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The Rop GTPase switch controls multiple developmental processes inArabidopsis

机译:Rop GTPase开关控制拟南芥中的多个发育过程

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G proteins are universal molecular switches in eukaryotic signal transduction. The Arabidoysis genome sequence reveals no RAS small GTPase and only one or a few heterotrimeric G proteins, two predominant classes of signaling G proteins found in-animals. In contrast, Arabidopsis possesses a unique family of 11 Rop GTPases that belong to the Rho family of small GTPases; Previous studies indicate that Pop controls actin-dependent pollen tube growth and H2O2-dependent defense responses. In this study, we tested the hypothesis that the Pop GTPase acts as a versatile molecular switch in signaling to multiple developmental processes in Arabidopsis. Immunolocalization using a general antibody against the Rop family proteins revealed a ubiquitous distribution of Rop proteins in all vegetative and reproductive tissues and cells in Arabidopsis. The cauliflower mosaic virus 35S promoter-directed expression of constitutively active GTP-bound rop2 (CA-rop2) and dominant negative GDP-bound rop2 (DN-rop2) mutant genes impacted many aspects of plant growth and development, including embryo development, seed dormancy, seedling development, lateral root initiation, morphogenesis of lateral organs in the shoot, shoot apical dominance and growth, phyllotaxis, and lateral organ orientation, The rop2 transgenic plants also displayed altered responses to the exogenous application of several hormones, such as abscisic acid-mediated seed dormancy, auxin-dependent lateral shoot initiation, and brassinolide-mediated hypocotyl elongation. CA-rop2 and DN-rop2 expression had opposite effects on most of the affected processes, supporting a direct signaling role for Rop in regulating these processes. Based on these observations and previous results, we propose that Rop2 and other members of the Pop family participate in multiple distinct signaling pathways that control plant growth, development, and responses to the environment.
机译:G蛋白是真核信号转导中的通用分子开关。拟南芥基因组序列显示没有RAS小GTP酶,只有一个或几个异源三聚体G蛋白,这是在动物中发现的两种主要信号G蛋白。相比之下,拟南芥拥有一个独特的11个Rop GTPases家族,它们属于小型GTPases的Rho家族。先前的研究表明,Pop控制依赖肌动蛋白的花粉管生长和依赖H2O2的防御反应。在这项研究中,我们测试了Pop GTPase在拟南芥中向多种发育过程发出信号的多功能分子开关这一假设。使用针对Rop家族蛋白的通用抗体进行的免疫定位显示,Rop蛋白在拟南芥的所有营养和生殖组织及细胞中普遍分布。花椰菜花叶病毒35S启动子指导的组成性活性GTP结合rop2(CA-rop2)和显性负GDP结合rop2(DN-rop2)突变基因的表达影响植物生长和发育的许多方面,包括胚胎发育,种子休眠,幼苗发育,侧根萌生,枝条中侧器官的形态发生,枝条顶端发育和生长,叶序发育和侧枝方向,rop2转基因植物还表现出对几种激素(如脱落酸-介导的种子休眠,生长素依赖性侧芽萌发和油菜素内酯介导的下胚轴伸长。 CA-rop2和DN-rop2表达对大多数受影响的过程具有相反的影响,支持Rop在调节这些过程中的直接信号传导作用。根据这些观察结果和先前的结果,我们建议Rop2和Pop家族的其他成员参与控制植物生长,发育和对环境的响应的多个不同信号通路。

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