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首页> 外文期刊>Journal of plankton research >Transfer of ice algae carbon to ice-associated amphipods in the high-Arctic pack ice environment
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Transfer of ice algae carbon to ice-associated amphipods in the high-Arctic pack ice environment

机译:在高北极包冰环境中将冰藻碳转移到冰相关的两种

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摘要

Sympagic (ice-associated) amphipods channel carbon into the marine ecosystem. With Arctic sea ice extent in decline, it is becoming increasingly important to quantify this transfer of sympagic energy. Recently, a method for quantifying sympagic particulate organic carbon (iPOC) in filtered water samples was proposed based on the abundances of the Arctic sea ice biomarker IP25. Here, we tested the hypothesis that adoption of this method could also provide quantitative estimates of iPOC transfer within Arctic amphipods. We analysed five amphipod species collected north of Svalbard and compared findings to some previous studies. Estimates showed that Onisimus glacialis and Apherusa glacialis contained the most iPOC, relative to dry mass (23.5 +/- 4.5 and 9.8 +/- 1.9 mg C g(-1), respectively), while Gammarus wilkitzkii had the highest grazing impact on the available ice algae (0.48 mg C m(-2), for an estimated 24 h), equating to 73% of algal standing stock. Our findings are also broadly consistent with those obtained by applying the H-Print biomarker approach to the same samples. The ability to obtain realistic quantitative estimates of iPOC transfer into sympagic and pelagic fauna will likely have important implications for modelling energy flow in Arctic food webs during future climate scenarios.
机译:共食(冰伴生)端足类将碳导入海洋生态系统。随着北极海冰面积的减少,量化这种共相能量的转移变得越来越重要。最近,基于北极海冰生物标记物IP25的丰度,提出了一种定量测定过滤水样中共沉积颗粒有机碳(iPOC)的方法。在这里,我们检验了这样一个假设,即采用这种方法也可以提供北极端足类内iPOC转移的定量估计。我们分析了斯瓦尔巴群岛北部收集的五种端足类动物,并将研究结果与之前的一些研究进行了比较。估计结果表明,相对于干质量(分别为23.5+/-4.5和9.8+/-1.9 mg C g(-1))而言,冰藻和冰藻的iPOC含量最高,而在估计的24小时内,金枪鱼对可用冰藻的放牧影响最大(0.48 mg C m(-2),相当于藻类现存量的73%。我们的发现也与将H-Print生物标记物方法应用于相同样本所获得的结果大体一致。在未来的气候情景中,获得向共上层和中上层动物群转移的iPOC的现实定量估计的能力可能对北极食物网中的能量流建模具有重要意义。

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