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独特固相微萃取采样器揭示了各种深海热液喷口之间独特的生物地球化学特征。

Unique Solid Phase Microextraction Sampler Reveals Distinctive Biogeochemical Profiles among Various Deep-Sea Hydrothermal Vents.

机构信息

Department of Chemistry, University of Waterloo, 200 University Avenue West, Waterloo, ON, Canada.

Department of Biology and School of Earth & Ocean Sciences, University of Victoria, Victoria, BC, Canada.

出版信息

Sci Rep. 2020 Jan 28;10(1):1360. doi: 10.1038/s41598-020-58418-4.

Abstract

Current methods for biochemical and biogeochemical analysis of the deep-sea hydrothermal vent ecosystems rely on water sample recovery, or in situ analysis using underwater instruments with limited range of analyte detection and limited sensitivity. Even in cases where large quantities of sample are recovered, labile dissolved organic compounds may not be detected due to time delays between sampling and preservation. Here, we present a novel approach for in situ extraction of organic compounds from hydrothermal vent fluids through a unique solid phase microextraction (SPME) sampler. These samplers were deployed to sample effluent of vents on sulphide chimneys, located on Axial Seamount in the North-East Pacific, in the Urashima field on the southern Mariana back-arc, and at the Hafa Adai site in the central Mariana back-arc. Among the compounds that were extracted, a wide range of unique organic compounds, including labile dissolved organic sulfur compounds, were detected through high-resolution LC-MS/MS, among which were biomarkers of anammox bacteria, fungi, and lower animals. This report is the first to show that SPME can contribute to a broader understanding of deep sea ecology and biogeochemical cycles in hydrothermal vent ecosystems.

摘要

目前用于深海热液喷口生态系统的生物化学和生物地球化学分析的方法依赖于水样回收,或使用水下仪器进行原位分析,但这些仪器的分析物检测范围有限,灵敏度也有限。即使回收了大量的样品,由于采样和保存之间的时间延迟,不稳定的溶解有机化合物也可能检测不到。在这里,我们提出了一种从热液喷口流体中通过独特的固相微萃取(SPME)取样器原位提取有机化合物的新方法。这些取样器被部署到位于东北太平洋轴向山的硫化物烟囱、马里亚纳弧南端的浦岛海域以及马里亚纳弧中部的 Hafa Adai 地点的喷口流出物中进行采样。在所提取的化合物中,通过高分辨率 LC-MS/MS 检测到了广泛的独特有机化合物,包括不稳定的溶解有机硫化合物,其中包括厌氧氨氧化细菌、真菌和低等动物的生物标志物。本报告首次表明,SPME 可以有助于更全面地了解深海生态学和热液喷口生态系统中的生物地球化学循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6549/6987176/0c9e3da36deb/41598_2020_58418_Fig1_HTML.jpg

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