Unit Plant Hormone Signaling and Bio-imaging, Department of Physiology, Ghent University, Gent, Belgium.
Development. 2010 Feb;137(4):597-606. doi: 10.1242/dev.040790.
Dark-grown dicotyledonous seedlings form a hook-like structure at the top of the hypocotyl, which is controlled by the hormones auxin and ethylene. Hook formation is dependent on an auxin signal gradient, whereas hook exaggeration is part of the triple response provoked by ethylene in dark-grown Arabidopsis seedlings. Several other hormones and light are also known to be involved in hook development, but the molecular mechanisms that lead to the initial installation of an auxin gradient are still poorly understood. In this study, we aimed to unravel the cross-talk between auxin and ethylene in the apical hook. Auxin measurements, the expression pattern of the auxin reporter DR5::GUS and the localization of auxin biosynthesis enzymes and influx carriers collectively indicate the necessity for auxin biosynthesis and efficient auxin translocation from the cotyledons and meristem into the hypocotyl in order to support proper hook development. Auxin accumulation in the meristem and cotyledons and in the hypocotyl is increased approximately 2-fold upon treatment with ethylene. In addition, a strong ethylene signal leads to enhanced auxin biosynthesis at the inner side of the hook. Finally, mutant analysis demonstrates that the auxin influx carrier LAX3 is indispensable for proper hook formation, whereas the auxin influx carrier AUX1 is involved in the hook exaggeration phenotype induced by ethylene.
暗培养的双子叶幼苗在下胚轴的顶端形成钩状结构,该结构受激素生长素和乙烯的控制。钩的形成依赖于生长素信号梯度,而钩的夸大则是暗培养拟南芥幼苗中乙烯引发的三重反应的一部分。其他几种激素和光也已知参与钩的发育,但导致生长素梯度初始安装的分子机制仍知之甚少。在这项研究中,我们旨在揭示生长素和乙烯在顶端钩中的相互作用。生长素测量、生长素报告基因 DR5::GUS 的表达模式以及生长素生物合成酶和流入载体的定位共同表明,为了支持适当的钩发育,需要生长素的生物合成和从子叶和分生组织有效运输到下胚轴的生长素。用乙烯处理后,生长素在分生组织、子叶和下胚轴中的积累增加了约 2 倍。此外,强烈的乙烯信号导致钩内生长素生物合成增强。最后,突变体分析表明,生长素流入载体 LAX3 对于适当的钩形成是必不可少的,而生长素流入载体 AUX1 参与了乙烯诱导的钩夸大表型。