茉莉酸
成熟
生物化学
多胺
茉莉酸甲酯
花青素
精氨酸脱羧酶
基因沉默
生物
脱落酸
化学
茉莉酸
亚精胺
心理压抑
基因表达
转录因子
生物合成
代谢途径
基因
转录调控
转录组
细胞生物学
基因表达调控
抑制因子
乙烯
酵母
发起人
电泳迁移率测定
酶
下调和上调
作者
Wei Wang,Guo Luyue,Gexia Qiao,Kunyu Guo,Luyao Ba,Jun Cheng,Langlang Zhang,Ye Xia,X Wang,Haipeng Zhang,Xiaodong Lian,Jiancan Feng,Bin Tan
标识
DOI:10.1093/plphys/kiag431
摘要
Jasmonic acid (JA) and polyamines (PAs) are key regulators of fruit ripening, yet their functional association remains largely unresolved. Here, we demonstrate that exogenous methyl jasmonate (MeJA) application markedly reduces PA accumulation and accelerates peach (Prunus persica L.) fruit ripening. Transcriptomic analysis revealed significant upregulation of peach polyamine oxidase1 (PpePAO1), a key gene in PA catabolism, following MeJA treatment. Using the PpePAO1 promoter as bait, we identified the JA signaling transcription factor myeloblastosis family 2 (PpeMYC2). MeJA treatment suppressed PpeMYC2 expression, and subsequent yeast one-hybrid (Y1H), electrophoretic mobility shift assay (EMSA), and dual-luciferase assay confirmed that PpeMYC2 directly binds to the PpePAO1 promoter to repress its transcriptional activity. Silencing PpeMYC2 led to decreased PA levels and accelerated fruit ripening, whereas PpeMYC2 overexpression produced the opposite effect. Additionally, PpeMYC2 activated the arginine decarboxylase (PpeADC1) promoter, thereby enhancing PA biosynthesis. Beyond PA regulation, silencing PpeMYC2 significantly increased anthocyanin accumulation by relieving its repression of dihydroflavonol 4-reductase (PpeDFR), a key gene in anthocyanin biosynthesis. Collectively, these findings reveal that JA promotes peach fruit ripening by lowering PA accumulation and stimulating anthocyanin synthesis through PpeMYC2-mediated transcriptional control. This study provides mechanistic evidence that JA regulates fruit ripening through direct control of PA metabolism and identifies PpeMYC2 as a central node integrating JA, PA, and anthocyanin pathways in peach fruit.
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