Liu Qingling, Huang Yuan, Linghu Chu, Xiao Jianfen, Gu Ronghui
Key Laboratory of Plant Resource Conservation and Germplasm Innovation in Mountainous Region (Ministry of Education), Guizhou University, Guiyang, China.
College of Life Sciences, Guizhou University, Guiyang, China.
Front Plant Sci. 2023 Jan 12;13:1125872. doi: 10.3389/fpls.2022.1125872. eCollection 2022.
The stem of Lindl. (Orchidaceae), called "" in traditional Chinese medicine, is a well-known medicinal and edible plant material in China. It is used as an antipyretic, analgesic, and tonic to nourish the stomach and (i.e., to improve the production of body fluids). These therapeutic properties are attributed to its alkaloids, sesquiterpenoids, bibenzyls, fluorenones, and phenanthrenes. However, a comprehensive understanding of these metabolites and their spatial distribution in stems is lacking. In this study, ultra-performance liquid chromatography/quadrupole time-of-flight mass spectrometry (UPLC-QTOF-MS) was performed to obtain detailed metabolites information about stems. Then, the spatial distributions of diverse metabolites, including alkaloids and sesquiterpenoids, were characterized and visualized by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry imaging (MALDI-TOF-MSI). Based on the spatial and metabolic profiling data, sesquiterpene alkaloid dendrobine was chosen for the exhaustive study of a biosynthetic pathway in . This is the first report on mass spectrometry imaging for species. As a result, critical bioactive metabolites such as 11 alkaloids, 10 sesquiterpenes, and 13 other metabolites were putatively identified and relatively quantified. The identified alkaloids were distributed in the parenchyma or vascular bundle, and sesquiterpenes were present in all regions of the stem with higher abundance in the vascular bundle and cuticle, or in the cuticle and epidermis. The biosynthetic pathway and accumulation pattern of dendrobine in stem were also proposed. Our findings not only provided a critical methodology for the thorough understanding of physiological changes in metabolites and precise utilization of stem, but also displayed an effective strategy for insight into the biosynthesis of bioactive metabolites in plants.
兰科植物[具体植物名称未给出,用Lindl.代替]的茎,在传统中药中被称为“[具体名称未给出]”,是中国一种著名的药食两用植物材料。它被用作退烧药、镇痛药以及滋补胃和生津(即促进体液生成)的滋补剂。这些治疗特性归因于其生物碱、倍半萜类、联苄类、芴酮类和菲类化合物。然而,目前缺乏对这些代谢物及其在茎中的空间分布的全面了解。在本研究中,采用超高效液相色谱/四极杆飞行时间质谱(UPLC-QTOF-MS)来获取关于[具体植物名称未给出,用Lindl.代替]茎的详细代谢物信息。然后,通过基质辅助激光解吸/电离飞行时间质谱成像(MALDI-TOF-MSI)对包括生物碱和倍半萜类在内的多种代谢物的空间分布进行表征和可视化。基于空间和代谢谱数据,选择倍半萜生物碱石斛碱对[具体植物名称未给出,用Lindl.代替]中的生物合成途径进行详尽研究。这是关于[具体植物名称未给出,用Lindl.代替]物种质谱成像的首次报道。结果,初步鉴定并相对定量了11种生物碱、10种倍半萜和13种其他关键生物活性代谢物。所鉴定的生物碱分布在薄壁组织或维管束中,倍半萜存在于茎的所有区域,在维管束和角质层或角质层和表皮中含量较高。还提出了石斛碱在[具体植物名称未给出,用Lindl.代替]茎中的生物合成途径和积累模式。我们的研究结果不仅为深入了解代谢物的生理变化和[具体植物名称未给出,用Lindl.代替]茎的精确利用提供了关键方法,还展示了一种深入了解植物中生物活性代谢物生物合成的有效策略。