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UPLC-ESI-QTOF-MS 辅助靶向代谢组学研究在受控 LED 环境下生长的长春花植物中长春碱类生物碱及相关代谢物的富集。

UPLC-ESI-QTOF-MS assisted targeted metabolomics to study the enrichment of vinca alkaloids and related metabolites in Catharanthus roseus plants grown under controlled LED environment.

机构信息

Department of Plant Physiology and Metabolomics, Agricultural Institute, Centre for Agricultural Research, ELKH, Brunszvik u. 2., Martonvásár 2462, Hungary; Department of Food Chemistry and Analytical Chemistry, Institute of Food Science and Technology, Hungarian University of Agriculture and Life Sciences, Villányi út 29-43., Budapest 1118, Hungary.

Department of Plant Physiology and Metabolomics, Agricultural Institute, Centre for Agricultural Research, ELKH, Brunszvik u. 2., Martonvásár 2462, Hungary.

出版信息

J Pharm Biomed Anal. 2023 Oct 25;235:115611. doi: 10.1016/j.jpba.2023.115611. Epub 2023 Jul 29.

Abstract

Enrichment of pharmaceutically important vinca alkaloids, vinblastine and vincristine, in the leaves of Madagascar periwinkle (Catharanthus roseus) plants through different pre- or postharvest treatments or cultivation conditions, e.g., exposing the plants to UV-irradiation, has been in focus for decades. Controlled LED environment in the visible light range offers the possibility of monitoring the changes in the concentration of metabolites in the vinca alkaloid-related pathway without involving UV-related abiotic stress. In the frame of our targeted metabolomics approach, 64 vinca alkaloids and metabolites were screened with the help of a UPLC-ESI-QTOF-MS instrumental setup from the leaf extracts of C. roseus plants grown in chambers under control (medium light), low light, and high blue / high red/ high far-red conditions. Out of the 14 metabolites that could be assigned either unambiguously with authentic standards or tentatively with high resolution mass spectrometry-based methods, all three dimer vinca alkaloids, that is, 3',4'-anhydrovinblastine, vinblastine and vincristine showed an at least nine-fold enrichment under high blue irradiation when compared with the control conditions: final concentrations of 961 mg kg dry weight, 33.8 mg kg dry weight, and 11.7 mg kg dry weight could be achieved, respectively. As supported by multivariate statistical analysis, the key metabolites of the vinca alkaloid pathway were highly represented among the metabolites that were specifically stimulated by high blue light application.

摘要

通过不同的采前或采后处理或种植条件,如使植物暴露在 UV 辐射下,来富集马达加斯加长春花(长春花)叶片中的具有药用价值的长春碱和长春新碱等长春碱类生物碱,这一直是几十年来的研究重点。在可见光范围内的受控 LED 环境提供了在不涉及与 UV 相关的非生物胁迫的情况下监测长春碱相关途径中代谢物浓度变化的可能性。在我们的靶向代谢组学方法的框架内,使用 UPLC-ESI-QTOF-MS 仪器设备从在控制室中生长的长春花植物的叶片提取物中筛选出 64 种长春碱类生物碱和代谢物,这些植物分别在中等光照、低光照和高蓝光/高红光/高远红光条件下生长。在可以通过纯品标准或高分辨率基于质谱的方法明确归属的 14 种代谢物中,所有三种二聚长春碱类生物碱,即 3',4'-脱水长春碱、长春碱和长春新碱,在与对照条件相比时,在高蓝光照射下至少富集了九倍:最终浓度分别达到 961 mg/kg 干重、33.8 mg/kg 干重和 11.7 mg/kg 干重。多变量统计分析支持,长春碱途径的关键代谢物在特别受到高蓝光应用刺激的代谢物中高度代表。

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