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首页> 外文期刊>Estuarine Coastal and Shelf Science >Small-scale effects of hydrodynamics on the structure of intertidal macroalgal communities: A novel approach
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Small-scale effects of hydrodynamics on the structure of intertidal macroalgal communities: A novel approach

机译:流体动力学对透模大宏节群结构的小规模效应:一种新方法

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摘要

Wave height was used as a proxy to assess the effect of hydrodynamics on the development and structure of intertidal North-East Atlantic rocky macroalgal communities (Brittany). The characterization of hydrodynamics at small-scale (about 10 m) was performed through wave height in situ monitoring using pressure sensors. Both the diversity and the cover of the macroalgal communities were sampled in parallel. Wave heights exhibit large variations with values ranging from ca. 5 cm to 1.60 m. We show that wave height directly controls the cover of macroalgal canopies (Pearson's r between -0.62 and -0.39). In all communities, most of the fucoid covers regressed with increasing wave height values. By contrast, positive correlations were found at low shore levels between wave heights and the cover of the kelp Laminaria digitata and also of several species of Rhodophyta. Redundancy analysis points out the significant effect of wave height on the inner variability of macroalgal communities, explaining up to 19% of their upright structure and more than 15% of the distribution of canopy-forming groups. In assemblages dominated by either Pelvetia canaliculata or Fucus serrates, a significant negative correlation was also evidenced with the index of community structure (Ics), which gives an appraisal of both the structure and the development of macroalgal communities. In conclusion, this study provides a novel experimental approach helping to quantify the effects of hydrodynamics on the structure of macroalgal communities using a small-scale in situ quantification of wave heights, revealing hydrodynamics as the main environmental driver of inner structural variations in seaweed assemblages.
机译:波浪高度被用作代理,以评估流体动力学对跨境东北大西洋岩石宏观社区(布列塔尼)的开发和结构的影响。通过使用压力传感器的原位监测,通过波高进行小规模(约10μm)的流体动力学的表征。多样性和宏观节目的封面并行采样。波浪高度与加利福尼亚州的值表现出大的变化。 5厘米至1.60米。我们表明波高度直接控制宏观檐篷的盖子(Pearson的-0.62和-0.39之间的r)。在所有社区中,大多数粘合覆盖物随着波浪高度值的增加而回归。相比之下,在波浪高度和海带层状斑层Digitata的低岸边水平和海腹地带覆盖物的阳性相关性以及几种肾小球酵母中的阳性相关性。冗余分析指出了波浪高对大型社区内部变异性的显着影响,其直立结构的高达19%且超过了15%以上的冠层形成组分布。在由Pelvetia Canaliculata或Fucus Serrates主导的组合中,群落结构(IC)指数也明显了显着的负相关,这对宏观政府社区的结构和发展提供了评估。总之,本研究提供了一种新颖的实验方法,有助于使用波浪高度的小规模来量化流体动力学对大型群落结构的影响,揭示流体动力作为海藻组合中内部结构变化的主要环境驱动因素。

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  • 来源
    《Estuarine Coastal and Shelf Science》 |2019年第15期|106290.1-106290.10|共10页
  • 作者单位

    UMR 6539 UBO CNRS IRD IFREMER Lab Sci & Environm Marin Rue Dumont dUrville F-29280 Plouzane Brittany France;

    UMR 6539 UBO CNRS IRD IFREMER Lab Sci & Environm Marin Rue Dumont dUrville F-29280 Plouzane Brittany France;

    Univ Bretagne Occidentale Inst Univ Europeen Mer Observ Domaine Cotier UMS 3113 Rue Dumont dUrville F-29280 Plouzane Brittany France;

    Univ Bretagne Occidentale Inst Univ Europeen Mer Observ Domaine Cotier UMS 3113 Rue Dumont dUrville F-29280 Plouzane Brittany France;

    Cerema LGCE 155 Rue Pierre Bouguer F-29280 Plouzane Brittany France;

    UMR 6539 UBO CNRS IRD IFREMER Lab Sci & Environm Marin Rue Dumont dUrville F-29280 Plouzane Brittany France;

    UMR 6539 UBO CNRS IRD IFREMER Lab Sci & Environm Marin Rue Dumont dUrville F-29280 Plouzane Brittany France;

    Cerema LGCE 155 Rue Pierre Bouguer F-29280 Plouzane Brittany France;

    UMR 6539 UBO CNRS IRD IFREMER Lab Sci & Environm Marin Rue Dumont dUrville F-29280 Plouzane Brittany France;

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

    Macroalgal communities; Intertidal zone; Rocky shores; Wave heights; Hydrodynamics; Mini-diver; Brittany;

    机译:宏观节社区;跨境区;岩石海岸;波浪高;流体动力学;迷你潜水员;布列塔尼;

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