applied Sciences (ZHAW) Waedenswil Switzerland;

    Swiss Federal Institute of Aquatic Science and Technology (EAWAG) 8600 Duebendorf Switzerland Institute of Integrative Biology ETH Zuerich 8092 Zuerich Switzerland;

    Environmental Genomics and Systems Biology Research Group Institute for Natural Resource Sciences Zurich University of Applied Sciences (ZHAW) Waedenswil Switzerland;

    Environmental Genomics and Systems Biology Research Group Institute for Natural Resource Sciences Zurich University of Applied Sciences (ZHAW) Waedenswil Switzerland;

    Ecohydrology Research Group Institute of Natural Resource Sciences Zurich University of Applied Sciences (ZHAW) Wadenswil Switzerland eQcharta GmbH Waedenswil Switzerland;

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

    Microbial diversity; Hydrologic disturbance; Mass effect; Hydrologic connectivity; Ecohydrology;

    机译:微生物多样性;水文障碍;质量效应;水文连接;生态学学;

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