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首页> 外文期刊>Journal of plankton research >Carbon biomass, elemental ratios (C:N) and stable isotopic composition (δ~(13)C, δ~(15)N) of dominant calanoid copepods during the winter-to-summer transition in the Amundsen Gulf (Arctic Ocean)
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Carbon biomass, elemental ratios (C:N) and stable isotopic composition (δ~(13)C, δ~(15)N) of dominant calanoid copepods during the winter-to-summer transition in the Amundsen Gulf (Arctic Ocean)

机译:阿蒙森湾(北冰洋)冬夏过渡期主要cal足类co足类的碳生物量,元素比(C:N)和稳定的同位素组成(δ〜(13)C,δ〜(15)N)

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摘要

Calanoid copepods dominate mesozooplankton biomass in the Arctic Ocean. Variations in C content, C:N ratio and stable isotope composition (δ~(13)C, δ~(15)N) of Calanus hyperboreus, Calanus glacialis and Metridia longa collected from January to August 2008 in the southeast Beaufort Sea provided insights into their metabolism, feeding and reproduction. Seasonal differences in the C-prosome length relationships and C:N ratios were driven by distinct spawning strategies and changes in lipid content. Relatively high copepod biomass over the study period (2.6-9.7 g C m~(-2)) corresponded to favorable growth conditions in 2007-2008. The mean ~(15)N enrichment of copepods (+2.8-4.7‰) relative to particulate organic nitrogen values recorded at the ice bottom and at the chlorophyll maximum indicated a primarily herbivorous diet. In all species, δ~(13)C and δ~(15)N decreased markedly in April, reflecting the feeding onset on ice algae, but a rapid transition to feeding on phytoplankton occurred as a pelagic bloom was triggered by the early ice melt in May. A second decline in the δ~(13)C and δ~(15)N of copepods was recorded in June-July, coincident with a second increase in phytoplankton production. The two isotope depletion events in copepods were both followed by a return to high values and an increase in their C:N as a consequence of previous C fixation and nitrate limitation in phytoplankton and the likely formation of body reserves/tissue. Our results illustrate that Arctic calanoids respond quickly to any increase in primary production and can cope with changes in its nature and timing.
机译:alan类co足类动物在北冰洋的中游浮游生物中占主导地位。 2008年1月至2008年8月在博福特海东南部采集的hyper鱼,冰alan和长Me的C含量,C:N比和稳定同位素组成(δ〜(13)C,δ〜(15)N)的变化提供了见解进入他们的新陈代谢,喂养和繁殖。 C-prosome长度关系和C:N比的季节性差异是由不同的产卵策略和脂质含量的变化所驱动的。研究期间co足类生物量相对较高(2.6-9.7 g C m〜(-2))对应于2007-2008年有利的生长条件。相对于冰底和叶绿素最大值处记录的颗粒有机氮值,co足类动物的平均〜(15)N富集量(+ 2.8-4.7‰)表示主要是草食性。在所有物种中,δ〜(13)C和δ〜(15)N在四月份显着下降,反映了冰藻的摄食开始,但由于浮冰的早期融化触发了浮游水华,因此发生了向浮游植物摄食的快速过渡。在五月。 6月至7月,co足类动物的δ〜(13)C和δ〜(15)N出现了第二次下降,这与浮游植物产量的第二次上升相吻合。由于先前的C固定和浮游植物中的硝酸盐限制以及可能形成的身体储备/组织,co足类动物中的两个同位素耗竭事件都随后返回到高值并增加了C:N。我们的结果表明,北极降落伞对初级生产的任何增加都能迅速做出反应,并且可以应对其性质和时间的变化。

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