4.7 Article

Biosynthetic investigation of γ-lactones in Sextonia rubra wood using in situ TO F-SIMS MS/MS imaging to localize and characterize biosynthetic intermediates

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SCIENTIFIC REPORTS
卷 9, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41598-018-37577-5

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  1. Agence Nationale de la Recherche (France) [ANR-2015-CE29-0007-01 DEFIMAGE]
  2. Investissement d'Avenir grant [ANR-10-LABX-25-01]
  3. China Scholarship Council (CSC) [201406310013]

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Molecular analysis by parallel tandem mass spectrometry (MS/MS) imaging contributes to the in situ characterization of biosynthetic intermediates which is crucial for deciphering the metabolic pathways in living organisms. We report the first use of TOF-SIMS MS/MS imaging for the cellular localization and characterization of biosynthetic intermediates of bioactive gamma-lactones rubrynolide and rubrenolide in the Amazonian tree Sextonia rubra (Lauraceae). Five gamma-lactones, including previously reported rubrynolide and rubrenolide, were isolated using a conventional approach and their structural characterization and localization at a lateral resolution of similar to 400 nm was later achieved using TOF-SIMS MS/MS imaging analysis. 2D/3D MS imaging at subcellular level reveals that putative biosynthetic gamma-lactones intermediates are localized in the same cell types (ray parenchyma cells and oil cells) as rubrynolide and rubrenolide. Consequently, a revised metabolic pathway of rubrynolide was proposed, which involves the reaction between 2-hydroxysuccinic acid and 3-oxotetradecanoic acid, contrary to previous studies suggesting a single polyketide precursor. Our results provide insights into plant metabolite production in wood tissues and, overall, demonstrate that combining high spatial resolution TOF-SIMS imaging and MS/MS structural characterization offers new opportunities for studying molecular and cellular biochemistry in plants.

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