表观基因组
DNA去甲基化
代谢组
转录组
重编程
生物
调节器
代谢途径
细胞生物学
蓝光
基因
DNA
DNA甲基化
红灯
基因表达调控
基因表达
产量(工程)
植物生理学
拟南芥
生物钟
信号转导
遗传学
植物
焊剂(冶金)
去甲基化
生物化学
新陈代谢
代谢组学
植物生长
作者
Zixin Zhang,Jing Zhang,Yi Wang,Yuting Chen,Qian Hu,Xin Zhang,Wen Li,Yiren Xiao,Ke Zhou,Yanling Lai,Dan Su,Evangelos C. Tatsis,Gaofeng Liu,Mingchun Liu,Zhenhui Zhong,Yang Zhang
摘要
Modifying the light formula is a central strategy for improving the yield and quality of fruits and vegetables in agriculture. While light signals have long been acknowledged as primary factors in regulating plant growth and development, their role in reprogramming metabolic networks is not well understood. Using tomato as a model, we demonstrate that supplementation with red or blue light induces metabolic shifts in tomato fruit. Through the creation of the Tomato Light-induced Expression Database (TomLED), we identified extensive transcriptomic and metabolic changes in tomato fruit under varying light conditions. Notably, the induction of key master regulators and metabolic genes is mediated by increased genome-wide DNA demethylation, facilitated by SlDML2. Additionally, we show that SlHY5, a central regulator in the light signaling pathway, directly induces the expression of SlDML2. This study reveals the molecular mechanisms by which light regulates the plant epigenome and establishes a direct link between light signals and plant metabolism.
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