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Spatial, seasonal and inter-annual variation in abundance and carbon turnover of small copepods in Young Sound, Northeast Greenland

机译:格陵兰岛东北部年轻声音小small足类动物的丰度和碳转换的空间,季节和年际变化

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摘要

Melting of the Arctic cryosphere affects the marine ecosystem in general and the coastal zone in particular. In Greenland, melting of the Greenland Ice Sheet has accelerated with complex but largely undocumented effects on marine carbon cycling and ecosystem structure. We studied production and population dynamics of the abundant copepods Oithona similis, Triconia borealis and Pseudocalanus spp. in Young Sound, Northeast Greenland, during the ice-free period from July to October 2014 at four stations located along a freshwater gradient from the inner fjord to the Greenland Sea. Additionally, inter-annual variation in copepod species composition in August from 2003 to 2015 was examined. Melt water resulted in strong stratification of surface water during July and August. Integrated chlorophyll a was lower at the stations nearest the glaciers and a bigger proportion of the chlorophyll was made up of small cells (10m). Small non-calanus copepod species dominated total copepod abundance especially in the freshwater impacted inner fjord and late in the ice-free period. Production of Pseudocalanus spp. was related to chlorophyll a concentration while production of O. similis was less so. Egg production and stage composition indicated that O. similis reproduce throughout the ice-free season, while reproduction of Pseudocalanus spp. was restricted to July and August. The production of small species was minor compared to Calanus spp. in July and August, but it accounted for a relatively large fraction of the total production in September and October (up to 69%). On a decadal scale only Pseudocalanus spp. showed an overall reduction in abundance, while the abundances of other genera were relatively constant. Our study suggests that increasing freshwater runoff and a longer growth season, due to later ice formation, may increase the proportion of primary production passing through the smaller copepod species.
机译:北极冰冻圈的融化会影响整个海洋生态系统,特别是沿海地区。在格陵兰,由于对海洋碳循环和生态系统结构具有复杂但很大程度上未记录的影响,格陵兰冰原的融化加速了。我们研究了丰富的pe足类Oithona similis,Triconiaborealis和Pseudocalanus spp的生产和种群动态。在2014年7月至2014年10月的无冰期,从内峡湾到格陵兰海沿淡水坡度分布的四个站处于无冰期。此外,还研究了2003年至2015年8月August足类物种组成的年际变化。融水导致7月和8月的地表水强烈分层。最靠近冰川的站点的综合叶绿素a较低,而较大比例的叶绿素由小细胞组成(<10m)。小的非cal属co足类物种在pe足类的总丰度中占主导地位,特别是在受淡水影响的内峡湾和无冰期后期。生产假单胞菌。与叶绿素a浓度有关,而拟南芥的产量则少。产卵和阶段组成表明,O。similis在整个无冰季节繁殖,而Pseudocalanus spp繁殖。仅限于七月和八月。与Calanus spp相比,小物种的产量较小。在7月和8月,但它在9月和10月占总产量的比例相对较高(高达69%)。在十年尺度上,仅假单胞菌属。总体上显示丰度降低,而其他属的丰度相对恒定。我们的研究表明,由于后期结冰,增加了淡水径流量和延长了生长期,可能会增加通过较小co足类的初级生产的比例。

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  • 来源
    《Polar biology》 |2019年第1期|179-193|共15页
  • 作者单位

    Aarhus Univ, Arctic Res Ctr, Ny Munkegade 114,Bldg 1540, DK-8000 Aarhus C, Denmark;

    Aarhus Univ, Arctic Res Ctr, Ny Munkegade 114,Bldg 1540, DK-8000 Aarhus C, Denmark|Aarhus Univ, Marine Divers & Expt Ecol, Dept Biosci, Frederiksborgvej 399, DK-4000 Roskilde, Denmark;

    Greenland Inst Nat Resources, Greenland Climate Res Ctr, Kivioq 3,POB 570, Nuuk 3900, Greenland;

    Aarhus Univ, Arctic Res Ctr, Ny Munkegade 114,Bldg 1540, DK-8000 Aarhus C, Denmark|Aarhus Univ, Marine Ecol, Dept Biosci, Vejlsovej 25, DK-8600 Silkeborg, Denmark;

    Aarhus Univ, Arctic Res Ctr, Ny Munkegade 114,Bldg 1540, DK-8000 Aarhus C, Denmark|Aarhus Univ, Marine Ecol, Dept Biosci, Vejlsovej 25, DK-8600 Silkeborg, Denmark;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Egg hatching rate; Egg production rate; Oithona similis; Pseudocalanus spp; Northeast Greenland; Young Sound;

    机译:卵孵化率;产蛋率;似油菜;假单胞菌;东北格陵兰;扬声;

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