Affiliation:
1. College of Horticulture and Landscape Architecture, Yangzhou University, Yangzhou 225009, China
Abstract
Terpenoids are the broadest and richest group of chemicals obtained from plants. These plant-derived terpenoids have been extensively utilized in various industries, including food and pharmaceuticals. Several specific terpenoids have been identified and isolated from medicinal plants, emphasizing the diversity of biosynthesis and specific functionality of terpenoids. With advances in the technology of sequencing, the genomes of certain important medicinal plants have been assembled. This has improved our knowledge of the biosynthesis and regulatory molecular functions of terpenoids with medicinal functions. In this review, we introduce several notable medicinal plants that produce distinct terpenoids (e.g., Cannabis sativa, Artemisia annua, Salvia miltiorrhiza, Ginkgo biloba, and Taxus media). We summarize the specialized roles of these terpenoids in plant-environment interactions as well as their significance in the pharmaceutical and food industries. Additionally, we highlight recent findings in the fields of molecular regulation mechanisms involved in these distinct terpenoids biosynthesis, and propose future opportunities in terpenoid research, including biology seeding, and genetic engineering in medicinal plants.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Jiangsu Province
Subject
Molecular Biology,Biochemistry
Reference148 articles.
1. Ahad, B., Shahri, W., Rasool, H., Reshi, Z., Rasool, S., and Hussain, T. (2021). Medicinal and Aromatic Plants: Healthcare and Industrial Applications, Springer.
2. Increased phenolic acid and tanshinone production and transcriptional responses of biosynthetic genes in hairy root cultures of Salvia przewalskii Maxim. treated with methyl jasmonate and salicylic acid;Li;Mol. Biol. Rep.,2020
3. Glycyrrhizin: An alternative drug for the treatment of COVID-19 infection and the associated respiratory syndrome?;Bailly;Pharmacol. Ther.,2020
4. Environment. Isoprene and β-caryophyllene confer plant resistance via different plant internal signalling pathways;Frank;Plant Cell Environ.,2021
5. Trichome and Artemisinin Regulator 2 positively regulates trichome development and artemisinin biosynthesis in Artemisia annua;Zhou;New Phytol.,2020
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