RHO GTPase of plants regulates polarized cell growth and cell division orientation during morphogenesis

生物 形态发生 细胞生物学 细胞分裂 电池极性 器官发生 多形马尔汉坦 细胞生长 细胞 GTP酶 突变体 顶端细胞 不对称细胞分裂 叶尖生长 生长素 植物 遗传学 基因 花粉 授粉 花粉管
作者
Hugh Mulvey,Liam Dolan
出处
期刊:Current Biology [Elsevier BV]
卷期号:33 (14): 2897-2911.e6 被引量:18
标识
DOI:10.1016/j.cub.2023.06.015
摘要

Cell polarity-broadly defined as the asymmetric distribution of cellular activities and subcellular components within a cell-determines the geometry of cell growth and division during development. RHO GTPase proteins regulate the establishment of cell polarity and are conserved among eukaryotes. RHO of plant (ROP) proteins are a subgroup of RHO GTPases that are required for cellular morphogenesis in plants. However, how ROP proteins modulate the geometry of cell growth and division during the morphogenesis of plant tissues and organs is not well understood. To investigate how ROP proteins function during tissue development and organogenesis, we characterized the function of the single-copy ROP gene of the liverwort Marchantia polymorpha (MpROP). M. polymorpha develops morphologically complex three-dimensional tissues and organs exemplified by air chambers and gemmae, respectively. Mprop loss-of-function mutants form defective air chambers and gemmae, indicating ROP function is required for tissue development and organogenesis. During air chamber and gemma development in wild type, the MpROP protein is enriched to sites of polarized growth at the cell surface and accumulates at the expanding cell plate of dividing cells. Consistent with these observations, polarized cell growth is lost and cell divisions are misoriented in Mprop mutants. We propose that ROP regulates both polarized cell growth and cell division orientation in a coordinated manner to orchestrate tissue development and organogenesis in land plants.
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