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The riverine bioreactor: An integrative perspective on biological decomposition of organic matter across riverine habitats

机译:河流生物反应器:河流栖息地有机质生物分解的一体化视角

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摘要

Riverine ecosystems can be conceptualized as 'bioreactors' (the riverine bioreactor) which retain and decompose a wide range of organic substrates. The metabolic performance of the riverine bioreactor is linked to their community structure, the efficiency of energy transfer along food chains, and complex interactions among biotic and abiotic environmental factors. However, our understanding of the mechanistic functioning and capacity of the riverine bioreactor remains limited. We review the state of knowledge and outline major gaps in the understanding of biotic drivers of organic matter decomposition processes that occur in riverine ecosystems, across habitats, temporal dimensions, and latitudes influenced by climate change. We propose a novel, integrative analytical perspective to assess and predict decomposition processes in riverine ecosystems. We then use this model to analyse data to demonstrate that the size-spectra of a community can be used to predict decomposition rates by analysing an illustrative dataset. This modelling methodology allows comparison of the riverine bioreactor's performance across habitats and at a global scale. Our integrative analytical approach can be applied to advance understanding of the functioning and efficiency of the riverine bioreactor as hotspots of metabolic activity. Application of insights gained from such analyses could inform the development of strategies that promote the functioning of the riverine bioreactor across global ecosystems.
机译:河流生态系统可以概念化为“生物反应器”(河流生物反应器),其保留和分解各种有机基材。河流生物反应器的代谢性能与其社区结构相关联,沿着食物链的能量转移效率,以及生物和非生物环境因素之间的复杂相互作用。然而,我们对河流生物反应器的机械运作和能力的理解仍然有限。我们审查知识状态和概述主要差距,了解河流生态系统,跨境,时间维度和气候变化影响的纬度和纬度发生的有机质分解过程的生物驱动程序。我们提出了一种新颖,综合分析视角来评估和预测河流生态系统中的分解过程。然后,我们使用该模型来分析数据,以证明社区的大小光谱可用于通过分析说明性数据集来预测分解率。这种造型方法允许比较河流生物反应器在栖息地和全球范围内的表现。我们的综合分析方法可以应用于推进河流生物反应器的功能和效率作为代谢活动的热点。从这种分析中获得的见解可以在制定促进河流生物反应器跨越全球生态系统的运作的策略。

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  • 来源
    《Science of the total environment》 |2021年第10期|145494.1-145494.12|共12页
  • 作者单位

    Departamento de Ecologia Universidad de Granada Granada Spain Department of Life Sciences Roehampton University London UK;

    School of Science and Technology Nottingham Trent University Nottingham UK;

    Zuckerberg Institute for Water Research The Jacob Blaustein Institutes for Desert Research Ben-Gurion University of the Negev Beersheba Israel;

    School of Biological and Chemical Sciences Queen Mary University of London London UK;

    School of Geography Earth and Environmental Sciences University of Birmingham Edgbaston Birmingham UK;

    Programa de Pos-Graduacao em Ciencia e Tecnologia Ambiental Universidade do Vale do Itajai Itajai Santa Catarina Brazil;

    Department of Ecology and Zoology Federal University of Santa Catarina Florianopolis Santa Catarina Brazil;

    Department of Ecology and Zoology Federal University of Santa Catarina Florianopolis Santa Catarina Brazil;

    Universidade Estadual de Maringa Department of Biology Maringa Parana Brazil;

    Department of Environmental Science Stockholm University Stockholm Sweden;

    School of Applied Sciences University of Huddersfield Huddersfield UK;

    Cranfield Water Science Institute Cranfield University Cranfield UK;

    Laboratory of Aquatic Insect Ecology Universidade Vila Velha Vila Velha Espirito Santo Brazil;

    Department of Life Sciences Imperial College London Silwood Park Campus Buckhurst Road Ascot SL5 7PY UK;

    Department of Life Sciences Roehampton University London UK;

    Department of Ecology and Zoology Federal University of Santa Catarina Florianopolis Santa Catarina Brazil;

    Departamento de Ecologia Universidad de Granada Granada Spain;

    Departamento de Ciencias Ambientais Universidade Federal de Sao Carlos Sao Carlos Sao Paulo Brazil;

    Department of Hydrobiology Universidade Federal de Sao Carlos Sao Carlos Sao Paulo Brazil;

    Institute of Environmental Sciences Leiden University Leiden the Netherlands;

    Centro de Engenharia Modelagem e Ciencias Sociais Aplicadas Universidade Federal do ABC Santo Andre Sao Paulo Brazil;

    River Restoration Centre Cranfield University Cranfield Bedfordshire UK;

    Departamento de Botanica Universidade Federal do Parana Curitiba Parana Brazil;

    Department of Life Sciences Roehampton University London UK;

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

    Body mass-abundance scaling; Biodegradation; Latitude; Metabolic theory; Riverine ecosystems; Regulating ecosystem service;

    机译:体重丰富的缩放;生物降解;纬度;代谢理论;河流生态系统;调节生态系统服务;

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