H3K4me3
成熟
表观遗传学
脱甲基酶
组蛋白
组蛋白甲基化
细胞生物学
生物
化学
转录因子
抄写(语言学)
甲基化
生物化学
DNA甲基化
基因表达
泛素连接酶
基因表达调控
组蛋白甲基转移酶
更年期
作者
Ding‐Ding Zuo,Yang Lü,Ruiya Li,Jianmin Xing,Jing Zhang,Kai-Yue Zhang,Hainan Liu,Tong‐Lu Wei,Mao‐Song Pei,Da‐Long Guo
出处
期刊:Plant Journal
[Wiley]
日期:2025-12-01
卷期号:124 (5): e70642-e70642
摘要
Fruit ripening is regulated by a complex regulatory network, including internal factors and epigenetic modification. Until now, the role of histone methylation in grape fruit ripening is unclear, especially for H3K4me3 modification. H2O2 treatment promotes the ripening of grape berries, but how it regulates fruit ripening and whether it affects H3K4me3 modification is poorly understood. Here, to study the relationship between H2O2 and H3K4me3 modification in fruit ripening, a comprehensive analysis of anti-H3K4me3 ChIP-seq and RNA-seq of grape berries after H2O2 treatment was performed. The results revealed that H2O2 treatment led to changes in expression patterns and H3K4me3 modification in heat shock protein 18.2 (VvHSP18.2), ethylene-responsive transcription factor 75 (VvERF75), and E3 ubiquitin-protein ligase PUB23 (VvPUB23). Overexpression of VvHSP18.2 promoted grape fruit ripening. Among them, VvHSP18.2 positively regulates grape fruit ripening. The potential histone H3K4 demethyltransferase (lysine-specific demethylase JMJ14) with reduced expression after H2O2 treatment was further identified. VvJMJ14 is located in the cytoplasm and negatively regulates grape fruit ripening. VvJMJ14 does not directly interact with VvHSP18.2, VvERF75, and VvPUB23, but promotes their transcription by affecting the H3K4me3 levels in their promoter region after H2O2 treatment. Overall, these results demonstrate that VvJMJ14 is a H3K4 demethyltransferase that promotes the expression of VvHSP18.2, VvERF75, and VvPUB23 by regulating H3K4me3 levels, thereby accelerating H2O2-induced fruit ripening in grape. This study provides a reference for the study of H2O2 regulation of fruit ripening at the epigenetic regulation level.
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