Zhao Xing, Li Yiguo, Shen Jun, Guo Caixia, Li Jie, Chen Mingzhu, Xu Huini, Li Kunzhi
Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming 650500, China.
Int J Mol Sci. 2025 Jan 3;26(1):348. doi: 10.3390/ijms26010348.
() is an important medicinal plant in the Aconitum genus that is known for its diterpenoid alkaloids, which exhibit significant pharmacological activity and toxicity, thus making it valuable for both medicinal use and as a biopesticide. Although the biosynthesis of terpenoids is well characterized, the potential gene regulatory role of microRNAs (miRNAs) in terpenoid biosynthesis in remains unclear, and further research is needed to explore this aspect in this species. In this study, miRNA sequencing was conducted to analyze the miRNA population and its targets in . A total of 22,435 small RNAs were identified across the nine samples. Through miRNA target gene association analysis, 356 target genes from 54 known miRNAs and 977 target genes from 151 novel miRNAs were identified. Target identification revealed that miR6300 targets the hydroxymethylglutaryl-CoA reductase () gene, which is involved in the formation of the terpenoid backbone and regulates the synthesis of diterpenoid alkaloids. Additionally, preliminary findings suggest that miR4995 and miR5021 may be involved in the regulation of terpenoid biosynthesis, although further biochemical analysis is needed to confirm these potential roles. This study provides a foundational understanding of the molecular mechanisms by which miRNAs regulate terpenoid biosynthesis in and offers scientific evidence for further research on the biosynthesis of diterpenoid alkaloids in this medicinal plant.
(某植物名)是乌头属中一种重要的药用植物,以其二萜生物碱而闻名,这些二萜生物碱具有显著的药理活性和毒性,因此在药用和作为生物农药方面都具有价值。尽管萜类化合物的生物合成已得到充分表征,但微小RNA(miRNA)在(该植物名)萜类生物合成中的潜在基因调控作用仍不清楚,需要进一步研究来探索该物种的这一方面。在本研究中,进行了miRNA测序以分析(该植物名)中的miRNA群体及其靶标。在九个样本中总共鉴定出22435个小RNA。通过miRNA靶基因关联分析,从54个已知miRNA中鉴定出356个靶基因,从151个新miRNA中鉴定出977个靶基因。靶标鉴定表明,miR6300靶向羟甲基戊二酰辅酶A还原酶(HMGR)基因,该基因参与萜类骨架的形成并调节二萜生物碱的合成。此外,初步研究结果表明,miR4995和miR5021可能参与萜类生物合成的调控,尽管需要进一步的生化分析来证实这些潜在作用。本研究为miRNA调控(该植物名)萜类生物合成的分子机制提供了基础认识,并为该药用植物中二萜生物碱生物合成的进一步研究提供了科学依据。