咖啡因
转录因子
基因沉默
基因
生物合成
生物
细胞生物学
次生代谢
山茶
生物化学
抄写(语言学)
转录调控
代谢途径
化学
RNA干扰
基因表达调控
新陈代谢
基因表达
发起人
染色体易位
耐旱性
渗透性休克
遗传学
绿茶
作者
Shiyu Zhang,Zhouzhuoer Chen,Xinzhuan Yao,Shilai Tian,Xiaoqin Zhang,Weilong Kong,Litang Lu
摘要
Caffeine biosynthesis in tea plants (Camellia sinensis) is dynamically regulated by environmental cues; however, the mechanisms linking early drought signals to caffeine accumulation remain unclear. Here, we show that acute PEG-induced osmotic stress induces rapid caffeine accumulation, accompanied by transcriptional activation of the key biosynthetic gene CsTCS1. Through integrative analyses, including GWAS and co-expression network modeling, we identified a CsBPC6-CsNACX2-CsTCS1 module as a central regulatory hub. Mechanistically, CsNACX2 directly binds the promoter of the caffeine synthase gene CsTCS1, activating its transcription and promoting caffeine accumulation. Moreover, the drought-responsive transcription factor CsBPC6 acts upstream to transactivate CsNACX2. Functional validation using gene silencing and transient overexpression assays confirmed that the CsBPC6-CsNACX2-CsTCS1 module positively regulates caffeine biosynthesis under PEG-induced drought conditions. Collectively, our findings uncover a previously uncharacterized drought-responsive transcriptional module governing caffeine biosynthesis, providing new mechanistic insights into how environmental cues regulate secondary metabolism in tea plants.
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