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首页> 外文期刊>Polar biology >Elemental composition, total lipid content, and lipid class proportions in zooplankton from the benthic boundary layer of the Beaufort Sea shelf (Canadian Arctic)
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Elemental composition, total lipid content, and lipid class proportions in zooplankton from the benthic boundary layer of the Beaufort Sea shelf (Canadian Arctic)

机译:博福特海架子底栖边界层(加拿大北极)浮游动物的元素组成,总脂质含量和脂质类别比例

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摘要

Biochemical analyses such as lipid class and elemental composition can inform us about a species' role in community energetics and nutrient cycling. The accumu-lation of lipid-rich energy stores affects the elemental com-position and stoichiometry of animal tissues, and this relationship is especially relevant to zooplankton at higher latitudes due to increased seasonal lipid storage. However, due to sampling difficulties, the elemental composition and energy storage capabilities of polar, benthic boundary layer zooplankton are poorly known. We determined elemental and lipid class compositions for 26 taxa of benthic boundary layer zooplankton from the Beaufort Sea shelf. Elemental composition as a percentage of dry weight ranged 21-56% for carbon (C), 4-11% for nitrogen (N), and 0.1-1.1% for phosphorus (P) across all taxa. C concen-tration and C:N were positively correlated with the storage lipids triacylglycerols (TG) and wax esters/steryl esters (WE/SE) and negatively correlated with membrane lipids (phospholipids and sterols). Most taxa had high levels of storage lipids, generally TG. High levels of WE/SE were found in the copepod Calanus hyperboreus (>90% of total lipid) and the chaetognath Eukrohnia hamata (72%). In contrast, the chaetognath Parasagitta elegans had only minor proportions of both TG and WE/SE. The high levels of storage lipids in most taxa indicate that feeding behavior of benthic boundary layer zooplankton on the Beaufort Sea shelf is tightly linked with seasonal pulses of epipelagic production. This is the first report on the biochemical com-position of most of the amphipod and mysid taxa presented here.
机译:生化分析(例如脂质类别和元素组成)可以使我们了解物种在社区能量和营养循环中的作用。富含脂质的能量存储的累积影响动物组织的元素组成和化学计量,并且由于季节性脂质存储增加,这种关系与较高纬度的浮游动物特别相关。然而,由于采样困难,极少的底栖边界层浮游动物的元素组成和能量存储能力知之甚少。我们确定了波弗特海陆架26个底栖边界层浮游动物类群的元素和类脂类组成。在所有类群中,元素组成(以干重的百分比计)对于碳(C)为21-56%,对于氮(N)为4-11%,对于磷(P)为0.1-1.1%。 C浓度和C:N与储存脂质三酰基甘油(TG)和蜡酯/硬脂酸酯(WE / SE)呈正相关,与膜脂质(磷脂和固醇)呈负相关。大多数分类单元具有高水平的储存脂质,通常是TG。在the足类的Calanus hyperboreus(> 90%的总脂质)和chaetognath Eukrohnia hamata(72%)中发现了高水平的WE / SE。相比之下,南美白刺线虫的TG和WE / SE的比例都很小。大多数类群中高水平的储存脂质表明,波弗特海陆架底栖边界层浮游动物的摄食行为与上层生产的季节性脉动紧密相关。这是有关这里介绍的大多数两栖动物和类腮腺类生物化学组成的第一份报告。

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