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首页> 外文期刊>Deep-sea research.Part I.Oceanographic research papers >Siliceous micro- and nanoplankton fluxes over the Northwind Ridge and their relationship to environmental conditions in the western Arctic Ocean
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Siliceous micro- and nanoplankton fluxes over the Northwind Ridge and their relationship to environmental conditions in the western Arctic Ocean

机译:硅质的微型和纳米代纳斯兰特在Northwind山脊上的通量及其与西部北冰洋的环境条件的关系

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摘要

Siliceous planktons are valuable indicators of the environmental conditions in both modern and past marine settings. However, in contrast to diatoms and radiolarians, other siliceous micro- and nanoplankton in the Arctic Ocean have been rarely explored. In this study, silicoflagellates, endoskeletal dinoflagellate Actiniscus pentasterias and chrysophyte cysts were investigated in one-year mooring sediment trap material (from August 2008 to September 2009) collected in the Northwind Ridge, western Arctic Ocean. The silicoflagellate assemblage was dominated by Stephanocha speculum, accounting for > 71% of the total silicoflagellate composition. While S. speculum was overwhelmingly abundant in summer, S. medianoctisol and S. octonaria were more frequent during winter. The export fluxes of endoskeletal dinoflagellate A. pentasterias did not show clear seasonal pattern except for a peak value in September 2009. We suggest that high flux of A. pentasterias reflects nutrient rich environment at sea ice edge rather than cold under sea ice conditions. High fluxes of chrysophyte cysts were recorded in summer 2009 peaking in late July and early August, ~10 times higher than in summer 2008. Peak of chrysophyte cysts and sea ice melting occurred simultaneously. In addition, observed encystment might be triggered by the population density, hence indicating a favorable environment for phytoplankton blooming. These siliceous micro- and nanoplankton provides information on the modern Arctic Ocean environment but requires further investigations to consolidate knowledge for robust use in paleoceanography.
机译:Symicous Planktons是现代和过去海洋环境中的环境条件的有价值指标。然而,与硅藻和辐射硅藻土形成鲜明对比,北冰洋中的其他硅质微观和纳米醛植物已经很少被探索。在这项研究中,在一年的系泊沉积物陷阱材料(2009年8月至2009年9月)中,在Northwind Ridge,西北极海中收集了二氧化硅,内骨甲基葡萄球菌和菊粉囊肿和菊粉囊肿。二氧化硅组合物由Stephanocha窥器支配,占硅氧化合物组合物的> 71%。虽然S.窥器在夏天夏天压倒了丰富,而S.中位数和S. Octonaria在冬季更频繁。内骨型Dinoflagellate A.Pentasterias的出口通量没有显示出明确的季节性模式,除了2009年9月的峰值。我们建议A.Pentasterias的高通量反映了海上冰边的营养丰富的环境,而不是在海冰条件下冷。夏季夏季,七月后峰和8月初的峰值记录了高碳粉瘤,比2008年夏季高〜10倍。菊花细胞囊肿和海冰融化的峰值同时发生。此外,观察到的封口可能被人口密度引发,因此表示浮游植物盛开的有利环境。这些硅质微观和纳米纳克斯兰特提供有关现代北极海洋环境的信息,但需要进一步调查,以巩固对古社区的强大使用知识。

著录项

  • 来源
    《Deep-sea research.Part I.Oceanographic research papers》 |2021年第8期|103568.1-103568.10|共10页
  • 作者单位

    Key Laboratory of Marine Ecosystem Dynamics Ministry of Natural Resources Hangzhou 310012 China|Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China|Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai) Zhuhai 519000 China;

    Key Laboratory of Marine Ecosystem Dynamics Ministry of Natural Resources Hangzhou 310012 China|Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China|State Key Laboratory of Satellite Ocean Environment Dynamics Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China;

    Key Laboratory of Marine Ecosystem Dynamics Ministry of Natural Resources Hangzhou 310012 China|Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China;

    Key Laboratory of Marine Ecosystem Dynamics Ministry of Natural Resources Hangzhou 310012 China|State Key Laboratory of Satellite Ocean Environment Dynamics Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China;

    Key Laboratory of Marine Ecosystem Dynamics Ministry of Natural Resources Hangzhou 310012 China|Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China;

    Sorbonne Université Campus Pierre et Marie Curie LOCEAN 4 place Jussieu F-75005 Paris France;

    Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China|State Key Laboratory of Satellite Ocean Environment Dynamics Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China;

    Key Laboratory of Marine Ecosystem Dynamics Ministry of Natural Resources Hangzhou 310012 China|Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China|State Key Laboratory of Satellite Ocean Environment Dynamics Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China;

    Key Laboratory of Marine Ecosystem Dynamics Ministry of Natural Resources Hangzhou 310012 China|Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China;

    Key Laboratory of Marine Ecosystem Dynamics Ministry of Natural Resources Hangzhou 310012 China|Second Institute of Oceanography Ministry of Natural Resources Hangzhou 310012 China;

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

    Arctic ocean; Chrysophyte cysts; Endoskeletal dinoflagellate; Sediment trap; Siliceous micro- and nanoplankton; Silicoflagellates;

    机译:北冰洋;菊芋;内骨甲醛;沉积物陷阱;硅质微型和纳米醛植物;硅片;

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