Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya, 464-8601, Japan.
Plant J. 2021 Jan;105(2):421-430. doi: 10.1111/tpj.15011. Epub 2020 Oct 27.
The plasticity of growth and development in response to environmental changes is one of the essential aspects of plant behavior. Cytokinins play an important role as signaling molecules in the long-distance communication between organs in systemic growth regulation in response to nitrogen. The spatial distribution of the expression sites of cytokinin biosynthesis genes leads to structural differences in the molecular species transported through the xylem and phloem, giving root-borne trans-hydroxylated cytokinins, namely trans-zeatin (tZ) type, a specialized efficacy in regulating shoot growth. Furthermore, root-to-shoot translocation via the xylem, tZ, and its precursor, the tZ riboside, controls different sets of shoot growth traits to fine-tune shoot growth in response to nitrogen availability. In addition to nitrogen, photosynthetically generated sugars positively regulate de novo cytokinin biosynthesis in the roots, and contribute to plant growth under elevated CO conditions. In shoot-to-root signaling, cytokinins also play a role in the regulation of nutrient acquisition and root system growth in cooperation with other types of signaling molecules, such as C-TERMINALLY ENCODED PEPTIDE DOWNSTREAMs. As cytokinin is a key regulator for the maintenance of shoot apical meristem, deepening our understanding of the regulatory mechanisms of cytokinin biosynthesis and transport in response to nitrogen is important not only for basic comprehension of plant growth, but also to ensure the stability of agricultural production.
植物行为的一个重要方面是对环境变化的生长和发育的可塑性。细胞分裂素作为信号分子在氮响应的全身生长调节中在器官间的长距离通讯中发挥重要作用。细胞分裂素生物合成基因表达部位的空间分布导致通过木质部和韧皮部运输的分子种类的结构差异,从而赋予根源性反式羟基化细胞分裂素,即反式玉米素(tZ)型,在调节茎生长方面的特殊功效。此外,通过木质部、tZ 及其前体 tZ 核苷的根到茎的转运控制了不同的茎生长性状集,以微调氮可用性响应下的茎生长。除了氮,光合作用产生的糖在根中正向调节细胞分裂素的从头生物合成,并有助于在升高的 CO 条件下的植物生长。在茎到根的信号转导中,细胞分裂素也与其他类型的信号分子(如 C 末端编码肽下游)一起在营养物质获取和根系生长的调节中发挥作用。由于细胞分裂素是维持茎尖分生组织的关键调节剂,因此深入了解氮响应下细胞分裂素生物合成和运输的调控机制不仅对基本的植物生长理解很重要,而且对确保农业生产的稳定性也很重要。