University of Tübingen, ZMBP, Auf der Morgenstelle 32, 72076 Tübingen, Germany.
University of Tübingen, ZMBP, Auf der Morgenstelle 32, 72076 Tübingen, Germany; Department of Biology, Friedrich-Alexander University Erlangen-Nuremberg, Staudtstrasse 5, 91058 Erlangen, Germany.
Curr Biol. 2022 Feb 7;32(3):532-544.e7. doi: 10.1016/j.cub.2021.12.042. Epub 2022 Jan 31.
In many plant species, pavement cell development relies on the coordinated formation of interdigitating lobes and indentations. Polarity signaling via the activity of antagonistic Rho-related GTPases from plants (ROPs) was implicated in pavement cell development, but the spatiotemporal regulation remained unclear. Here, we report on the role of the PLECKSTRIN HOMOLOGY GTPase ACTIVATING PROTEINS (PHGAPS) during multipolar growth in pavement cell shape establishment. Loss of function in phgap1phgap2 double mutants severely affected the shape of Arabidopsis leaf epidermal pavement cells. Predominantly, PHGAPs interacted with ROP2 and displayed a distinct and microtubule-dependent enrichment along the anticlinal cell face and transfacial boundary of pavement cell indentation regions. This localization was established upon undulation initiation and was maintained throughout the expansion of the cell. Our data suggest that PHGAP1/REN2 and PHGAP2/REN3 are key players in the establishment of ROP2 activity gradients and underscore the importance of locally controlled ROP activity for the orchestrated establishment of multipolarity in epidermal cells.
在许多植物物种中, pavement 细胞的发育依赖于相互交错的叶突和凹陷的协调形成。极性信号通过植物中的拮抗 Rho 相关 GTP 酶(ROPs)的活性来介导电 pavement 细胞的发育,但时空调节仍不清楚。在这里,我们报告了 PLECKSTRIN HOMOLOGY GTPase ACTIVATING PROTEINS(PHGAPS)在 pavement 细胞形状建立中的多极生长过程中的作用。phgap1phgap2 双突变体的功能丧失严重影响了拟南芥叶表皮 pavement 细胞的形状。主要是,PHGAPs 与 ROP2 相互作用,并显示出明显的、微管依赖性的富集,沿着 pavement 细胞凹陷区域的垂直细胞面和跨面边界。这种定位是在波动起始时建立的,并在细胞的扩展过程中得到维持。我们的数据表明,PHGAP1/REN2 和 PHGAP2/REN3 是建立 ROP2 活性梯度的关键因素,并强调了局部控制的 ROP 活性对于表皮细胞中协调建立多极性的重要性。