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Effects of sample storage and shell orientation on LA-ICPMS trace element measurements on deep-sea mussels

机译:样品存储和壳取向对深海贻贝LA-ICPMS痕量元素测量的影响

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摘要

Geochemical markers are being increasingly applied to fundamental questions in population and community ecology in marine habitats because they allow inferences on individuals dispersal, but vital effects, small sample size and instrumental limitation are still challenging particularly in deep-sea studies. Here we use shells of the deep-sea bivalve Idas modiolaeformis to assess potential effects of sample storage, mineralogy, and valve orientation on LA-ICPMS measurements. Trace element concentrations of 24Mg, 43Ca, 88Sr, 137Ba, 208Pb, and 238U are not affected by the two most commonly used storage methods of biologic deep-sea samples (frozen at –20°C and fixed in 95% ethanol); thus combined analysis of differently preserved specimens is possible when the number of individuals is insufficient and distinct sample fixation is needed for multiple purposes. Valve orientation had a strong impact on quantification of trace elements in the calcitic but not in the aragonitic layer of adult shells. Hence, to enable comparisons between adult shells and entirely aragonitic embryonic shells, a reference map of site-specific signatures can potentially be generated using the aragonitic layer of the adult shells. Understanding ontogenetic changes and environmental effects in trace element incorporation is critical before geochemical fingerprinting can be used as a tool for larval dispersal studies in the deep-sea.
机译:地球化学标记正越来越多地用于海洋生境的人口和社区生态学的基本问题,因为它们可以推断出个体的分布,但是特别是在深海研究中,重要的影响,较小的样本量和仪器的局限性仍然具有挑战性。在这里,我们使用深海双壳类爱达斯分子的壳来评估样品存储,矿物学和阀门方向对LA-ICPMS测量的潜在影响。微量元素浓度 24 Mg, 43 Ca, 88 Sr, 137 Ba, 208 Pb和 238 U不受两种最常用的生物深海样品存储方法(在–20°C冷冻并固定在95%乙醇中)的影响;因此,当个体数量不足并且出于多种目的需要不同的样品固定方法时,可以对不同保存的样本进行组合分析。瓣膜取向对钙的痕量元素的定量影响很大,但对成年蛋壳的烟碱层中的微量元素没有影响。因此,为了能够比较成年的壳和完全松香的胚壳,可以使用成年的壳的松香层潜在地产生位点特异性标记的参考图。在将地球化学指纹图谱用作深海幼虫扩散研究的工具之前,了解微量元素掺入中的个体发育变化和环境影响至关重要。

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