染色质
生物
组蛋白
细胞生物学
抄写(语言学)
芸苔属
遗传学
染色质重塑
拟南芥
组蛋白H2A
转录因子
DNA甲基化
精氨酸
甲基化
开花位点C
组蛋白甲基化
染色质结构重塑复合物
拟南芥
表观遗传学
组蛋白密码
基因
作者
José A. Abelenda,Gerardo Carrera-Castaño,Julian Calleja,Iván del Olmo,Jenifer Pozas,Elisa Alonso‐Perez,Manuel Piñeiro,José A. Jarillo
标识
DOI:10.1016/j.xplc.2026.101869
摘要
Precise regulation of flowering time in plants is achieved through tight transcriptional control of master regulators, which is fine-tuned by dynamic histone modifications and changes in chromatin structure. In our search for flowering-related regulatory networks, we identified METHYL-BINDING DOMAIN PROTEIN 4 (MBD4) as a key hub controlling flowering and responses to high ambient temperature in Brassica napus and Arabidopsis. While MBD4 was previously described as a DNA methylation reader, our findings reveal that MBD4 recognizes histone arginine methylation. The MBD4 genome-wide distribution and its coordinated expression with histone methylation writers coincide with global patterns of arginine methylation. Although histone lysine methylation is well understood, the role of arginine methylation remains largely unexplored. Our results demonstrate that MBD4 plays a critical role in the transcriptional control of flowering regulators by recognizing arginine methylation and facilitating acetylation removal. Additionally, we confirmed the significance of the Brassica napus MBD4 homeolog in modulating the transition to the reproductive phase through chromatin alterations at the BnaFLC and BnaMAF4 loci, suggesting that chromatin readers may have a global influence on important developmental traits in crops. Overall, understanding these molecular mechanisms is highly relevant to developing strategies to improve crop adaptation to global warming.
科研通智能强力驱动
Strongly Powered by AbleSci AI