Department of Plant Systems Biology, Flanders Institute for Biotechnology, B-9052 Ghent, Belgium.
Proc Natl Acad Sci U S A. 2010 Feb 9;107(6):2705-10. doi: 10.1073/pnas.0915001107. Epub 2010 Jan 25.
Like animals, the mature plant body develops via successive sets of instructions that determine cell fate, patterning, and organogenesis. In the coordination of various developmental programs, several plant hormones play decisive roles, among which auxin is the best-documented hormonal signal. Despite the broad range of processes influenced by auxin, how such a single signaling molecule can be translated into a multitude of distinct responses remains unclear. In Arabidopsis thaliana, lateral root development is a classic example of a developmental process that is controlled by auxin at multiple stages. Therefore, we used lateral root formation as a model system to gain insight into the multifunctionality of auxin. We were able to demonstrate the complementary and sequential action of two discrete auxin response modules, the previously described Solitary Root/indole-3-Acetic Acid (IAA)14-Auxin Response Factor (ARF)7-ARF19-dependent lateral root initiation module and the successive Bodenlos/IAA12-Monopteros/ARF5-dependent module, both of which are required for proper organogenesis. The genetic framework in which two successive auxin response modules control early steps of a developmental process adds an extra dimension to the complexity of auxin's action.
与动物一样,成熟的植物体通过一系列决定细胞命运、模式形成和器官发生的指令进行发育。在各种发育程序的协调中,几种植物激素起着决定性的作用,其中生长素是研究最充分的激素信号。尽管生长素影响的过程广泛,但如此单一的信号分子如何能转化为多种不同的反应尚不清楚。在拟南芥中,侧根发育是一个经典的发育过程,该过程在多个阶段受生长素控制。因此,我们使用侧根形成作为模型系统来深入了解生长素的多功能性。我们能够证明两个离散的生长素反应模块的互补和顺序作用,即先前描述的单独根/吲哚-3-乙酸(IAA)14-生长素响应因子(ARF)7-ARF19 依赖性侧根起始模块和连续 Bodenlos/IAA12-单翅目/ARF5 依赖性模块,两者对于正常的器官发生都是必需的。两个连续的生长素反应模块控制发育过程早期步骤的遗传框架为生长素作用的复杂性增添了一个额外的维度。