Institute of Plant Biology, Zurich-Basel Plant Science Center, University of Zurich, CH-8008 Zurich, Switzerland.
Plant Physiol. 2013 Mar;161(3):1066-75. doi: 10.1104/pp.112.211763. Epub 2013 Jan 25.
Cytokinins are classic plant hormones that orchestrate plant growth, development, and physiology. They affect gene expression in target cells by activating a multistep phosphorelay network. Type-B response regulators, acting as transcriptional activators, mediate the final step in the signaling cascade. Previously, we have introduced a synthetic reporter, Two Component signaling Sensor (TCS)::green fluorescent protein (GFP), which reflects the transcriptional activity of type-B response regulators. TCS::GFP was instrumental in uncovering roles of cytokinin and deepening our understanding of existing functions. However, TCS-mediated expression of reporters is weak in some developmental contexts where cytokinin signaling has a documented role, such as in the shoot apical meristem or in the vasculature of Arabidopsis (Arabidopsis thaliana). We also observed that GFP expression becomes rapidly silenced in TCS::GFP transgenic plants. Here, we present an improved version of the reporter, TCS new (TCSn), which, compared with TCS, is more sensitive to phosphorelay signaling in Arabidopsis and maize (Zea mays) cellular assays while retaining its specificity. Transgenic Arabidopsis TCSn::GFP plants exhibit strong and dynamic GFP expression patterns consistent with known cytokinin functions. In addition, GFP expression has been stable over generations, allowing for crosses with different genetic backgrounds. Thus, TCSn represents a significant improvement to report the transcriptional output profile of phosphorelay signaling networks in Arabidopsis, maize, and likely other plants that display common response regulator DNA-binding specificities.
细胞分裂素是经典的植物激素,它们协调植物的生长、发育和生理机能。它们通过激活多步磷酸接力网络来影响靶细胞中的基因表达。作为转录激活物的类型-B 反应调节剂介导信号级联中的最后一步。此前,我们引入了一种合成报告器,双组分信号传感器(TCS):绿色荧光蛋白(GFP),它反映了类型-B 反应调节剂的转录活性。TCS::GFP 在揭示细胞分裂素的作用和加深我们对现有功能的理解方面发挥了重要作用。然而,在一些发育环境中,TCS 介导的报告基因表达较弱,而细胞分裂素信号在这些环境中具有已知的作用,例如在茎尖分生组织或拟南芥(Arabidopsis thaliana)的脉管系统中。我们还观察到,GFP 表达在 TCS::GFP 转基因植物中迅速沉默。在这里,我们提出了报告器的改进版本 TCSn,与 TCS 相比,它在拟南芥和玉米(Zea mays)细胞测定中对磷酸接力信号更敏感,同时保持其特异性。转 TCSn::GFP 的拟南芥 TCSn 植物表现出与已知细胞分裂素功能一致的强烈和动态 GFP 表达模式。此外,GFP 表达在几代人中都很稳定,允许与不同的遗传背景进行杂交。因此,TCSn 代表了一个显著的改进,用于报告拟南芥、玉米和可能具有共同反应调节剂 DNA 结合特异性的其他植物中磷酸接力信号网络的转录输出谱。