Blue light as an eco-elicitor effectively enhances flavonoid biosynthesis and antioxidant capacity in dandelion revealed by integrated metabolomic and transcriptomic analyses
作者:Qiaojuan Xing, Yao Wang, Xuankai Zhou, Xuerui Cai, Shihong Zhang · 发表于:BMC Plant Biology · 年份:2026 · DOI:10.1186/s12870-026-08137-1 · 被引用次数:1 · 研究领域:Plant Gene Expression Analysis、Light effects on plants、Plant Molecular Biology Research
BACKGROUND: Dandelion (Taraxacum mongolicum) is a globally important medicinal herb rich in antioxidant flavonoids. Blue light (BL) serves as a key environmental signal known to regulate the biosynthesis of plant secondary metabolites. However, the molecular mechanisms in regulating flavonoid biosynthesis in non-model medicinal plants like dandelion remain poorly understood, particularly the roles of WRKY transcription factors (TFs) in this process. RESULTS: BL irradiation not only inhibited vegetative expansion but also enhanced photosynthetic pigment accumulation in dandelion. This treatment further boosted the plant’s antioxidant capacity and elevated its total flavonoid content. Notably, the levels of key antioxidant flavonoids such as rutin, apigenin, and quercetin derivatives were significantly increased. Transcriptomic profiling indicated a coordinated upregulation of structural genes (including CHS, CHI, ANR, DFR, UGT) in the flavonoid biosynthesis pathway. Genome-wide analysis identified 69 WRKY TFs (TmWRKYs) in dandelion. Among them, TmWRKY2, TmWRKY 21, TmWRKY 47, and TmWRKY 55 were significantly induced by BL. Correlation analyses indicated that TmWRKY2 and TmWRKY55 expression was strongly positively correlated with both the expression of key flavonoid biosynthetic genes and the accumulation of antioxidant flavonoids. Furthermore, promoter analysis of these correlated structural genes revealed abundant W-box cis-elements, suggesting potential direct regulation by t...