CEITEC - Central European Institute of Technology, Masaryk University, Brno, Czech Republic.
Laboratory of Functional Genomics and Proteomics, National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Brno, Czech Republic.
J Exp Bot. 2018 Jan 23;69(3):441-454. doi: 10.1093/jxb/erx426.
Cytokinins comprise a group of phytohormones with an organ-specific mode of action. Although the mechanisms controlling the complex networks of cytokinin metabolism are partially known, the role of individual cytokinin types in the maintenance of cytokinin homeostasis remains unclear. Utilizing the overproduction of single-chain Fv antibodies selected for their ability to bind trans-zeatin riboside and targeted to the endoplasmic reticulum, we post-synthetically modulated cytokinin ribosides, the proposed transport forms of cytokinins. We observed asymmetric activity of cytokinin biosynthetic genes and cytokinin distribution in wild-type tobacco seedlings with higher cytokinin abundance in the root than in the shoot. Antibody-mediated modulation of cytokinin ribosides further enhanced the relative cytokinin abundance in the roots and induced cytokinin-related phenotypes in an organ-specific manner. The activity of cytokinin oxidase/dehydrogenase in the roots was strongly up-regulated in response to antibody-mediated formation of the cytokinin pool in the endoplasmic reticulum. However, we only detected a slight decrease in the root cytokinin levels. In contrast, a significant decrease of cytokinins occurred in the shoot. We suggest the roots as the main site of cytokinin biosynthesis in tobacco seedlings. Conversely, cytokinin levels in the shoot seem to depend largely on long-range transport of cytokinin ribosides from the root and their subsequent metabolic activation.
细胞分裂素是一类具有器官特异性作用模式的植物激素。虽然控制细胞分裂素代谢复杂网络的机制部分已知,但单个细胞分裂素类型在维持细胞分裂素稳态中的作用仍不清楚。利用针对结合反式玉米素核苷能力进行选择的单链 Fv 抗体的过度表达,并将其靶向内质网,我们对细胞分裂素核苷进行了后合成调节,这是细胞分裂素的拟运输形式。我们观察到野生型烟草幼苗中细胞分裂素生物合成基因和细胞分裂素分布的不对称活性,根中的细胞分裂素丰度高于茎。抗体介导的细胞分裂素核苷调节进一步增强了根中相对细胞分裂素的丰度,并以器官特异性方式诱导细胞分裂素相关表型。响应内质网中细胞分裂素库的抗体介导形成,根中的细胞分裂素氧化酶/脱氢酶活性被强烈上调。然而,我们只检测到根中细胞分裂素水平略有下降。相比之下,在茎中细胞分裂素显著减少。我们认为根是烟草幼苗中细胞分裂素生物合成的主要部位。相反,茎中的细胞分裂素水平似乎在很大程度上取决于从根到地上部分的细胞分裂素核苷的长距离运输及其随后的代谢激活。