4.7 Article

Transcriptome and metabolome analysis to reveal major genes of saikosaponin biosynthesis in Bupleurum chinense

期刊

BMC GENOMICS
卷 22, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12864-021-08144-6

关键词

Bupleurum chinense DC; Transcriptome; Metabolome; Saikosaponin biosynthetic pathway

资金

  1. National Natural Science Foundation of China [81603223]
  2. China Agriculture Research System of MOF
  3. China Agriculture Research System of MARA
  4. Young Elite Scientists Sponsorship Program by CACM [2019-QNRC2-C15]
  5. CAMS Innovation Fund for Medical Sciences (CIFMS) [2016I2M-2-003]
  6. Programs of Science and Technology Department of Sichuan Province [2019YFH0072]
  7. Doctoral Research Funding of Southwest University of Science and Technology [19zx7117, 21zx7116]

向作者/读者索取更多资源

Our study investigated the saikosaponin biosynthetic pathway in different organs of B. chinense through integrated transcriptomic and metabolomic analysis. We found 152 strong correlations between saikosaponin contents and transcriptional changes, involving 8 gene families, with P450 enzymes potentially playing a key role in saikosaponin biosynthesis.
Background Bupleurum chinense DC. is a widely used traditional Chinese medicinal plant. Saikosaponins are the major bioactive constituents of B. chinense, but relatively little is known about saikosaponin biosynthesis. In the present study, we performed an integrated analysis of metabolic composition and the expressed genes involved in saikosaponin biosynthetic pathways among four organs (the root, flower, stem, and leaf) of B. chinense to discover the genes related to the saikosaponin biosynthetic pathway. Results Transcript and metabolite profiles were generated through high-throughput RNA-sequencing (RNA-seq) data analysis and liquid chromatography tandem mass spectrometry, respectively. Evaluation of saikosaponin contents and transcriptional changes showed 152 strong correlations (P < 0.05) over 3 compounds and 77 unigenes. These unigenes belonged to eight gene families: the acetoacetyl CoA transferase (AACT) (6), HMG-CoA synthase (HMGS) (2), HMG-CoA reductase (HMGR) (2), mevalonate diphosphate decarboxylase (MVD) (1), 1-deoxy-D-xylulose-5-phosphate synthase (DXS) (3), farnesyl diphosphate synthase (FPPS) (11), beta-amyrin synthase (beta-AS) (13) and cytochrome P450 enzymes (P450s) (39) families. Conclusions Our results investigated the diversity of the saikosaponin triterpene biosynthetic pathway in the roots, stems, leaves and flowers of B. chinese by integrated transcriptomic and metabolomic analysis, implying that manipulation of P450s genes such as Bc95697 and Bc35434 might improve saikosaponin biosynthesis. This is a good candidate for the genetic improvement of this important medicinal plant.

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