Xu Tongda, Wen Mingzhang, Nagawa Shingo, Fu Ying, Chen Jin-Gui, Wu Ming-Jing, Perrot-Rechenmann Catherine, Friml Jiří, Jones Alan M, Yang Zhenbiao
Center for Plant Cell Biology, Department of Botany and Plant Sciences, University of California, Riverside, CA 92521, USA.
Cell. 2010 Oct 1;143(1):99-110. doi: 10.1016/j.cell.2010.09.003.
Auxin is a multifunctional hormone essential for plant development and pattern formation. A nuclear auxin-signaling system controlling auxin-induced gene expression is well established, but cytoplasmic auxin signaling, as in its coordination of cell polarization, is unexplored. We found a cytoplasmic auxin-signaling mechanism that modulates the interdigitated growth of Arabidopsis leaf epidermal pavement cells (PCs), which develop interdigitated lobes and indentations to form a puzzle-piece shape in a two-dimensional plane. PC interdigitation is compromised in leaves deficient in either auxin biosynthesis or its export mediated by PINFORMED 1 localized at the lobe tip. Auxin coordinately activates two Rho GTPases, ROP2 and ROP6, which promote the formation of complementary lobes and indentations, respectively. Activation of these ROPs by auxin occurs within 30 s and depends on AUXIN-BINDING PROTEIN 1. These findings reveal Rho GTPase-based auxin-signaling mechanisms, which modulate the spatial coordination of cell expansion across a field of cells.
生长素是一种对植物发育和模式形成至关重要的多功能激素。一种控制生长素诱导基因表达的核生长素信号系统已得到充分确立,但细胞质生长素信号,如在其对细胞极化的协调作用中,尚未得到探索。我们发现了一种细胞质生长素信号机制,该机制调节拟南芥叶表皮铺板细胞(PCs)的交错生长,这些细胞在二维平面上形成交错的叶瓣和凹陷,以形成拼图形状。在生长素生物合成或由位于叶尖的PINFORMED 1介导的生长素输出缺陷的叶片中,PC交错生长受到损害。生长素协同激活两种Rho GTP酶,ROP2和ROP6,它们分别促进互补叶瓣和凹陷的形成。生长素对这些ROP的激活在30秒内发生,并且依赖于生长素结合蛋白1。这些发现揭示了基于Rho GTP酶的生长素信号机制,该机制调节跨细胞场的细胞扩张的空间协调。