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基于 LC-HRMS/MS 的代谢组学方法在抗真菌化合物检测中的应用及兰科植物代谢动态评估

LC-HRMS/MS-Based Metabolomics Approaches Applied to the Detection of Antifungal Compounds and a Metabolic Dynamic Assessment of Orchidaceae.

机构信息

Institute of Chemistry, Federal University of Goias, Goiania 74690-900, GO, Brazil.

出版信息

Molecules. 2022 Nov 16;27(22):7937. doi: 10.3390/molecules27227937.

Abstract

The liquid chromatography-mass spectrometry (LC-MS)-based metabolomics approach is a powerful technology for discovering novel biologically active molecules. In this study, we investigated the metabolic profiling of Orchidaceae species using LC-HRMS/MS data combined with chemometric methods and dereplication tools to discover antifungal compounds. We analyze twenty ethanolic plant extracts from and (Orchidaceae) genera. Molecular networking and chemometric methods were used to discriminate ions that differentiate healthy and fungal-infected plant samples. Fifty-three metabolites were rapidly annotated through spectral library matching and in silico fragmentation tools. The metabolomic profiling showed a large production of polyphenols, including flavonoids, phenolic acids, chromones, stilbenoids, and tannins, which varied in relative abundance across species. Considering the presence and abundance of metabolites in both groups of samples, we can infer that these constituents are associated with biochemical responses to microbial attacks. In addition, we evaluated the metabolic dynamic through the synthesis of stilbenoids in fungal-infected plants. The tricin derivative flavonoid- and the loliolide terpenoidfound only in healthy plant samples, are promising antifungal metabolites. LC-HRMS/MS, combined with state-of-the-art tools, proved to be a rapid and reliable technique for fingerprinting medicinal plants and discovering new hits and leads.

摘要

基于液相色谱-质谱联用(LC-MS)的代谢组学方法是发现新型生物活性分子的强大技术。在这项研究中,我们使用 LC-HRMS/MS 数据结合化学计量学方法和去重复工具,研究了兰科植物物种的代谢特征,以发现抗真菌化合物。我们分析了来自 和 (兰科)属的二十种醇提植物提取物。分子网络和化学计量学方法用于区分区分健康和真菌感染植物样本的离子。通过光谱库匹配和虚拟碎片工具,快速注释了 53 种代谢产物。代谢组学分析显示大量产生多酚,包括类黄酮、酚酸、色酮、芪和单宁,其相对丰度在物种间存在差异。考虑到两组样本中代谢物的存在和丰度,我们可以推断这些成分与植物对微生物攻击的生化反应有关。此外,我们通过真菌感染植物中芪类化合物的合成来评估代谢动态。仅在健康植物样本中发现的tricinder 衍生物类黄酮和 loliolide 萜烯是有前途的抗真菌代谢产物。LC-HRMS/MS 结合最先进的工具,被证明是一种快速可靠的技术,可用于鉴定药用植物和发现新的作用靶点和先导化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec3f/9692279/8fedee926c04/molecules-27-07937-g001.jpg

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