Department of Agricultural Biology, Colorado State University, Fort Collins, CO 80523, USA.
Department of Biology, University of North Carolina, Chapel Hill, NC 27599, USA.
Plant Cell. 2024 May 1;36(5):1429-1450. doi: 10.1093/plcell/koad327.
Since its first identification in the 1950s as a regulator of cell division, cytokinin has been linked to many physiological processes in plants, spanning growth and development and various responses to the environment. Studies from the last two and one-half decades have revealed the pathways underlying the biosynthesis and metabolism of cytokinin and have elucidated the mechanisms of its perception and signaling, which reflects an ancient signaling system evolved from two-component elements in bacteria. Mutants in the genes encoding elements involved in these processes have helped refine our understanding of cytokinin functions in plants. Further, recent advances have provided insight into the mechanisms of intracellular and long-distance cytokinin transport and the identification of several proteins that operate downstream of cytokinin signaling. Here, we review these processes through a historical lens, providing an overview of cytokinin metabolism, transport, signaling, and functions in higher plants.
自 20 世纪 50 年代首次被鉴定为细胞分裂的调节剂以来,细胞分裂素一直与植物的许多生理过程有关,包括生长和发育以及对环境的各种反应。过去二十五年的研究揭示了细胞分裂素生物合成和代谢的途径,并阐明了其感知和信号转导的机制,这反映了一种古老的信号系统,它是由细菌中的双组分元件进化而来的。参与这些过程的基因编码元件的突变体有助于我们更深入地了解细胞分裂素在植物中的功能。此外,最近的进展提供了对细胞分裂素在细胞内和长距离运输的机制的深入了解,并鉴定了几种在细胞分裂素信号转导下游发挥作用的蛋白质。在这里,我们通过历史的视角来回顾这些过程,概述高等植物中细胞分裂素的代谢、运输、信号转导和功能。