State Key Laboratory Breeding Base of Dao-Di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing 100700, China; Center for Post-doctoral Research, China Academy of Chinese Medical Sciences, Beijing 100700, China; State Local Joint Engineering Research Center of Ginseng Breeding and Application, Jilin Agricultural University, Changchun 130118, China.
State Local Joint Engineering Research Center of Ginseng Breeding and Application, Jilin Agricultural University, Changchun 130118, China.
Chin J Nat Med. 2022 Aug;20(8):614-626. doi: 10.1016/S1875-5364(22)60198-5.
Panax quinquefolium is one of the most common medicinal plants worldwide. Ginsenosides are the major pharmaceutical components in P. quinquefolium. The biosynthesis of ginsenosides in different tissues of P. quinquefolium remained largely unknown. In the current study, an integrative method of transcriptome and metabolome analysis was used to elucidate the ginsenosides biosynthesis pathways in different tissues of P. quinquefolium. Herein, 22 ginsenosides in roots, leaves, and flower buds showed uneven distribution patterns. A comprehensive P. quinquefolium transcriptome was generated through single molecular real-time (SMRT) and second-generation sequencing (NGS) technologies, which revealed the ginsenoside pathway genes and UDP-glycosyltransferases (UGT) family genes explicitly expressed in roots, leaves, and flower buds. The weighted gene co-expression network analysis (WGCNA) of ginsenoside biosynthesis genes, UGT genes and ginsenoside contents indicated that three UGT genes were positively correlated to pseudoginsenoside F11, notoginsenoside R1, notoginsenoside R2 and pseudoginsenoside RT5. These results provide insights into ginsenoside biosynthesis in different tissues ofP. quinquefolium.
西洋参是世界上最常见的药用植物之一。人参皂苷是西洋参中的主要药物成分。不同组织中人参皂苷的生物合成在很大程度上仍然未知。在本研究中,采用转录组和代谢组分析的综合方法,阐明了西洋参不同组织中人参皂苷的生物合成途径。在此,根、叶和花蕾中的 22 种人参皂苷呈现不均匀的分布模式。通过单分子实时(SMRT)和第二代测序(NGS)技术生成了一个全面的西洋参转录组,明确显示了在根、叶和花蕾中表达的人参皂苷途径基因和 UDP-糖基转移酶(UGT)家族基因。人参皂苷生物合成基因、UGT 基因和人参皂苷含量的加权基因共表达网络分析(WGCNA)表明,三个 UGT 基因与假人参皂苷 F11、三七皂苷 R1、三七皂苷 R2 和假人参皂苷 RT5 呈正相关。这些结果为西洋参不同组织中人参皂苷的生物合成提供了新的见解。