首页> 美国卫生研究院文献>Molecules >The Application of Ultra-High-Performance Liquid Chromatography Coupled with a LTQ-Orbitrap Mass Technique to Reveal the Dynamic Accumulation of Secondary Metabolites in Licorice under ABA Stress
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The Application of Ultra-High-Performance Liquid Chromatography Coupled with a LTQ-Orbitrap Mass Technique to Reveal the Dynamic Accumulation of Secondary Metabolites in Licorice under ABA Stress

机译:超高效液相色谱法结合LTQ-Orbitrap质谱技术揭示ABA胁迫下甘草次生代谢产物的动态积累

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摘要

The traditional medicine licorice is the most widely consumed herbal product in the world. Although much research work on studying the changes in the active compounds of licorice has been reported, there are still many areas, such as the dynamic accumulation of secondary metabolites in licorice, that need to be further studied. In this study, the secondary metabolites from licorice under two different methods of stress were investigated by ultra-high-performance liquid chromatography coupled with hybrid linear ion trap–Orbitrap mass spectrometry (UHPLC-LTQ-Orbitrap-MS). A complex continuous coordination of flavonoids and triterpenoids in a network was modulated by different methods of stress during growth. The results showed that a total of 51 secondary metabolites were identified in licorice under ABA stress. The partial least squares–discriminate analysis (PLS-DA) revealed the distinction of obvious compounds among stress-specific districts relative to ABA stress. The targeted results showed that there were significant differences in the accumulation patterns of the deeply targeted 41 flavonoids and 10 triterpenoids compounds by PCA and PLS-DA analyses. To survey the effects of flavonoid and triterpenoid metabolism under ABA stress, we inspected the stress-specific metabolic changes. Our study testified that the majority of flavonoids and triterpenoids were elevated in licorice under ABA stress, while the signature metabolite affecting the dynamic accumulation of secondary metabolites was detected. Taken together, our results suggest that ABA-specific metabolite profiling dynamically changed in terms of the biosynthesis of flavonoids and triterpenoids, which may offer new trains of thought on the regular pattern of dynamic accumulation of secondary metabolites in licorice at the metabolite level. Our results also provide a reference for clinical applications and directional planting and licorice breeding.
机译:传统药草甘草是世界上消费最广泛的草药产品。尽管已经报道了许多研究甘草活性成分变化的研究工作,但仍有许多领域,例如甘草中次生代谢产物的动态积累,还有待进一步研究。在这项研究中,通过超高效液相色谱与线性离子阱-Orbitrap混合质谱(UHPLC-LTQ-Orbitrap-MS)结合,研究了两种不同胁迫方法下甘草的次生代谢产物。网络中黄酮类和三萜类化合物的复杂连续配位是通过生长过程中不同的胁迫方法来调节的。结果表明,在ABA胁迫下,甘草中共鉴定出51种次生代谢产物。偏最小二乘-偏析分析(PLS-DA)揭示了相对于ABA应力,在应力特定区域之间明显化合物的区别。靶向结果表明,通过PCA和PLS-DA分析,深靶向41种类黄酮和10种三萜类化合物的积累模式存在显着差异。为了调查ABA胁迫下类黄酮和三萜类化合物代谢的影响,我们检查了特定于应激的代谢变化。我们的研究证明,在ABA胁迫下,甘草中的大多数类黄酮和三萜类化合物均升高,同时检测到影响次生代谢物动态积累的特征性代谢物。综上所述,我们的结果表明,ABA特定代谢物谱在类黄酮和三萜类化合物的生物合成方面发生了动态变化,这可能为甘草次生代谢物在代谢物水平上动态积累的规律模式提供了新的思路。我们的结果也为临床应用以及定向种植和甘草育种提供参考。

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