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推进葡萄糖共轭赤霉素的发现:一种用于解析植物中赤霉素代谢物的基于结构的筛选和鉴定方法。

Advancing Glucose Conjugated Gibberellins Discovery: A Structure-Oriented Screening and Identification Method for Unraveling Gibberellin Metabolites in Plants.

作者信息

Zeng Chen, Cai Wen-Jing, Jiang Liu-Cheng, Ye Tiantian, Feng Yu-Qi

机构信息

School of Bioengineering and Health, Wuhan Textile University, Wuhan 430200, China.

Department of Chemistry, Wuhan University, Wuhan 430072, China.

出版信息

Metabolites. 2024 Jan 29;14(2):96. doi: 10.3390/metabo14020096.

Abstract

Gibberellins (GAs) play a pivotal role in modulating plant growth and development. Glucose-conjugated gibberellins (Glc-GAs), a prevalent conjugated form of GAs, regulate intracellular GA levels by the coupling and decoupling of glucose groups. However, the diversity of Glc-GAs identified within individual species remains limited, hinting at a multitude of yet undiscovered gibberellin metabolites. This lacuna poses considerable impediments to research efforts dedicated to comprehensively delineating the GA metabolic pathway. In this study, we developed a structure-oriented screening and identification method for Glc-GAs in plant species by employing LC-MS/MS coupled with chemical derivatization. Through the application of chemical derivatization technique, carboxyl groups on Glc-GAs were labeled which effectively enhanced the sensitivity and selectivity of mass spectrometry detection for these compounds. Concurrently, the integration of mass spectrometry fragmentation and chromatographic retention behavior facilitated the efficient screening and identification of potential Glc-GAs. With this strategy, we screened and identified 12 potential Glc-GAs from six plant species. These findings expand the Glc-GA diversity in plants and contribute to understanding GA metabolic pathways.

摘要

赤霉素(GAs)在调节植物生长发育中起关键作用。葡萄糖共轭赤霉素(Glc-GAs)是GAs的一种普遍共轭形式,通过葡萄糖基团的偶联和解偶联来调节细胞内GA水平。然而,在单个物种中鉴定出的Glc-GAs的多样性仍然有限,这暗示着还有许多未被发现的赤霉素代谢产物。这一空白给致力于全面描绘GA代谢途径的研究工作带来了相当大的阻碍。在本研究中,我们通过采用液相色谱-串联质谱(LC-MS/MS)结合化学衍生化技术,开发了一种针对植物物种中Glc-GAs的基于结构的筛选和鉴定方法。通过应用化学衍生化技术,对Glc-GAs上的羧基进行标记,有效提高了这些化合物质谱检测的灵敏度和选择性。同时,质谱裂解和色谱保留行为的整合有助于高效筛选和鉴定潜在的Glc-GAs。通过这种策略,我们从六种植物物种中筛选并鉴定出12种潜在的Glc-GAs。这些发现扩展了植物中Glc-GA的多样性,并有助于理解GA代谢途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c58/10890662/f92dc6798785/metabolites-14-00096-g001.jpg

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