Unveiling the spatial distribution and molecular mechanisms of terpenoid biosynthesis in Salvia miltiorrhiza and S. grandifolia using multi-omics and DESI–MSI

丹参 生物 阿比坦 萜类 木质部 生物合成 二萜 苯丙素 植物 生物化学 基因 中医药 医学 替代医学 病理
作者
Jie Xia,Ganggui Lou,Lan Zhang,Yanbo Huang,Jian Yang,Juan Guo,Zhe‐Chen Qi,Zhenhao Li,Guoliang Zhang,Shengchun Xu,Xijiao Song,Xiaodan Zhang,Yukun Wei,Zongsuo Liang,Dongfeng Yang
出处
期刊:Horticulture research [Nature Portfolio]
卷期号:10 (7) 被引量:18
标识
DOI:10.1093/hr/uhad109
摘要

Abstract Salvia miltiorrhiza and S. grandifolia are rich in diterpenoids and have therapeutic effects on cardiovascular diseases. In this study, the spatial distribution of diterpenoids in both species was analyzed by a combination of metabolomics and mass spectrometry imaging techniques. The results indicated that diterpenoids in S. miltiorrhiza were mainly abietane-type norditerpenoid quinones with a furan or dihydrofuran D-ring and were mainly distributed in the periderm of the roots, e.g. cryptotanshinone and tanshinone IIA. The compounds in S. grandifolia were mainly phenolic abietane-type tricyclic diterpenoids with six- or seven-membered C-rings, and were widely distributed in the periderm, phloem, and xylem of the roots, e.g. 11-hydroxy-sugiol, 11,20-dihydroxy-sugiol, and 11,20-dihydroxy-ferruginol. In addition, the leaves of S. grandifolia were rich in tanshinone biosynthesis precursors, such as 11-hydroxy-sugiol, while those of S. miltiorrhiza were rich in phenolic acids. Genes in the upstream pathway of tanshinone biosynthesis were highly expressed in the root of S. grandifolia, and genes in the downstream pathway were highly expressed in the root of S. miltiorrhiza. Here, we describe the specific tissue distributions and mechanisms of diterpenoids in two Salvia species, which will facilitate further investigations of the biosynthesis of diterpenoids in plant synthetic biology.
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