大麻素
化学型
生物
基因
大麻
内大麻素系统
生物合成
代谢物
转录因子
表型
代谢途径
生物化学
遗传学
植物
受体
精油
作者
Flavia Fulvio,Giuseppe Mandolino,Cinzia Citti,Nicola Pecchioni,Giuseppe Cannazza,Roberta Paris
出处
期刊:Phytochemistry
[Elsevier]
日期:2023-10-01
卷期号:214: 113793-113793
被引量:1
标识
DOI:10.1016/j.phytochem.2023.113793
摘要
Cannabis sativa (L.) is characterized by great genetic and phenotypic diversity, also expressed in the array of bioactive compounds synthesized. Despite its great potential economic interest, knowledge of the biology and genetics of this crop is incomplete, and still many efforts are needed for a complete understanding of the molecular mechanisms regulating its key traits. To better understand the synthesis of these compounds, we analysed the transcription levels of cannabinoid pathway genes during early phases of plant development, then comparing the transcriptional results with a chemical characterization of the same samples. The work was conducted on both industrial and medicinal C. sativa plants, using samples belonging to three different chemotypes. Genes coding for the cannabinoid synthases, involved in the last step of the cannabinoid biosynthetic pathway, were found to be already expressed in the seed, providing a measure of the importance of this metabolism for the plant. Cannabichromenic acid is known as the first cannabinoid accumulating in the seedlings, shortly after emergence, and it was found that there is a good correspondence between transcript accumulation of the cannabichromenic acid synthase gene and accumulation of the corresponding metabolite.
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