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基于UPLC-Orbitrap MS检测海洋沉积物中C40含氧化合物

杨若宸 张恩权 何晨 吴建勋 张亚和 郑强 史权

质谱学报2026,Vol.47Issue(1):80-89,10.
质谱学报2026,Vol.47Issue(1):80-89,10.DOI:10.7538/zpxb.2025.0041

基于UPLC-Orbitrap MS检测海洋沉积物中C40含氧化合物

Detection of C40 Oxygenated Compounds in Marine Sediments Based on UPLC-Orbitrap MS

杨若宸 1张恩权 2何晨 1吴建勋 1张亚和 1郑强 2史权1

作者信息

  • 1. 中国石油大学(北京)重质油全国重点实验室,北京 102200
  • 2. 厦门大学海洋与地球学院,海洋生物地球化学全国重点实验室,福建 厦门 361005||碳中和创新研究中心,福建省海洋碳汇重点实验室(厦门大学),福建 厦门 361005
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摘要

Abstract

Terpenoids are a class of naturally occurring lipids biosynthesized by organisms,characterized by their isoprenoid unit structure.Following the death of an organism,these chemically stable biomarkers become buried and preserved in geological sediments.The characterization of the molecular composition of terpenoids in geological formations can effectively reflect the composition of the maternal biological communities,thereby providing crucial evidence for the reconstructing of paleoecosystems and biogeochemical cycles.However,the detection of lipids in natural environments is challenged by matrix interference,particularly in marine sediments,where the presence of inorganic salts significantly hinder lipid detection.This study employed ultra-high performance liquid chromatography coupled with Orbitrap mass spectrometry(UPLC-Orbitrap MS)to detect terpenoids in marine sediments.By utilizing the separation capability of liquid chromatography for compounds with various polarities,the method enabled online desalting and rapid detection of 78 distinct C40 oxygen-containing compounds in marine sediment samples.Separation was performed using a BEH C18 column(100 mm×2.1 mm,1.7 μm).The mobile phase consisted of a 0.1%formic acid aqueous solution and a 0.1%formic acid solution in acetonitrile-methanol(1:1,V/V)for gradient elution.MS data were acquired under positive ion electrospray ionization(ESI+)mode,with targets ionized as[M+H]+.Salts and organic matters eluted at different retention times.Under conditions that minimize inorganic salt interference,the molecular compositions of the detected C40 compounds were deduced by matching their molecular formulas to the primary mass spectrometry data.The ion with the highest relative abundance at m/z 599.409 8 was selected for tandem mass spectrometry fragmentation using high-energy collisional dissociation(HCD),and the detected compound was identified as myxoxanthophyll.Based on the principles of natural product chemistry and corroborated by tandem mass spectrometry(MS/MS)analysis,these oxygenated compounds were inferred to predominantly comprise xanthophyll-type tetraterpenoids.Xanthophylls were a major subclass of carotenoid pigments,which themselves represented an important category of tetraterpenoid pigments widely distributed in photosynthetic organisms.This study provides the molecular composition of C40 oxygen-containing compounds along a gradient extending from estuaries to marginal seas.This composition serves as a reflection of the primary productivity structure dominated by diatoms,green algae,and brown algae in the water body of the East China Sea.This method enables real-time removal of polar salts and achieves online desalting of saline organic matter,providing an effective technical approach for the detection of terpenoid compounds in complex geological environments.

关键词

超高效液相色谱(UPLC)/高分辨质谱(HRMS)/海洋沉积物/脂质/四萜类/叶黄素类

Key words

ultra-performance liquid chromatography(UPLC)/high-resolution mass spectrometry(HRMS)/marine sediments/lipids/tetraterpenoids/xanthophylls

分类

化学化工

引用本文复制引用

杨若宸,张恩权,何晨,吴建勋,张亚和,郑强,史权..基于UPLC-Orbitrap MS检测海洋沉积物中C40含氧化合物[J].质谱学报,2026,47(1):80-89,10.

基金项目

国家基金委青年科学基金项目C类(42403031) (42403031)

国家自然科学基金委员会共享航次计划项目(42249902) (42249902)

中国石油大学(北京)科研基金(2462023YJRC003) (北京)

质谱学报

1004-2997

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