Jinkai Lu, Peixi Tong, Yuan Xu, Sian Liu, Biao Jin, Fuliang Cao, Li Wang
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引用次数: 0
Abstract
Flavonoids are abundant secondary metabolites in Ginkgo biloba and have a wide range of medicinal values. Salicylic acid (SA) can induce flavonoid accumulation in plants, but the detailed regulatory mechanism remains unclear. Here, we established the optimal media for ginkgo callus induction and subculture, and found that exogenous SA greatly increased the content of flavonol, including quercetin, kaempferol, isorhamnetin. Transcriptome changes in SA-treated calli showed that most structural genes involved in flavonoid biosynthesis were upregulated. Particularly, overexpression of GbF3'H in ginkgo calli significantly increased the content of flavonol, suggesting the vital role of GbF3'H in flavonoid biosynthesis. We further identified that a R2R3-MYB, GbMYB36, were significantly upregulated in SA treated calli. Transient overexpression and a LUC assay indicate that GbMYB36 act as an activator, and improve flavonoid biosynthesis through regulating the expression of GbF3'H. Our findings provide insight into the molecular basis of SA-induced flavonoid biosynthesis in ginkgo.
期刊介绍:
The European Psychologist - is a direct source of information regarding both applied and research psychology throughout Europe; - provides both reviews of specific fields and original papers of seminal importance; integrates across subfields and provides easy access to essential state-of-the-art information in all areas within psychology; - provides a European perspective on many dimensions of new work being done elsewhere in psychology; - makes European psychology visible globally; - promotes scientific and professional cooperation among European psychologists; develops the mutual contribution of psychological theory and practice.