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生长素、乙烯和油菜素甾体:拟南芥下胚轴生长的三方调控

Auxin, ethylene and brassinosteroids: tripartite control of growth in the Arabidopsis hypocotyl.

作者信息

De Grauwe Liesbeth, Vandenbussche Filip, Tietz Olaf, Palme Klaus, Van Der Straeten Dominique

机构信息

Unit Plant Hormone Signaling and Bio-imaging, Department of Molecular Genetics, Ghent University, Ledeganckstraat 35, B-9000 Gent, Belgium.

出版信息

Plant Cell Physiol. 2005 Jun;46(6):827-36. doi: 10.1093/pcp/pci111. Epub 2005 Apr 25.

Abstract

Dark-grown Arabidopsis seedlings develop an apical hook by differential cell elongation and division, a process driven by cross-talk between multiple hormones. Auxins, ethylene and gibberellins interact in the formation of the apical hook. In the light, a similar complexity of hormonal regulation has been revealed at the level of hypocotyl elongation. Here, we describe the involvement of brassinosteroids (BRs) in auxin- and ethylene-controlled processes in the hypocotyls of both light- and dark-grown seedlings. We show that BR biosynthesis is necessary for the formation of an exaggerated apical hook and that either application of BRs or disruption of BR synthesis alters auxin response, presumably by affecting auxin transport, eventually resulting in the disappearance of the apical hook. Furthermore, we demonstrate that ethylene-stimulated hypocotyl elongation in the light is largely controlled by the same mechanisms as those governing formation of the apical hook in darkness. However, in the light, BRs appear to compensate for the insensitivity to ethylene in hls mutants, supporting a downstream action of BRs. Hence, our results indicate that HLS1, SUR1/HLS3/RTY1/ALF1 and AMP1/HPT/COP2/HLS2/PT act on the auxin-ethylene interaction, rather than at the level of BRs. A model for the tripartite hormone interactions is presented.

摘要

暗中生长的拟南芥幼苗通过细胞伸长和分裂的差异形成顶端弯钩,这一过程由多种激素之间的相互作用驱动。生长素、乙烯和赤霉素在顶端弯钩的形成过程中相互作用。在光照条件下,下胚轴伸长水平上也揭示了类似复杂的激素调控。在此,我们描述了油菜素内酯(BRs)在光照和暗中生长的幼苗下胚轴中生长素和乙烯控制过程中的作用。我们表明,BR生物合成对于形成夸张的顶端弯钩是必要的,并且施用BRs或破坏BR合成都会改变生长素反应,可能是通过影响生长素运输,最终导致顶端弯钩消失。此外,我们证明,光照下乙烯刺激的下胚轴伸长在很大程度上受与暗中控制顶端弯钩形成相同的机制调控。然而,在光照条件下,BRs似乎补偿了hls突变体对乙烯的不敏感性,支持了BRs的下游作用。因此,我们的结果表明,HLS1、SUR1/HLS3/RTY1/ALF1和AMP1/HPT/COP2/HLS2/PT作用于生长素-乙烯相互作用,而不是在BRs水平。本文提出了三方激素相互作用的模型。

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