首页> 外文期刊>Deep-Sea Research >Diatom species fluxes in the seasonally ice-covered Antarctic Zone: New data from offshore Prydz Bay and comparison with other regions from the eastern Antarctic and western Pacific sectors of the Southern Ocean
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Diatom species fluxes in the seasonally ice-covered Antarctic Zone: New data from offshore Prydz Bay and comparison with other regions from the eastern Antarctic and western Pacific sectors of the Southern Ocean

机译:季节性冰雪覆盖的南极地区的硅藻物种通量:来自Prydz海湾近海的新数据以及与南极东部和南太平洋西太平洋海域其他区域的比较

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摘要

The Antarctic Zone, the southernmost belt of the Antarctic Circumpolar Current, plays an important role in the control of atmospheric carbon dioxide concentrations. In the last decade, a number of studies have highlighted the importance of diatom assemblage composition in influencing the magnitude of the organic carbon and biogenic silica fluxes exported out of the mixed layer in Southern Ocean ecosystems. Here we investigate the relationship between the makeup of the diatom assemblage, organic carbon and biogenic silica export and several significant environmental parameters using sediment trap records deployed in different sectors of the Antarctic Zone. The study is divided in two parts. We first present unpublished diatom species flux data collected by a sediment trap in the offshore waters of Prydz Bay (Station PZB-1) over a year. The results of this study revealed a major export peak of diatom valves in Austral summer and two small unexpected secondary flux pulses dining full winter conditions. The summer diatom sinking assemblages were largely composed of small and rapidly dividing species such as Fragilariopsis cylindrus, Fragilariopsis curta and Pseudo-nitzschia lineola, while winter assemblages were dominated by Fragilariopsis kerguelensis most reflecting its persistent strategy and selective preservation.In the second part of the study, we compare the annual diatom assemblage composition and biogeochemical fluxes of Station PZB-1 with flux data documented in previous sediment trap studies conducted in other sectors of the Antarctic Zone in order to investigate how diatom floristics influence the composition and magnitude of particle fluxes in the Antarctic Zone. The lack of correlation between the annual diatom valve, organic carbon and biogenic silica fluxes across stations indicates that other factors aside from diatom abundance play a major role in the carbon and silica export in AZ. Among these factors, the composition of the diatom assemblage appears to be critical, as suggested by the strong and significant correlation between Bio-SiO2 and the valve fluxes of F. kerguelensis alone, that this species is the main Bio-SiO2 vector from the surface layer to the deep ocean in the AZ waters, regardless of its relative abundance. Lastly, the good correlation between the annual fluxes of the group of small Fragilariopsis species with satellite-derived chlorophyll-a concentration estimates over the study stations, suggest that high abundances of these species in the Southern Ocean paleorecords could be used as a proxy of high algal biomass accumulation.
机译:南极极地洋流最南端的南极带在控制大气中二氧化碳浓度方面起着重要作用。在过去的十年中,许多研究强调了硅藻组合物成分对影响从南大洋生态系统混合层输出的有机碳和生物硅通量的重要性。在这里,我们使用部署在南极地区不同区域的沉积物陷阱记录,研究了硅藻组合物的组成,有机碳和生物硅的出口量与几个重要环境参数之间的关系。该研究分为两个部分。我们首先介绍一年内由Prydz湾近海水域(PZB-1站)的沉积物收集器收集的未发表的硅藻物种通量数据。这项研究的结果表明,在澳大利亚夏季,硅藻阀的主要出口高峰是在整个冬季都出现了两个意外的小的次级通量脉冲。夏季硅藻下沉组合主要由小型且快速分裂的物种组成,例如圆叶fragilariopsisylylrus,Fragilariopsis curta和Pseudo-nitzschia lineola,而冬季组合则以fragilariopsis kerguelensis占主导地位,最能反映其持久的策略和选择性保存。在这项研究中,我们将PZB-1站的年度硅藻组合物组成和生物地球化学通量与先前在南极地区其他地区进行的沉积物捕集研究中记录的通量数据进行了比较,以研究硅藻类植物区系如何影响南极地区硅通量的组成和大小南极区。跨站的年度硅藻阀,有机碳和生物硅通量之间缺乏相关性,这表明除硅藻丰度外,其他因素在亚利桑那州的碳和硅出口中也起着重要作用。在这些因素中,硅藻组合物的组成似乎至关重要,这是由生物二氧化硅和单独的美洲锥the的瓣膜通量之间的强而显着的相关性暗示的,表明该物种是从表面上主要的生物二氧化硅载体不论其相对丰度如何,都可以到达AZ水域的深海。最后,在研究台站上,细小脆弱类物种的年通量与卫星派生的叶绿素-a浓度估算值之间的良好相关性,表明这些物种在南大洋古记录中的高丰度可以用作高通量的代名词。藻类生物量积累。

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  • 来源
    《Deep-Sea Research》 |2019年第3期|92-104|共13页
  • 作者单位

    Univ Salamanca, Dept Geol, Area Paleontol, E-37008 Salamanca, Spain;

    Univ Massachusetts Dartmouth, Sch Marine Sci & Technol SMAST, New Bedford, MA 02744 USA;

    IDAEA CSIC, Dept Environm Chem, Barcelona 08034, Spain;

    Portuguese Inst Sea & Atmosphere IPMA, Div Geol Marinha DivGM, Rua Alferedo Magalhaes Ramalho 6, Lisbon, Portugal|Univ Algarve, Ctr Ciencias Mar, CCMAR, Campus Gambelas, P-8005139 Faro, Portugal;

    Australian Natl Univ, Res Sch Earth Sci, 142 Mills Rd, Acton, ACT 2601, Australia;

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  • 入库时间 2022-08-18 04:18:29

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