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Sediment stability: can we disentangle the effect of bioturbating species on sediment erodibility from their impact on sediment roughness?

机译:沉积物稳定性:我们可以解开生物干扰物种对沉积物粗糙度的影响吗?

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摘要

Benthic organisms, in particular bioturbators, can influence erosion processes either by affecting sediment roughness through their mere presence and/or activities, or by modulating sediment characteristics (e.g., silt content, granulometry), thus altering its erodibility. To date, it was not possible to distinguish the influence of bioturbating species on sediment roughness from their impact on sediment erodibility. Consequently, un-certainties remain regarding the role played by benthic species on sediment dynamics. In this study, we used a canal flume which allows to record the bed shear stress at the surface of a non-cohesive sediment (4% of mud) during erosion experiments, thus allowing to disentangle the influence of bioturbators, here the common cockle Cerastoderma edule, on the two erosion mechanisms. In order to assess the influence of bioturbators on sediment stability in different environmental situations, we additionally tested for the effects of three factors, i.e. bivalve density, availability of suspended food (i.e. phytoplankton presence) and microphytobenthos (MPB) occurrence, which may modulate the behavior of cockles. We observed that cockles promote the erosion of the sediment surficial layer by increasing its roughness as a consequence of their sediment reworking activity and/or presence at the sediment surface (emerging shell). In contrast, we calculated similar critical bed shear stress for erosion with and without bivalves suggesting that cockles have a minor influence on the erodibility of non-cohesive substrates with a low silt content. The destabilizing effect of cockles increased with the bivalve density whereas it was attenuated by the presence of phytoplankton. We hypothesize that the magnitude of cockles' bioturbation activity was lower when a high proportion of suspended food is available. High concentrations of suspended food may also have enhanced the filtration and biodeposition rates of cockles, thus rapidly leading to the 'muddification' of the sediment bed and consequently counteracting with the own destabilizing effect of the bivalves. Finally, the sole presence of MPB did not significantly affect the resuspension dynamics of non-cohesive sediments with a low proportion of mud.
机译:底栖生物,特别是生物发动机,可以通过仅通过仅存在和/或活性来影响沉积物粗糙度,或通过调节沉积物特征(例如,淤泥含量,粒度测量)来影响腐蚀过程,从而改变其易用性。迄今为止,不可能区分生物稳态物种对沉积物粗糙度的影响,从它们对沉积物蚀性的影响。因此,不确定仍然是底栖物种在沉积物动态上发挥的作用。在这项研究中,我们使用了一个运河管料,这允许在侵蚀实验期间在非粘性沉积物(4%的泥浆)表面上记录床剪切应力,从而允许解开生物风格的影响,这里是普通的鸟笼Cerastoderma edule,在两个侵蚀机制上。为了评估生物风格的影响在不同环境情况下的沉积物稳定性,我们还测试了三种因素的效果,即悬浮食物的偏见,悬浮食物的可用性(即浮游植物存在)和噬菌体(即MPB)的发生,这可能调节蛤蜊的行为。我们观察到,只要在沉积物表面的沉积物活性和/或存在下,通过增加其粗糙度来促进沉积曲面层的腐蚀。相比之下,我们计算了类似的关键床剪切应力,用于侵蚀和没有双子抗体,表明蛤蜊对具有低淤泥含量的非粘性基材的蚀性进行了微小的影响。鸟蛤的稳定效果随着植物植物的存在而增加。通过浮游植物的存在衰减。我们假设当可获得高比例的悬浮食物时,Cockles'生物扰动活性的大小较低。高浓度的悬浮食物也可能增强了蛤蜊的过滤和生物素率,从而迅速导致沉积物床的“混浊”,从而抵消了自身的稳定性效果。最后,MPB的唯一存在没有显着影响非粘性沉积物的重悬浮动态,泥浆的低比例沉积物。

著录项

  • 来源
    《Marine Environmental Research》 |2020年第12期|105147.1-105147.13|共13页
  • 作者单位

    Univ Paris 06 Unite Biol ORganismes & Ecosyst Aquat FRE BOREA Museum Natl Hist Nat Sorbonne Univ CNRS Paris France|Univ Caen Normandie IRD 207 F-14032 Caen France|Univ Antilles Pointe A Pitre Guadeloupe France|Univ Ghent Dept Biol Marine Biol Res Grp Krijgslaan 281-S8 B-9000 Ghent Belgium;

    Univ Bordeaux EPHE EPOC CNRS UMR 5805 F-33600 Pessac France;

    Univ Paris 06 Unite Biol ORganismes & Ecosyst Aquat FRE BOREA Museum Natl Hist Nat Sorbonne Univ CNRS Paris France|Univ Caen Normandie IRD 207 F-14032 Caen France|Univ Antilles Pointe A Pitre Guadeloupe France;

    Univ Bordeaux EPHE EPOC CNRS UMR 5805 F-33600 Pessac France;

    Univ Bordeaux EPHE EPOC CNRS UMR 5805 F-33600 Pessac France;

    Univ Paris 06 Unite Biol ORganismes & Ecosyst Aquat FRE BOREA Museum Natl Hist Nat Sorbonne Univ CNRS Paris France|Univ Caen Normandie IRD 207 F-14032 Caen France|Univ Antilles Pointe A Pitre Guadeloupe France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cerastoderma edule; Sediment erodibility; Bioturbation; Bed roughness; Microphytobenthos; Density-dependent effect; Suspended-food availability;

    机译:Cerastoderma Edule;沉积物蚀;生物扰动;床粗糙度;瞳孔效应;密度依赖性效果;暂停食品可用性;

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