Department of Chemistry, Seoul National University, Seoul, 08826, Korea.
Research Institute of Basic Science, Seoul National University, Seoul, 08826, Korea.
New Phytol. 2024 May;242(3):1068-1083. doi: 10.1111/nph.19637. Epub 2024 Feb 26.
Chromatin configuration is critical for establishing tissue identity and changes substantially during tissue identity transitions. The crucial scientific and agricultural technology of in vitro tissue culture exploits callus formation from diverse tissue explants and tissue regeneration via de novo organogenesis. We investigated the dynamic changes in H3ac and H3K4me3 histone modifications during leaf-to-callus transition in Arabidopsis thaliana. We analyzed changes in the global distribution of H3ac and H3K4me3 during the leaf-to-callus transition, focusing on transcriptionally active regions in calli relative to leaf explants, defined by increased accumulation of both H3ac and H3K4me3. Peptide signaling was particularly activated during callus formation; the peptide hormones RGF3, RGF8, PIP1 and PIPL3 were upregulated, promoting callus proliferation and conferring competence for de novo shoot organogenesis. The corresponding peptide receptors were also implicated in peptide-regulated callus proliferation and regeneration capacity. The effect of peptide hormones in plant regeneration is likely at least partly conserved in crop plants. Our results indicate that chromatin-dependent regulation of peptide hormone production not only stimulates callus proliferation but also establishes pluripotency, improving the overall efficiency of two-step regeneration in plant systems.
染色质构象对于建立组织身份至关重要,并且在组织身份转变过程中会发生实质性变化。体外组织培养是一项关键的科学和农业技术,它可以利用愈伤组织从各种组织外植体中形成,并通过从头器官发生进行组织再生。我们研究了拟南芥叶片到愈伤组织转变过程中 H3ac 和 H3K4me3 组蛋白修饰的动态变化。我们分析了在叶片到愈伤组织的转变过程中 H3ac 和 H3K4me3 的全局分布变化,重点关注与叶片外植体相比,在转录活跃区域中 H3ac 和 H3K4me3 的积累增加。肽信号在愈伤组织形成过程中特别激活;肽激素 RGF3、RGF8、PIP1 和 PIPL3 上调,促进愈伤组织增殖,并赋予从头产生新梢器官的能力。相应的肽受体也参与了肽调节的愈伤组织增殖和再生能力。肽激素在植物再生中的作用可能至少部分在作物植物中保守。我们的结果表明,依赖染色质的肽激素产生调控不仅刺激愈伤组织增殖,而且建立多能性,提高植物系统两步再生的整体效率。