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综合代谢组学和转录组学分析揭示了皂苷在……中的分布。

Integrated metabolomic and transcriptomic analyses revealed the distribution of saponins in .

作者信息

Wei Guangfei, Dong Linlin, Yang Juan, Zhang Lianjuan, Xu Jiang, Yang Feng, Cheng Ruiyang, Xu Ran, Chen Shilin

机构信息

Key Laboratory of Beijing for Identification and Safety Evaluation of Chinese Medicine, Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing 100700, China.

Shandong University of Traditional Chinese Medicine, Jinan 250355, China.

出版信息

Acta Pharm Sin B. 2018 May;8(3):458-465. doi: 10.1016/j.apsb.2017.12.010. Epub 2018 Feb 3.

Abstract

is famous for its important therapeutic effects. Saponins are bioactive compounds found in different parts and developmental stages of plants. Thus, it is urgently to study saponins distribution in different parts and growth ages of plants. In this study, potential biomarkers were found, and their chemical characteristic differences were revealed through metabolomic analysis. High-performance liquid chromatography data indicated the higher content of saponins (, Rg1, Re, Rd, and Rb1) in the underground parts than that in the aerial parts. 20()-Protopanaxadiol saponins were mainly distributed in the aerial parts. Additionally, the total saponin content in the 3-year-old plant (188.0 mg/g) was 1.4-fold higher than that in 2-year-old plant (130.5 mg/g). The transcriptomic analysis indicated the tissue-specific transcription expression of genes, namely, , , , , and , which encoded critical synthases in saponin biosyntheses. These genes showed similar expression patterns among the parts of plants. The expression levels of these genes in the flowers and leaves were 5.2fold higher than that in the roots and fibrils. These results suggested that saponins might be actively synthesized in the aerial parts and transformed to the underground parts. This study provides insights into the chemical and genetic characteristics of to facilitate the synthesis of its secondary metabolites and a scientific basis for appropriate collection and rational use of this plant.

摘要

以其重要的治疗作用而闻名。皂苷是在植物的不同部位和发育阶段发现的生物活性化合物。因此,迫切需要研究皂苷在植物不同部位和生长年龄中的分布。在本研究中,发现了潜在的生物标志物,并通过代谢组学分析揭示了它们的化学特征差异。高效液相色谱数据表明,地下部分的皂苷(人参皂苷Rg1、Re、Rd和Rb1)含量高于地上部分。20(S)-原人参二醇型皂苷主要分布在地上部分。此外,3年生植物的总皂苷含量(188.0毫克/克)比2年生植物(130.5毫克/克)高1.4倍。转录组分析表明,编码皂苷生物合成中关键合成酶的基因(即、、、和)存在组织特异性转录表达。这些基因在植物各部位表现出相似的表达模式。这些基因在花和叶中的表达水平比根和须根高5.2倍。这些结果表明,皂苷可能在地上部分被积极合成并转运到地下部分。本研究为了解人参的化学和遗传特征提供了见解,有助于其次生代谢产物的合成,并为该植物的合理采集和利用提供科学依据。

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