Division of Life Sciences and Medicine, School of Life Sciences; Ministry of Education Key Laboratory for Membraneless Organelles and Cellular Dynamics; Chinese Academy of Sciences (CAS) Center for Excellence in Molecular Plant Sciences, University of Science and Technology of China, Anhui 230027, China.
Rice Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, China.
Plant Physiol. 2022 Mar 28;188(4):2199-2214. doi: 10.1093/plphys/kiac031.
Deposition of H2A.Z and H4 acetylation by SWI2/SNF2-Related 1 Chromatin Remodeling (SWR1) and Nucleosome Acetyltransferase of H4 (NuA4) complexes in specific regulatory regions modulates transcription and development. However, little is known about these complexes in Oryza sativa (rice) development. Here, we reported that OsYAF9 and OsSWC4, two subunits of SWR1 and NuA4 complexes, are involved in rice vegetative and reproductive development. Loss of OsYAF9 resulted in reduced height, fewer tillers, fewer pollen grains, and defects in embryogenesis and seed filling. OsYAF9 directly interacted with OsSWC4 in vitro and in vivo. Loss of OsSWC4 function exhibited defects in pollen germination and failure to generate seeds, whereas knockdown of OsSWC4 resulted in reduced height and fewer tillers. The reduced height caused by OsYAF9 mutation and OsSWC4 knockdown was due to shorter internodes and defects in cell elongation, and this phenotype was rescued with gibberellin (GA) treatment, suggesting that both OsYAF9 and OsSWC4 are involved in the GA biosynthesis pathway. OsSWC4 was directly bound to the AT-rich region of GA biosynthesis genes, which in turn accomplished H2A.Z deposition and H4 acetylation at the GA biosynthesis genes with OsYAF9. Together, our study provides insights into the mechanisms involving OsSWC4 and OsYAF9 forming a protein complex to promote rice internode elongation with H2A.Z deposition and H4 acetylation.
H2A.Z 和 H4 乙酰化的沉积由 SWI2/SNF2 相关的 1 染色质重塑(SWR1)和核小体乙酰转移酶 H4(NuA4)复合物在特定调节区域中进行,调节转录和发育。然而,关于这些复合物在水稻(Oryza sativa)发育中的作用知之甚少。在这里,我们报道了 SWR1 和 NuA4 复合物的两个亚基 OsYAF9 和 OsSWC4 参与了水稻营养和生殖发育。OsYAF9 的缺失导致株高降低、分蘖减少、花粉粒减少以及胚胎发生和种子填充缺陷。OsYAF9 在体外和体内均与 OsSWC4 直接相互作用。OsSWC4 功能的丧失导致花粉萌发缺陷和无法产生种子,而 OsSWC4 的敲低导致株高降低和分蘖减少。由于 OsYAF9 突变和 OsSWC4 敲低导致的株高降低是由于节间变短和细胞伸长缺陷引起的,赤霉素(GA)处理可以挽救该表型,表明 OsYAF9 和 OsSWC4 均参与了 GA 生物合成途径。OsSWC4 直接结合到 GA 生物合成基因的富含 AT 区域,进而与 OsYAF9 一起完成 GA 生物合成基因的 H2A.Z 沉积和 H4 乙酰化。总之,我们的研究提供了有关 OsSWC4 和 OsYAF9 形成蛋白复合物以促进水稻节间伸长并通过 H2A.Z 沉积和 H4 乙酰化来促进 GA 生物合成基因表达的机制的见解。