Comparative Transcriptome Analysis Provides Insights into the Molecular Mechanism Underlying the Effect of MeJA Treatment on the Biosynthesis of Saikosaponins in Bupleurum chinense DC.

Author:

Mao Yanping123ORCID,Yang Yuping1,Li Yuchan1,Zhang Yiguan4,Wei Ping4,Chen Hua1,Hou Dabin1

Affiliation:

1. School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, China

2. College of Life Science and Biotechnology, Mianyang Teachers’ College, Mianyang 621000, China

3. Ecological Security and Protection Key Laboratory of Sichuan Province, Mianyang Teachers’ College, Mianyang 621000, China

4. Sichuan Institute for Translational Chinese Medicine, Chengdu 610041, China

Abstract

Bupleurum chinense DC. is a well-known traditional Chinese medicinal plant that produces saikosaponins (SSs), which possess hepatoprotective, antipyretic, and anti-inflammatory activities. Methyl jasmonate (MeJA) is a signalling phytohormone that can increase the accumulation of SSs in the root of Bupleurum plants. However, the molecular understanding of MeJA-mediated SS biosynthesis is not clear. Therefore, it is necessary to explore the molecular mechanism underlying the response of B. chinense DC. to MeJA in roots. In this study, we performed comparative transcriptome analysis of B. chinense DC. roots with different MeJA treatment times. In total, 104,057 unigenes were identified, of which 4053 were differentially expressed genes (DEGs). Most of the DEGs were downregulated after MeJA treatment, and GO enrichment analysis showed that they were mainly related to biological processes involved in stress responses and development. A total of 88 DEGs encoding enzymes known to be involved in the SS synthesis pathway were found, and most were significantly downregulated within 24 h. Based on the DEGs, 99 transcription factors (TFs) belonging to the AP2/ERF, WRKY, bZIP, ZFP, and bHLH families with different expression patterns were also identified. Further integrated analysis indicated that 20 DEGs involved in the SS synthesis pathway and 12 DEGs encoding TFs presented strong correlations with the SS contents, and these DEGs may be critical for the biosynthesis and regulation of SSs. These findings will be critical for further study of the response of B. chinense DC. to MeJA for SS biosynthesis.

Funder

Crop and Livestock Breeding Project

Major Horizontal Project

Publisher

MDPI AG

Subject

Paleontology,Space and Planetary Science,General Biochemistry, Genetics and Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference47 articles.

1. Chinese Pharmacopoeia Commission (2020). Pharmacopoeia of the People’s Republic of China, China Medical Sciences and Technology Press.

2. Radix Bupleuri: A review of traditional uses, botany, phytochemistry, pharmacology, and toxicology;Yang;BioMed Res. Int.,2017

3. Pharmacological effects and chemical constituents of Bupleurum;Sun;Mini Rev. Med. Chem.,2018

4. Potential targets for treatment of coronavirus disease 2019 (COVID-19): A review of Qing-Fei-Pai-Du-Tang and its major herbs;Zhong;Am. J. Chin. Med.,2020

5. Botany, traditional uses, phytochemistry, analytical methods, processing, pharmacology and pharmacokinetics of Bupleuri radix: A systematic review;Jiang;Biomed. Pharmacother.,2020

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