Rony R M Imtiaz Karim, Campos Roya, Pérez-Henríquez Patricio, Van Norman Jaimie M
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California, Riverside, California 92521, USA.
Department of Molecular, Cell, and Systems Biology, Center for Plant Cell Biology, Institute of Integrative Genome Biology, University of California, Riverside, California 92521, USA.
Plant Physiol. 2024 Dec 2;196(4):2251-2262. doi: 10.1093/plphys/kiae419.
Oriented cell divisions establish plant tissue and organ patterning and produce different cell types; this is particularly true of the highly organized Arabidopsis (Arabidopsis thaliana) root meristem. Mutant alleles of INFLORESCENCE AND ROOT APICES RECEPTOR KINASE (IRK) exhibit excess cell divisions in the root endodermis. IRK is a transmembrane receptor kinase that localizes to the outer polar domain of these cells, suggesting that directional signal perception is necessary to repress endodermal cell division. Here, a detailed examination revealed many of the excess endodermal divisions in irk have division planes that specifically skew toward the outer lateral side. Therefore, we termed them "outward askew" divisions. Expression of an IRK truncation lacking the kinase domain retains polar localization and prevents outward askew divisions in irk; however, the roots exhibit excess periclinal endodermal divisions. Using cell identity markers, we show that the daughters of outward askew divisions transition from endodermal to cortical identity similar to those of periclinal divisions. These results extend the requirement for IRK beyond repression of cell division activity to include cell division plane positioning. Based on its polarity, we propose that IRK at the outer lateral endodermal cell face participates in division plane positioning to ensure normal root ground tissue patterning.
定向细胞分裂建立植物组织和器官模式,并产生不同的细胞类型;高度组织化的拟南芥根分生组织尤其如此。花序和根尖受体激酶(IRK)的突变等位基因在根内皮层表现出过多的细胞分裂。IRK是一种跨膜受体激酶,定位于这些细胞的外极性结构域,这表明定向信号感知对于抑制内皮层细胞分裂是必要的。在这里,详细检查发现,irk中许多多余的内皮层分裂具有特别偏向外侧的分裂平面。因此,我们将它们称为“向外倾斜”分裂。缺乏激酶结构域的IRK截短体的表达保留了极性定位,并防止了irk中的向外倾斜分裂;然而,根表现出过多的平周内皮层分裂。使用细胞身份标记,我们表明向外倾斜分裂的子细胞从内皮层身份转变为皮层身份,类似于平周分裂的子细胞。这些结果将IRK的作用扩展到除了抑制细胞分裂活性之外,还包括细胞分裂平面定位。基于其极性,我们提出外侧内皮层细胞表面的IRK参与分裂平面定位,以确保正常的根基本组织模式。