Stowe-Evans E L, Harper R M, Motchoulski A V, Liscum E
Division of Biological Sciences, University of Missouri, Columbia, Missouri 65211, USA.
Plant Physiol. 1998 Dec;118(4):1265-75. doi: 10.1104/pp.118.4.1265.
Although sessile in nature, plants are able to use a number of mechanisms to modify their morphology in response to changing environmental conditions. Differential growth is one such mechanism. Despite its importance in plant development, little is known about the molecular events regulating the establishment of differential growth. Here we report analyses of the nph4 (nonphototropic hypocotyl) mutants of Arabidopsis that suggest that the NPH4 protein plays a central role in the modulation of auxin-dependent differential growth. Results from physiological studies demonstrate that NPH4 activity is conditionally required for a number of differential growth responses, including phototropism, gravitropism, phytochrome-dependent hypocotyl curvature, apical hook maintenance, and abaxial/adaxial leaf-blade expansion. The nph4 mutants exhibited auxin resistance and severely impaired auxin-dependent gene expression, indicating that the defects associated with differential growth likely arise because of altered auxin responsiveness. Moreover, the auxin signaling events mediating phototropism are genetically correlated with the abundance of the NPH4 protein.
尽管植物本质上是固着生长的,但它们能够利用多种机制来改变自身形态以应对不断变化的环境条件。差异生长就是这样一种机制。尽管其在植物发育中很重要,但对于调节差异生长建立的分子事件却知之甚少。在此,我们报道了对拟南芥nph4(非向光性下胚轴)突变体的分析,结果表明NPH4蛋白在生长素依赖性差异生长的调节中起核心作用。生理学研究结果表明,NPH4活性对于多种差异生长反应是有条件必需的,包括向光性、向重力性、依赖光敏色素的下胚轴弯曲、顶端弯钩维持以及叶片背/腹面扩展。nph4突变体表现出生长素抗性,且生长素依赖性基因表达严重受损,这表明与差异生长相关的缺陷可能是由于生长素反应性改变所致。此外,介导向光性的生长素信号事件与NPH4蛋白的丰度存在遗传相关性。