Xu Tongda, Nagawa Shingo, Yang Zhenbiao
Center for Plant Cell Biology; Department of Botany and Plant Sciences; University of California; Riverside, CA USA.
Small GTPases. 2011 Jul;2(4):227-232. doi: 10.4161/sgtp.2.4.16702. Epub 2011 Jul 1.
The investigation of Rho-family GTPases has uncovered mechanisms for spatiotemporal control of cellular processes such as cell polarization, movement, morphogenesis and cell division. Now Rho GTPase plays another leading role in the discovery of a new signaling mechanism for auxin, a multifunctional hormone that regulates pattern formation in plants. Arabidopsis leaf epidermal pavement cells (PCs) develop the puzzle-piece cell shape with interlocking lobes and indentations via interdigitated cellular growth.1 Through the ABP1 (Auxin Binding Protein 1) cell surface receptor, auxin coordinately activates 2 mutually exclusive Rho GTPase signaling pathways that are activated in the complementary lobing and indenting sides of adjacent cells: the ROP2 pathway for lobe formation and the ROP6 pathway for promoting indentation. This new signaling mechanism also involves ROP2-dependent polar accumulation of PIN1 in the plasma membrane, a member of the PIN auxin efflux carrier family that is critical for the formation of various developmental patterns including the PC interdigitation pattern. This Rho-dependent auxin signaling mechanism explains how interdigitated cellular growth is coordinated. In this extra view, we propose that the same mechanism can also explain how a uniform auxin signal initiates the formation of the interdigitated pattern.
对Rho家族小G蛋白的研究揭示了细胞过程如细胞极化、运动、形态发生和细胞分裂的时空控制机制。现在,Rho小G蛋白在发现生长素(一种调节植物模式形成的多功能激素)的新信号机制中发挥了另一个主导作用。拟南芥叶表皮铺板细胞(PCs)通过相互交错的细胞生长形成具有互锁叶和凹陷的拼图状细胞形状。通过ABP1(生长素结合蛋白1)细胞表面受体,生长素协同激活2条相互排斥的Rho小G蛋白信号通路,它们在相邻细胞的互补叶状和凹陷侧被激活:用于叶形成的ROP2通路和用于促进凹陷的ROP6通路。这种新的信号机制还涉及PIN1在质膜中的ROP2依赖性极性积累,PIN1是PIN生长素外排载体家族的成员,对包括PC交错模式在内的各种发育模式的形成至关重要。这种Rho依赖性生长素信号机制解释了相互交错的细胞生长是如何协调的。在这个补充观点中,我们提出相同的机制也可以解释均匀的生长素信号如何启动交错模式的形成。