Kim Boyeong, Lim Chaemyeong, Kim Jin-Ah, Oh Semin, Cho Sung-Hwan, Yoon Hyeryung, Kang Kiyoon, Paek Nam-Chon
Department of Agriculture, Forestry and Bioresources, Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, Korea.
Plant Genomics and Breeding Institute, Seoul National University, Seoul, Korea.
Plant J. 2025 Jul;123(1):e70343. doi: 10.1111/tpj.70343.
The leaf angle (LA) is a critical component of plant architecture that directly influences photosynthetic efficiency and grain yield. In the present study, we found that ETHYLENE RESPONSE FACTOR 101 (OsERF101), an APETALA2/ethylene response factor, plays a role in LA formation. A null mutation in OsERF101 resulted in reduced LA, whereas transgenic plants overexpressing OsERF101 (OsERF101-OEs) exhibited increased LA. OsERF101 increased the development of the adaxial lamina joint (LJ). Transactivation assays and reverse transcription-quantitative polymerase chain reaction (RT-qPCR) analysis indicated that OsERF101 activated BRASSINOSTEROID UPREGULATED 1 (OsBU1) transcription by directly binding to its promoter. However, OsERF101 expression was suppressed by exogenous brassinosteroid (BR) treatment and elevated endogenous brassinolide (BL) levels during LJ development. Additionally, OsERF101 downregulated the expression of BR biosynthesis genes, including Brassinosteroid-deficient dwarf2 (OsBRD2) and CYP90B2/OsDWARF4, leading to reduced levels of endogenous BL, the most active BR, in OsERF101-OEs. These findings suggested that OsERF101 mediates a negative feedback loop that balances endogenous BR levels and signaling. Collectively, rice plants have evolved diverse regulatory mechanisms involving OsERF101 to tune LA formation and optimize plant architecture finely.
叶片角度(LA)是植物株型的一个关键组成部分,直接影响光合效率和籽粒产量。在本研究中,我们发现乙烯响应因子101(OsERF101),一种APETALA2/乙烯响应因子,在LA形成中发挥作用。OsERF101的无效突变导致LA减小,而过量表达OsERF101的转基因植株(OsERF101-OEs)表现出LA增大。OsERF101促进了叶片近轴面叶节(LJ)的发育。反式激活分析和逆转录定量聚合酶链反应(RT-qPCR)分析表明,OsERF101通过直接结合启动子激活油菜素内酯上调基因1(OsBU1)的转录。然而,在LJ发育过程中,外源油菜素内酯(BR)处理抑制了OsERF101的表达,且内源油菜素内酯(BL)水平升高。此外,OsERF101下调了包括油菜素内酯缺陷矮化2(OsBRD2)和CYP90B2/OsDWARF4在内的BR生物合成基因的表达,导致OsERF101-OEs中最具活性的内源BL水平降低。这些发现表明,OsERF101介导了一个负反馈环,以平衡内源BR水平和信号传导。总的来说,水稻植株已经进化出多种涉及OsERF101的调控机制来调节LA形成并精细优化植物株型。