Department of Botany and Plant Sciences, Center for Plant Cell Biology, Institute of Integrative Genome Biology, University of California, Riverside, CA, USA.
Methods Mol Biol. 2022;2382:181-207. doi: 10.1007/978-1-0716-1744-1_11.
The development of multicellular organisms requires coordinated cell divisions for the production of diverse cell types and body plan elaboration and growth. There are two main types of cell divisions: proliferative or symmetric divisions, which produce more cells of a given type, and formative or asymmetric divisions, which produce cells of different types. Because plant cells are surrounded by cell walls, the orientation of plant cell divisions is particularly important in cell fate specification and tissue or organ morphology. The cellular organization of the Arabidopsis thaliana root makes an excellent tool to study how oriented cell division contributes to tissue patterning during organ development. To understand how division plane orientation in a specific genotype or growth condition may impact organ or tissue development, a detailed characterization of cell division orientation is required. Here we describe a confocal microscopy-based, live imaging method for Arabidopsis root tips to examine the 3D orientations of cell division planes and quantify formative, proliferative, and atypical endodermal cell divisions.
多细胞生物的发育需要协调的细胞分裂,以产生不同的细胞类型和身体计划的细化和生长。细胞分裂有两种主要类型:增殖或对称分裂,产生更多给定类型的细胞,以及形成或不对称分裂,产生不同类型的细胞。由于植物细胞被细胞壁包围,因此植物细胞分裂的方向对于细胞命运特化和组织或器官形态特别重要。拟南芥根的细胞组织是研究定向细胞分裂如何在器官发育过程中有助于组织模式形成的极好工具。为了了解特定基因型或生长条件下的分裂平面取向如何影响器官或组织发育,需要对细胞分裂取向进行详细表征。在这里,我们描述了一种基于共聚焦显微镜的拟南芥根尖活细胞成像方法,用于检查细胞分裂平面的 3D 取向,并定量形成、增殖和非典型内胚层细胞的分裂。