Department of New Biology, DGIST, Daegu, 42988, Korea.
Division of Integrative Bioscience and Bioengineering, Sejong University, Seoul, 05006, Korea.
New Phytol. 2024 Oct;244(2):558-570. doi: 10.1111/nph.19997. Epub 2024 Jul 26.
Abscission is the shedding of plant organs in response to developmental and environmental cues. Abscission involves cell separation between two neighboring cell types, residuum cells (RECs) and secession cells (SECs) in the floral abscission zone (AZ) in Arabidopsis thaliana. However, the regulatory mechanisms behind the spatial determination that governs cell separation are largely unknown. The class I KNOTTED-like homeobox (KNOX) transcription factor BREVIPEDICELLUS (BP) negatively regulates AZ cell size and number in Arabidopsis. To identify new players participating in abscission, we performed a genetic screen by activation tagging a weak complementation line of bp-3. We identified the mutant ebp1 (enhancer of BP1) displaying delayed floral organ abscission. The ebp1 mutant showed a concaved surface in SECs and abnormally stacked cells on the top of RECs, in contrast to the precisely separated surface in the wild-type. Molecular and histological analyses revealed that the transcriptional programming during cell differentiation in the AZ is compromised in ebp1. The SECs of ebp1 have acquired REC-like properties, including cuticle formation and superoxide production. We show that SEPARATION AFFECTING RNA-BINDING PROTEIN1 (SARP1) is upregulated in ebp1 and plays a role in the establishment of the cell separation layer during floral organ abscission in Arabidopsis.
脱落是植物器官对发育和环境信号的响应而脱落。脱落涉及到两个相邻细胞类型之间的细胞分离,在拟南芥花脱落区(AZ)中,残留细胞(RECs)和分离细胞(SECs)之间发生细胞分离。然而,控制细胞分离的空间决定的调控机制在很大程度上是未知的。I 类 KNOTTED 类同源盒(KNOX)转录因子 BREVIPEDICELLUS(BP)负调控拟南芥 AZ 细胞大小和数量。为了鉴定参与脱落的新成员,我们通过激活标记 bp-3 的弱互补系进行遗传筛选。我们鉴定出突变体 ebp1(BP1 的增强子)表现出延迟的花器官脱落。与野生型精确分离的表面相比,ebp1 突变体在 SECs 中显示出凹面,在 RECs 顶部显示出异常堆叠的细胞。分子和组织学分析表明,ebp1 中 AZ 中细胞分化过程中的转录编程受到损害。ebp1 的 SECs 获得了 REC 样特性,包括角质层形成和超氧化物产生。我们表明,SEPARATION AFFECTING RNA-BINDING PROTEIN1(SARP1)在 ebp1 中上调,并在拟南芥花器官脱落过程中在细胞分离层的建立中发挥作用。