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Updated: Jun 19, 2026

Rapid High-throughput Species Identification of Botanical Material Using Direct Analysis in Real Time High Resolution Mass Spectrometry
Published on: October 2, 2016
Systematic Revealing of Plant-Derived Nerve Agent Exposure Markers by In-Source Fragmentation-Enabled HRMS
Yongqi Li1, Yichun Chen1, Jia Chen1
1Academy of Military Medical Sciences , Beijing100850, China.
Abstract:
Identifying diverse, uncharacterized plant-derived nerve agent adducts is a formidable challenge for environmental exposure confirmation and forensic attribution. We developed a fragmentation pattern-driven nontargeted screening strategy integrating in-source fragmentation with Full MS, all-ion fragmentation (AIF), and neutral loss (NL)-triggered ddMS2 acquisition. By utilizing agent-specific neutral losses and diagnostic fragment ions, 256 tentative adduct-related features were identified across four nerve agents and four plant species, establishing an expansive repository of previously unreported candidate markers. Structural characteristics and preferential adduction sites were elucidated through integrated interpretation of high-resolution MS data, fragmentation pathways, and density functional theory calculations. Notably, 9 features exhibited conservation across plant species, while 11 features remained detectable at low-level exposure in Arabidopsis thaliana, highlighting their potential as viable markers. This strategy expands the detectable chemical space for plant-derived nerve agent adducts and provides a transferable framework for environmental exposure assessment and emerging contaminants research.
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