Timirjazev Institute of Plant Physiology, Russian Academy of Sciences, 127276 Moscow, Russia.
Timirjazev Institute of Plant Physiology, Russian Academy of Sciences, 127276 Moscow, Russia.
Plant Sci. 2021 Jun;307:110880. doi: 10.1016/j.plantsci.2021.110880. Epub 2021 Mar 15.
Auxin alone or supplemented with cytokinins and strigolactones were long considered as the main player(s) in the control of apical dominance (AD) and correlative inhibition of the lateral bud outgrowth, the processes that shape the plant phenotype. However, past decade data indicate a more sophisticated pathways of AD regulation, with the involvement of mobile carbohydrates which perform both signal and trophic functions. Here we provide a critical comprehensive overview of the current status of the AD problem. This includes insight into intimate mechanisms regulating directed auxin transport in axillary buds with participation of phytohormones and sugars. Also roles of auxin, cytokinin and sugars in the dormancy or sustained growth of the lateral meristems were assigned. This review not only provides the latest data on implicated phytohormone crosstalk and its relationship with the signaling of sugars and abscisic acid, new AD players, but also focuses on the emerging biochemical mechanisms, at first positive feedback loops involving both sugars and hormones, that ensure the sustained bud growth. Data show that sugars act in concert with cytokinins but antagonistically to strigolactone signaling. A complex bud growth regulating network is demonstrated and unresolved issues regarding the hormone-carbohydrate regulation of AD are highlighted.
生长素单独或与细胞分裂素和独脚金内酯一起被长期认为是控制顶端优势(AD)和侧芽生长相关抑制的主要参与者,这些过程塑造了植物表型。然而,过去十年的数据表明,AD 调节的途径更加复杂,涉及到可移动的碳水化合物,这些碳水化合物具有信号和营养功能。在这里,我们提供了一个关于 AD 问题的当前状态的批判性综合概述。这包括深入了解参与腋芽定向生长素运输的调节机制,涉及植物激素和糖。此外,还分配了生长素、细胞分裂素和糖在侧芽休眠或持续生长中的作用。这篇综述不仅提供了涉及的植物激素串扰及其与糖和脱落酸信号的最新数据,还关注新兴的生化机制,首先是涉及糖和激素的正反馈环,以确保芽的持续生长。数据表明,糖与细胞分裂素协同作用,但与独脚金内酯信号拮抗。展示了一个复杂的芽生长调节网络,并强调了激素-碳水化合物调节 AD 方面尚未解决的问题。