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The contribution of deep-sea macrohabitat heterogeneity to global nematode diversity

机译:深海大型生境异质性对全球线​​虫多样性的贡献

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摘要

The great variety of geological and hydrological conditions in the deep sea generates many different habitats. Some are only recently explored, although their true extent and geographical coverage are still not fully established. Both continental margins and mid-oceanic seafloors are much more complex ecologically, geologically, chemically and hydrodynamically than originally thought. As a result, fundamental patterns of species distribution first observed and explained in the context of relatively monotonous slopes and abyssal plains must now be re-evaluated in the light of this newly recognized habitat heterogeneity. Based on a global database of nematode genus composition, collected as part of the Census of Marine Life, we show that macrohabitat heterogeneity contributes significantly to total deep-sea nematode diversity on a global scale. Different deep-sea settings harbour specific nematode assemblages. Some of them, like coral rubble zones or nodule areas, are very diverse habitats. Factors such as increased substrate complexity in the case of nodules and corals seem to facilitate the co-existence of a large number of genera with different modes of life, ranging from sediment dwelling to epifaunal. Furthermore, strong biochemical gradients in the case of vents or seeps are responsible for the success of particular genera, which are not prominent in more typical soft sediments. Many nematode deep-sea genera are cosmopolitan, inhabiting a variety of deep-sea habitats and oceans, whereas only 21% of all deep-sea genera recorded are restricted to a single habitat. In addition to habitat heterogeneity, regional differences are important in structuring nematode assemblages. For instance, seeps from different regions yield different genera that thrive on the sulphidic sediments. This study also shows that many areas and habitats remain highly under-sampled, affecting our ability to understand fully the contribution of habitat heterogeneity versus regional differences to global nematode diversity.
机译:深海中各种各样的地质和水文条件产生了许多不同的栖息地。尽管它们的真实范围和地理覆盖范围尚未完全确定,但直到最近才进行了探索。大陆边缘和中海底海床在生态,地质,化学和水动力方面都比原先想象的要复杂得多。结果,现在必须根据这种新近认识到的生境异质性,重新评估在相对单调的斜坡和深海平原的背景下首次观察到的物种分布的基本模式。基于作为海洋生物普查的一部分而收集的线虫属组成的全球数据库,我们表明,宏观栖息地的异质性在全球范围内对总的深海线虫多样性做出了重大贡献。不同的深海环境具有特定的线虫组合。其中一些,如珊瑚瓦砾区或结节区,是非常多样化的栖息地。在结节和珊瑚的情况下,诸如增加底物复杂性的因素似乎促进了从沉积物居住到表生动物等不同生活模式的大量属的共存。此外,在通风孔或渗水情况下,强烈的生化梯度是特定属植物成功的原因,而在更典型的软质沉积物中并不突出。许多线虫的深海属是世界性的,栖息在各种深海生境和海洋中,而记录的所有深海属中只有21%限于一个生境。除了栖息地异质性外,区域差异在构造线虫组合中也很重要。例如,来自不同地区的渗出物产生了不同的属,它们在硫化物沉积物上壮成长。这项研究还表明,许多地区和栖息地的采样率仍然很高,这影响了我们充分了解栖息地异质性与区域差异对全球线虫多样性的贡献的能力。

著录项

  • 来源
    《Marine ecology》 |2010年第1期|6-20|共15页
  • 作者单位

    Marine Biology Research Group, Ghent University Krijgslaan, Ghent, Belgium;

    rnAlfred Wegener Institute for Polar and Marine Research, Deep-Sea Research Group, Arm Handelshafen Bremerhaven, Germany;

    rnDipartimento di Scienze del Mare, Universita Politecnica delle Marche, Ancona, Italy;

    rnUniversidade Federal de Pernambuco -UFPE, Departamento de Zoologia, Laboratorio de Meiofauna Recife-Pernambuco, Brazil;

    rnUniversidade Federal de Pernambuco -UFPE, Departamento de Zoologia, Laboratorio de Meiofauna Recife-Pernambuco, Brazil;

    rnDepartment of Zoology, The Natural History Museum, London, UK;

    rnAG Zoosystematik & Morphologie, CVO Universitat, Oldenburg, Germany;

    rn;

    rnDipartimento di Scienze del Mare, Universita Politecnica delle Marche, Ancona, Italy;

    rnUniversidade Federal de Pernambuco -UFPE, Departamento de Zoologia, Laboratorio de Meiofauna Recife-Pernambuco, Brazil;

    rnMarine Biology Research Group, Ghent University Krijgslaan, Ghent, Belgium;

    rnBiological Oceanography Division, National Institute of Oceanography, Dona Paula, Panaji, Goa, India;

    rnHellenic Centre for Marine Research, Heraklion, Crete, Greece;

    rnMarine Biology Research Group, Ghent University Krijgslaan, Ghent, Belgium;

    rnForschungsinstitut Senckenberg, Deutsches Zentrum fuer Marine Biodiversita'tsforschung, Wilhelmshaven, Germany;

    rnForschungsinstitut Senckenberg, Deutsches Zentrum fuer Marine Biodiversita'tsforschung, Wilhelmshaven, Germany P.P. Shirshov Institute of Oceanology, Russian Academy of Sciences, Moscow, Russia;

    rnSchool of Biological Sciences, University of Nairobi, Nairobi, Kenya;

    rnLaboratorio de Ciencias Marinhas, Universidade do Sul de Santa Catarina (UNISUL), Santa Catarina, Brazil;

    rnP.P. Shirshov Institute of Oceanology, Russian Academy of Sciences, Moscow, Russia;

    rnPalaeoceanology Unit, Institute of Marine Sciences, University of Szczecin, Szczecin, Poland;

    rnMarine Biology Research Group, Ghent University Krijgslaan, Ghent, Belgium;

    rnDepertment Invertebrate Zoology, Biological Faculty, Moscow State University, Vorobyovy Gory, Moscow, Russia;

    rnMarine Biology Research Group, Ghent University Krijgslaan, Ghent, Belgium;

    rnMarine Biology Research Group, Ghent University Krijgslaan, Ghent, Belgium;

    rnUFPA, IG, Av. Augusto Correa, Belem - PA, Brazil;

    rnMarine Biology Research Group, Ghent University Krijgslaan, Ghent, Belgium;

    rnNational Oceanography Centre, European Way, Southampton, UK;

    rnNational Oceanography Centre, European Way, Southampton, UK;

    rnMarine Biology Research Group, Ghent University Krijgslaan, Ghent, Belgium;

    rnDipartimento di Scienze del Mare, Universita Politecnica delle Marche, Ancona, Italy;

    rnForschungsinstitut Senckenberg, Deutsches Zentrum fuer Marine Biodiversita'tsforschung, Wilhelmshaven, Germany;

    rnIFREMER, Centre de Brest, Laboratoire Environnement Profond, Plouzane, France;

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

    biodiversity; census of marine life; deep sea; habitat heterogeneity; meiofauna; nematode genera;

    机译:生物多样性;海洋生物普查;深海;生境异质性meiofauna;线虫属;

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