John Innes Centre, Colney, Norwich NR4 7UH, UK.
Plant J. 2012 Feb;69(4):628-39. doi: 10.1111/j.1365-313X.2011.04817.x. Epub 2011 Nov 25.
The phytohormone gibberellin (GA) promotes plant growth by stimulating cellular expansion. Whilst it is known that GA acts by opposing the growth-repressing effects of DELLA proteins, it is not known how these events promote cellular expansion. Here we present a time-lapse analysis of the effects of a single pulse of GA on the growth of Arabidopsis hypocotyls. Our analyses permit kinetic resolution of the transient growth effects of GA on expanding cells. We show that pulsed application of GA to the relatively slowly growing cells of the unexpanded light-grown Arabidopsis hypocotyl results in a transient burst of anisotropic cellular growth. This burst, and the subsequent restoration of initial cellular elongation rates, occurred respectively following the degradation and subsequent reappearance of a GFP-tagged DELLA (GFP-RGA). In addition, we used a GFP-tagged α-tubulin 6 (GFP-TUA6) to visualise the behaviour of microtubules (MTs) on the outer tangential wall (OTW) of epidermal cells. In contrast to some current hypotheses concerning the effect of GA on MTs, we show that the GA-induced boost of hypocotyl cell elongation rate is not dependent upon the maintenance of transverse orientation of the OTW MTs. This confirms that transverse alignment of outer face MTs is not necessary to maintain rapid elongation rates of light-grown hypocotyls. Together with future studies on MT dynamics in other faces of epidermal cells and in cells deeper within the hypocotyl, our observations advance understanding of the mechanisms by which GA promotes plant cell and organ growth.
植物激素赤霉素(GA)通过刺激细胞扩张来促进植物生长。虽然已知 GA 通过拮抗 DELLA 蛋白的生长抑制作用来发挥作用,但尚不清楚这些事件如何促进细胞扩张。在这里,我们对 GA 对拟南芥下胚轴生长的单次脉冲的影响进行了延时分析。我们的分析允许对 GA 对扩张细胞的短暂生长效应进行动力学分辨率。我们表明,GA 对未扩展的光生长拟南芥下胚轴中相对生长缓慢的细胞的脉冲应用导致细胞各向异性生长的短暂爆发。这种爆发以及随后恢复初始细胞伸长率分别发生在 GFP 标记的 DELLA(GFP-RGA)降解及其随后再次出现之后。此外,我们使用 GFP 标记的α-微管蛋白 6(GFP-TUA6)来可视化表皮细胞外切向壁(OTW)上微管(MT)的行为。与关于 GA 对 MT 影响的一些当前假设相反,我们表明,GA 诱导的下胚轴细胞伸长率的提高不依赖于 OTW MT 横向取向的维持。这证实了外切面孔 MT 的横向对准对于维持光生长下胚轴的快速伸长率不是必需的。结合对表皮细胞其他面和下胚轴更深层细胞中 MT 动力学的未来研究,我们的观察结果推进了对 GA 促进植物细胞和器官生长的机制的理解。