Pharmacy College, Guizhou University of Traditional Chinese Medicine, Guiyang 550025, China.
Key Laboratory of State Forestry Administration on Biodiversity Conservation in Karst Mountain Area of Southwest of China, School of Life Science, Guizhou Normal University, Guiyang 550025, China.
Genes (Basel). 2024 Feb 24;15(3):285. doi: 10.3390/genes15030285.
(L.) DC., an important economic and medicinal herb, has a long history of being used as a traditional Chinese medicine. Its leaves have always been used as a raw material for the extraction of essential oils, comprising large amounts of terpenoids, which have good therapeutic effects on many diseases, such as eczema, bacterial infection, and hypertension. However, the genetic basis of terpenoid biosynthesis in this plant is virtually unknown on account of the lack of genomic data. Here, a combination of next-generation sequencing (NGS) and full-length transcriptome sequencing was applied to identify genes involved in terpenoid biosynthesis at five developmental stages. Then, the main components of essential oils in were identified using GC-MS. Overall, 16 monoterpenoids and 20 sesquiterpenoids were identified and 333,860 CCS reads were generated, yielding 65,045 non-redundant transcripts. Among these highly accurate transcripts, 59,958 (92.18%) transcripts were successfully annotated using NR, eggNOG, Swissprot, KEGG, KOG, COG, Pfam, and GO databases. Finally, a total of 56 differently expressed genes (DEGs) involved in terpenoid biosynthesis were identified, including 38 terpenoid backbone genes and 18 TPSs, which provide a significant amount of genetic information for . These results build a basis for resource protection, molecular breeding, and the metabolic engineering of this plant.
(L.)当归,一种重要的经济和药用草本植物,作为中药的历史由来已久。其叶子一直是提取精油的原料,含有大量萜类化合物,对湿疹、细菌感染和高血压等许多疾病都有很好的治疗效果。然而,由于缺乏基因组数据,这种植物萜类化合物生物合成的遗传基础几乎未知。在这里,我们结合下一代测序(NGS)和全长转录组测序技术,在五个发育阶段鉴定参与萜类生物合成的基因。然后,使用 GC-MS 对 的精油主要成分进行鉴定。总的来说,鉴定出 16 种单萜和 20 种倍半萜,共生成 333860 个 CCS 读数,得到 65045 条非冗余转录本。在这些高度准确的转录本中,有 59958 个(92.18%)转录本成功地在 NR、eggNOG、Swissprot、KEGG、KOG、COG、Pfam 和 GO 数据库中进行了注释。最后,共鉴定出 56 个参与萜类生物合成的差异表达基因(DEGs),包括 38 个萜类骨架基因和 18 个 TPSs,为 提供了大量的遗传信息。这些结果为该植物的资源保护、分子育种和代谢工程奠定了基础。