AGAMOUS regulates various target genes via cell cycle–coupled H3K27me3 dilution in floral meristems and stamens

恶毒的 分生组织 生物 拟南芥 雄蕊 基因 组蛋白 细胞生物学 细胞分裂 MADS箱 遗传学 转录因子 植物 细胞 花粉 突变体
作者
Margaret Anne Pelayo,Fumi Morishita,Haruka Sawada,Kasumi Matsushita,Hideaki Iimura,Zemiao He,Liang Sheng Looi,Naoya Katagiri,Asumi Nagamori,Takamasa Suzuki,Marek Šírl,Aleš Soukup,Akiko Satake,Toshiro Ito,Nobutoshi Yamaguchi
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:35 (8): 2821-2847 被引量:1
标识
DOI:10.1093/plcell/koad123
摘要

The MADS domain transcription factor AGAMOUS (AG) regulates floral meristem termination by preventing maintenance of the histone modification lysine 27 of histone H3 (H3K27me3) along the KNUCKLES (KNU) coding sequence. At 2 d after AG binding, cell division has diluted the repressive mark H3K27me3, allowing activation of KNU transcription prior to floral meristem termination. However, how many other downstream genes are temporally regulated by this intrinsic epigenetic timer and what their functions are remain unknown. Here, we identify direct AG targets regulated through cell cycle-coupled H3K27me3 dilution in Arabidopsis thaliana. Expression of the targets KNU, AT HOOK MOTIF NUCLEAR LOCALIZED PROTEIN18 (AHL18), and PLATZ10 occurred later in plants with longer H3K27me3-marked regions. We established a mathematical model to predict timing of gene expression and manipulated temporal gene expression using the H3K27me3-marked del region from the KNU coding sequence. Increasing the number of del copies delayed and reduced KNU expression in a polycomb repressive complex 2- and cell cycle-dependent manner. Furthermore, AHL18 was specifically expressed in stamens and caused developmental defects when misexpressed. Finally, AHL18 bound to genes important for stamen growth. Our results suggest that AG controls the timing of expression of various target genes via cell cycle-coupled dilution of H3K27me3 for proper floral meristem termination and stamen development.
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