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首页> 外文期刊>Marine ecology progress series >Chemosynthesis influences food web and community structure in high-Arctic benthos
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Chemosynthesis influences food web and community structure in high-Arctic benthos

机译:化学合成影响高北极底栖动物的食物网和群落结构

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摘要

Cold seeps are locations where seafloor communities are influenced by the seepage of methane and other reduced compounds from the seabed. We examined macro-infaunal benthos through community analysis and trophic structure using stable isotope analysis at 3 seep locations in the Barents Sea. These seeps were characterized by high densities of the chemosymbiotic polychaetes Siboglinidae, Glade Frenulata (up to 32 120 ind. m(-2)), and thyasirid bivalves, Mendicula cf. pygmaea (up to 4770 ind. m(-2)). We detected low delta C-13 signatures in chemosymbiotic polychaetes and in 3 species of omnivorous/predatory polychaetes. These delta C-13 signatures indicate the input of chemosynthesis-based carbon (CBC) into the food web. Applying a 2-source mixing model, we demonstrated that 28-41 % of the nutrition of non-chemosymbiotic polychaetes originates from CBC. We also documented large community variations and small-scale variability within and among the investigated seeps, showing that the impact of seepage on faunal community structure transcends geographic boundaries within the Barents Sea. Moreover, aggregations of heterotrophic macro- and megafauna associated with characteristic seep features (microbial mats, carbonate outcrops, and chemosymbiotic worm-tufts) add 3-dimensional structure and habitat complexity to the seafloor. Cold seeps contribute to the hydrocarbon-derived chemoautotrophy component of these ecosystems and to habitat complexity. These characteristics make the cold seeps of potential high ecological relevance in the functioning of the larger Arctic-Barents Sea ecosystem.
机译:冷渗漏是甲烷和其他还原化合物从海床渗入影响海底群落的场所。我们通过在巴伦支海的3个渗流位置使用稳定同位素分析,通过群落分析和营养结构检查了大型不育底栖生物。这些渗出物的特征是高化学共生多毛cha科Siboglinidae,Glade Frenulata(高达32120 ind。m(-2))和thyasirid双壳类(Mendicula cf.)。 (最多4770 ind。m(-2))。我们在化学共生多毛动物和3种杂食性/掠食性多毛动物中检测到低δC-13标记。这些C-13δ标记表示将基于化学合成的碳(CBC)输入食物网。应用两源混合模型,我们证明了非化学共生多毛动物的28-41%的营养来自CBC。我们还记录了所调查的渗流内部和之中的大型群落变化和小规模变异性,表明渗流对动物群落结构的影响超越了巴伦支海的地理边界。此外,异养的大型和大型动物群的聚集与特征性的渗漏特征(微生物垫,碳酸盐岩露头和化学共生蠕虫簇)有关,为海底增加了三维结构和栖息地的复杂性。冷渗是这些生态系统中碳氢化合物引起的化学自养成分的一部分,并导致了栖息地的复杂性。这些特征使较大的北极-巴伦支海生态系统发挥潜在的高生态相关性。

著录项

  • 来源
    《Marine ecology progress series》 |2019年第24期|19-42|共24页
  • 作者单位

    UiT Arctic Univ Norway Dept Geosci CAGE Ctr Arctic Gas Hydrate Environm & Climate N-9037 Tromso Norway|UIT Arctic Univ Norway Dept Arctic & Marine Biol N-9037 Tromso Norway;

    UiT Arctic Univ Norway Dept Geosci CAGE Ctr Arctic Gas Hydrate Environm & Climate N-9037 Tromso Norway|Akvaplan Niva FRAM High North Res Ctr Climate & Environm N-9296 Tromso Norway;

    UiT Arctic Univ Norway Dept Geosci CAGE Ctr Arctic Gas Hydrate Environm & Climate N-9037 Tromso Norway|Nord Univ Fac Biosci & Aquaculture N-8049 Bode Norway;

    UiT Arctic Univ Norway Dept Geosci CAGE Ctr Arctic Gas Hydrate Environm & Climate N-9037 Tromso Norway|Univ Basel Dept Environm Sci CH-4056 Basel Switzerland|NIOZ Royal Netherlands Inst Sea Res Dept Marine Microbiol & Biogeochem NL-1790 AB Den Burg Texel Netherlands|Univ Utrecht NL-1790 AB Den Burg Texel Netherlands|Univ Utrecht Fac Geosci Dept Earth Sci NL-3508 TC Utrecht Netherlands;

    Akvaplan Niva FRAM High North Res Ctr Climate & Environm N-9296 Tromso Norway|Coastal Carolina Univ Sch Coastal Environm Conway SC 29528 USA;

    Univ Basel Dept Environm Sci CH-4056 Basel Switzerland;

    Akvaplan Niva FRAM High North Res Ctr Climate & Environm N-9296 Tromso Norway|UiT Arctic Univ Norway Dept Geosci N-9037 Tromso Norway;

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

    Cold seeps; Benthos; Methane; Trophic structure; Stable isotopes; Barents Sea; Svalbard;

    机译:冷渗漏;Benthos;甲烷营养结构;稳定同位素;巴伦支海;斯瓦尔巴特群岛;

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