Chen Junyi, Lausser Andreas, Dresselhaus Thomas
*Cell Biology and Plant Biochemistry, Biochemie-Zentrum Regensburg, University of Regensburg, Universitätsstrasse 31, 93053 Regensburg, Germany.
Biochem Soc Trans. 2014 Apr;42(2):325-31. doi: 10.1042/BST20130260.
Plant hormones have been shown to regulate key processes during embryogenesis in the model plant Arabidopsis thaliana, but the mechanisms that determine the peculiar embryo pattern formation of monocots are largely unknown. Using the auxin and cytokinin response markers DR5 and TCSv2 (two-component system, cytokinin-responsive promoter version #2), as well as the auxin efflux carrier protein PIN1a (PINFORMED1a), we have studied the hormonal response during early embryogenesis (zygote towards transition stage) in the model and crop plant maize. Compared with the hormonal response in Arabidopsis, we found that detectable hormone activities inside the developing maize embryo appeared much later. Our observations indicate further an important role of auxin, PIN1a and cytokinin in endosperm formation shortly after fertilization. Apparent auxin signals within adaxial endosperm cells and cytokinin responses in the basal endosperm transfer layer as well as chalazal endosperm are characteristic for early seed development in maize. Moreover, auxin signalling in endosperm cells is likely to be involved in exogenous embryo patterning as auxin responses in the endosperm located around the embryo proper correlate with adaxial embryo differentiation and outgrowth. Overall, the comparison between Arabidopsis and maize hormone response and flux suggests intriguing mechanisms in monocots that are used to direct their embryo patterning, which is significantly different from that of eudicots.
植物激素已被证明可调节模式植物拟南芥胚胎发生过程中的关键过程,但决定单子叶植物独特胚胎模式形成的机制在很大程度上尚不清楚。利用生长素和细胞分裂素反应标记DR5和TCSv2(双组分系统,细胞分裂素反应启动子版本2),以及生长素输出载体蛋白PIN1a(PINFORMED1a),我们研究了模式植物和农作物玉米早期胚胎发生(合子到过渡阶段)期间的激素反应。与拟南芥中的激素反应相比,我们发现发育中的玉米胚胎内部可检测到的激素活性出现得要晚得多。我们的观察结果进一步表明,生长素、PIN1a和细胞分裂素在受精后不久的胚乳形成中起着重要作用。近轴胚乳细胞内明显的生长素信号以及基部胚乳转移层和合点端胚乳中的细胞分裂素反应是玉米早期种子发育的特征。此外,胚乳细胞中的生长素信号可能参与外源胚胎模式形成,因为胚乳中位于胚体周围的生长素反应与近轴胚胎分化和生长相关。总体而言,拟南芥和玉米激素反应及通量的比较表明,单子叶植物中存在有趣的机制来指导其胚胎模式形成,这与双子叶植物的机制有显著不同。