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提出了一个通过检测濒危药用植物胡黄连中的生化中间产物来连接苦马豆素的生物合成途径。

A proposed biosynthetic pathway of picrosides linked through the detection of biochemical intermediates in the endangered medicinal herb Picrorhiza kurroa.

机构信息

Department of Pharmacy, Jaypee University of Information Technology, Waknaghat, Solan, 173234, Himachal Pradesh, India.

出版信息

Phytochem Anal. 2013 Nov-Dec;24(6):598-602. doi: 10.1002/pca.2437. Epub 2013 May 21.

Abstract

INTRODUCTION

Picrorhiza kurroa Royle ex Benth is an important medicinal herb used in the preparation of several herbal drug formulations due to the presence of picroside-I (P-I) and picroside-II (P-II) along with other iridoid-glucosides derivatives.

OBJECTIVE

The endangered status of P. kurroa coupled with lack of information on biosynthesis of P-I and P-II necessitate deciphering the biosynthetic pathway for picrosides.

METHODS

LC with electrospray ionisation (ESI) and quadrupole time of flight combined with MS/MS was used to detect intermediates and assemble the picrosides biosynthetic pathway in P. kurroa.

RESULTS

The presence of catalpol and aucubin, the major backbone structures of picrosides, along with intermediate metabolites boschnaloside, bartsioside and mussaenosidic acid, was confirmed in ESI negative mode with pseudomolecular ion peaks, that is, m/z 361, m/z 343, m/z 345, m/z 329 and m/z 375 ions and their fragmentation patterns.

CONCLUSION

The picrosides biosynthetic pathway is expected to provide a reliable platform towards understanding the molecular components (genes/enzymes) of P-I and P-II biosynthesis in P. kurroa for their eventual utilisation in various applications.

摘要

简介

罗勒黄连(Picrorhiza kurroa Royle ex Benth)是一种重要的药用植物,由于其含有 picroside-I(P-I)和 picroside-II(P-II)以及其他环烯醚萜糖苷衍生物,因此被用于多种草药制剂的制备。

目的

由于罗勒黄连濒危,且对 P-I 和 P-II 生物合成的信息知之甚少,因此需要阐明 picroside 的生物合成途径。

方法

采用电喷雾离子化(ESI)和四极杆飞行时间结合 MS/MS 的 LC 法,检测中间体并组装罗勒黄连中 picroside 的生物合成途径。

结果

在 ESI 负离子模式下,通过拟分子离子峰 m/z 361、m/z 343、m/z 345、m/z 329 和 m/z 375 离子及其碎片模式,证实了梓醇和桃叶珊瑚苷这两种 picroside 的主要骨架结构,以及中间代谢产物 boschnaloside、bartsioside 和 mussaenosidic acid 的存在。

结论

picroside 的生物合成途径有望为理解罗勒黄连中 P-I 和 P-II 生物合成的分子成分(基因/酶)提供一个可靠的平台,以便最终将其用于各种应用。

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