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Faunal and environmental drivers of carbon and nitrogen cycling along a permeability gradient in shallow North Sea sediments

机译:浅埋北海沉积物渗透性梯度碳和氮循环的碳和氮气环境驱动因素

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摘要

Ecosystem functions are driven by abiotic and biotic factors, but due to high collinearity of both, it is often difficult to disentangle the drivers of these ecosystem functions. We studied sedimentological and faunal controls of ben-thic organic matter mineralization, a crucial ecosystem process provided for by sediments of shelf seas. Subtidal benthic habitats representative of the wide permeability gradient found in the Belgian Part of the North Sea (Northeast Atlantic Shelf) were characterized in terms of sediment descriptors, macrofauna, and sediment bio-geochemistry was estimated. Our results confirmed a strong correlation between sediment characteristics and macrofauna, and estimated sediment biogeochemical process rates were clearly linked to both. Results of variance partitioning and statistical modelling showed that oxic mineralization and nitrification were mainly regulated by faunal activities whereas anoxic mineralization was regulated by sediment properties, with permeability as a decisive factor. Both biotic and abiotic factors were needed to explain variability in oxygen consumption and total mineralization estimates, suggesting that macrofaunal activities have different effects across habitats. The statistical models were a useful tool to interpret the impact of anthropogenic activities in the study area and represent a step towards predicting the effects of human activities on crucial ecosystem functions.
机译:生态系统功能是非生物学和生物因子的驱动,但由于两者的共同性,往往难以解除这些生态系统功能的驱动程序。我们研究了本地有机质矿化的沉积学和粪便控制,是由货物沉积物提供的关键生态系统过程。估计沉积物描述师,宏观游戏和沉积物生物地球化学的特征在于北海(东北大西洋架子)中发现的广泛渗透梯度的底栖终栖息地代表了在北海(东北大西洋架子)的宽渗透梯度。我们的结果证实了沉积物特征与宏过的强烈关联,估计的沉积物生物地球化学过程率明显与两者都相关联。方差分配结果和统计学建模表明,氧化矿化和硝化主要受到动物活动的调节,而贫血性矿化受沉积物特性调节,具有渗透性作为决定性因子。需要生物和非生物因素来解释氧气消耗和总矿化估计的可变性,这表明宏观活动对栖息地的影响不同。统计模型是解释研究区域中的人为活动的影响的有用工具,并代表了预测人类活动对关键生态系统功能的影响。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|144994.1-144994.14|共14页
  • 作者单位

    Ghent University Department of Biology Marine Biology Research Group Krijgslaan 281/S8 9000 Ghent Belgium Royal Belgian Institute of Natural Sciences Operational Directorate Natural Environment Marine Ecology and Management Rue Vautier 29 1000 Brussels Belgium;

    Ghent University Department of Biology Marine Biology Research Group Krijgslaan 281/S8 9000 Ghent Belgium Royal Netherlands Institute of Sea Research (NIOZ) Department of Estuarine and Delta Systems Korringaweg 7 P.O. Box 140 4401 NT Yerseke the Netherlands Utrecht University Heidelberglaan 8 3584 CS Utrecht the Netherlands;

    Ghent University Department of Biology Marine Biology Research Group Krijgslaan 281/S8 9000 Ghent Belgium;

    Flanders Research Institute for Agriculture Fisheries and Food (ILVO) Aquatic Environment and Quality Ankerstraat 1 8400 Oostende Belgium;

    Ghent University Department of Biology Marine Biology Research Group Krijgslaan 281/S8 9000 Ghent Belgium Royal Netherlands Institute of Sea Research (NIOZ) Department of Estuarine and Delta Systems Korringaweg 7 P.O. Box 140 4401 NT Yerseke the Netherlands Utrecht University Heidelberglaan 8 3584 CS Utrecht the Netherlands;

    Ghent University Department of Biology Marine Biology Research Group Krijgslaan 281/S8 9000 Ghent Belgium Royal Belgian Institute of Natural Sciences Operational Directorate Natural Environment Marine Ecology and Management Rue Vautier 29 1000 Brussels Belgium;

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

    Benthic ecosystem functioning; Bioturbation; Variance partitioning; Organic matter cycling; Macrobenthos; Sediment characteristics;

    机译:底栖生态系统功能;生物扰动;方差分区;有机物循环;Macrobenthos;沉积物特征;

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