4.6 Article

Full-Length Transcriptomic Sequencing and Temporal Transcriptome Expression Profiling Analyses Offer Insights into Terpenoid Biosynthesis in Artemisia argyi

Journal

MOLECULES
Volume 27, Issue 18, Pages -

Publisher

MDPI
DOI: 10.3390/molecules27185948

Keywords

Artemisia argyi; SMRT sequencing; temporal transcriptome; gene expression patterns; terpenoid biosynthesis

Funding

  1. National Natural Science Foundation of China [81903782, 31972215, 81872948]
  2. key technology research and demonstration project of safe and efficient production of genuine medicinal materials [2020-620-000-002-04]
  3. Foundation ofWuhan Health and Family Planning Research [wx16c11]

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This study reveals time-specific transcriptomic patterns associated with terpenoid biosynthesis in Artemisiae argyi Folium. It identifies key transcripts linked to the generation of diverse terpene skeletons. These findings aid in understanding the molecular mechanisms underlying the quality of A. argyi leaves and selecting optimal harvest timing.
Artemisiae argyi Folium is a traditional herbal medicine used for moxibustion heat therapy in China. The volatile oils in A. argyi leaves are closely related to its medicinal value. Records suggest that the levels of these terpenoids components within the leaves vary as a function of harvest time, with June being the optimal time for A. argyi harvesting, owing to the high levels of active ingredients during this month. However, the molecular mechanisms governing terpenoid biosynthesis and the time-dependent changes in this activity remain unclear. In this study, GC-MS analysis revealed that volatile oil levels varied across four different harvest months (April, May, June, and July) in A. argyi leaves, and the primarily terpenoids components (including both monoterpenes and sesquiterpenes) reached peak levels in early June. Through single-molecule real-time (SMRT) sequencing, corrected by Illumina RNA-sequencing (RNA-Seq), 44 full-length transcripts potentially involved in terpenoid biosynthesis were identified in this study. Differentially expressed genes (DEGs) exhibiting time-dependent expression patterns were divided into 12 coexpression clusters. Integrated chemical and transcriptomic analyses revealed distinct time-specific transcriptomic patterns associated with terpenoid biosynthesis. Subsequent hierarchical clustering and correlation analyses ultimately identified six transcripts that were closely linked to the production of these two types of terpenoid within A. argyi leaves, revealing that the structural diversity of terpenoid is related to the generation of the diverse terpene skeletons by prenyltransferase (TPS) family of enzymes. These findings can guide further studies of the molecular mechanisms underlying the quality of A. argyi leaves, aiding in the selection of optimal timing for harvests of A. argyi.

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