Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Maize Research Institute, Jilin Academy of Agricultural Sciences, Gongzhuling, 136100, China.
New Phytol. 2023 Oct;240(2):577-596. doi: 10.1111/nph.19192. Epub 2023 Aug 15.
Plant height is an important agronomic trait that affects crop yield. Elucidating the molecular mechanism underlying plant height regulation is also an important question in developmental biology. Here, we report that a BELL transcription factor, ZmBELL10, positively regulates plant height in maize (Zea mays). Loss of ZmBELL10 function resulted in shorter internodes, fewer nodes, and smaller kernels, while ZmBELL10 overexpression increased plant height and hundred-kernel weight. Transcriptome analysis and chromatin immunoprecipitation followed by sequencing showed that ZmBELL10 recognizes specific sequences in the promoter of its target genes and activates cell division- and cell elongation-related gene expression, thereby influencing node number and internode length in maize. ZmBELL10 interacted with several other ZmBELL proteins via a spatial structure in its POX domain to form protein complexes involving ZmBELL10. All interacting proteins recognized the same DNA sequences, and their interaction with ZmBELL10 increased target gene expression. We identified the key residues in the POX domain of ZmBELL10 responsible for its protein-protein interactions, but these residues did not affect its transactivation activity. Collectively, our findings shed light on the functions of ZmBELL10 protein complexes and provide potential targets for improving plant architecture and yield in maize.
株高是影响作物产量的一个重要农艺性状。阐明植物株高调控的分子机制也是发育生物学中的一个重要问题。在这里,我们报道了一个 BEL 转录因子 ZmBELL10,它正向调控玉米中的株高。ZmBELL10 功能缺失导致节间变短、节点减少和籽粒变小,而过表达 ZmBELL10 则增加了株高和百粒重。转录组分析和染色质免疫沉淀测序表明,ZmBELL10 识别其靶基因启动子中的特定序列,并激活与细胞分裂和细胞伸长相关的基因表达,从而影响玉米中的节点数量和节间长度。ZmBELL10 通过其 POX 结构域中的空间结构与其他几个 ZmBELL 蛋白相互作用,形成涉及 ZmBELL10 的蛋白质复合物。所有相互作用的蛋白质都识别相同的 DNA 序列,它们与 ZmBELL10 的相互作用增加了靶基因的表达。我们鉴定了 ZmBELL10 POX 结构域中负责其蛋白-蛋白相互作用的关键残基,但这些残基不影响其转录激活活性。总之,我们的研究结果揭示了 ZmBELL10 蛋白复合物的功能,并为改善玉米的株型和产量提供了潜在的靶点。