首页> 外文期刊>The Plant Cell >Arabidopsis SET DOMAIN GROUP2 Is Required for H3K4 Trimethylation and Is Crucial for Both Sporophyte and Gametophyte Development
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Arabidopsis SET DOMAIN GROUP2 Is Required for H3K4 Trimethylation and Is Crucial for Both Sporophyte and Gametophyte Development

机译:H3K4三甲基化需要拟南芥SET DOMAIN GROUP2,对于孢子体和配子体的发育至关重要

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Histone H3 lysine 4 trimethylation (H3K4me3) is abundant in euchromatin and is in general associated with transcriptional activation in eukaryotes. Although some Arabidopsis thaliana SET DOMAIN GROUP (SDG) genes have been previously shown to be involved in H3K4 methylation, they are unlikely to be responsible for global genome-wide deposition of H3K4me3. Most strikingly, sparse knowledge is currently available about the role of histone methylation in gametophyte development. In this study, we show that the previously uncharacterized SDG2 is required for global H3K4me3 deposition and its loss of function causes wide-ranging defects in both sporophyte and gametophyte development. Transcriptome analyses of young flower buds have identified 452 genes downregulated by more than twofold in the sdg2-1 mutant; among them, 11 genes, including SPOROCYTELESS/NOZZLE (SPL/NZZ) and MALE STERILITY1 (MS1), have been previously shown to be essential for male and/or female gametophyte development. We show that both SPL/NZZ and MS1 contain bivalent chromatin domains enriched simultaneously with the transcriptionally active mark H3K4me3 and the transcriptionally repressive mark H3K27me3 and that SDG2 is specifically required for the H3K4me3 deposition. Our data suggest that SDG2-mediated H3K4me3 deposition poises SPL/NZZ and MS1 for transcriptional activation, forming a key regulatory mechanism in the gene networks responsible for gametophyte development.
机译:组蛋白H3赖氨酸4三甲基化(H3K4me3)的常染色质含量很高,通常与真核生物的转录激活有关。尽管以前已经证明一些拟南芥SET DOMAIN GROUP(SDG)基因参与H3K4甲基化,但它们不太可能导致H3K4me3在全球的全基因组沉积。最引人注目的是,目前尚缺乏有关组蛋白甲基化在配子体发育中的作用的稀疏知识。在这项研究中,我们表明全局H3K4me3沉积需要以前未表征的SDG2,并且其功能丧失会导致孢子体和配子体发育的广泛缺陷。通过对年轻花蕾的转录组分析,发现sdg2-1突变体中有452个基因被下调了两倍以上。其中,先前已显示11个基因,包括孢子/喷嘴(SPL / NZZ)和男性不育1(MS1)对男性和/或女性配子体发育至关重要。我们显示,SPL / NZZ和MS1都包含与转录活性标记H3K4me3和转录抑制标记H3K27me3同时富集的二价染色质域,并且SDG2是H3K4me3沉积特别需要的。我们的数据表明,SDG2介导的H3K4me3沉积使SPL / NZZ和MS1保持转录激活状态,从而在负责配子体发育的基因网络中形成了关键的调控机制。

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