Wang Ming, Le Moigne Marie-Anne, Bertheloot Jessica, Crespel Laurent, Perez-Garcia Maria-Dolores, Ogé Laurent, Demotes-Mainard Sabine, Hamama Latifa, Davière Jean-Michel, Sakr Soulaiman
Institut de Recherche en Horticulture et Semences, Agrocampus-Ouest, INRA, SFR 4207 QUASAV, Université d'Angers, Beaucouzé, France.
Institut de Biologie Moléculaire des Plantes, UPR2357, Université de Strasbourg, Strasbourg, France.
Front Plant Sci. 2019 Feb 12;10:76. doi: 10.3389/fpls.2019.00076. eCollection 2019.
Shoot branching is a key process for plant growth and fitness. Newly produced axes result from axillary bud outgrowth, which is at least partly mediated through the regulation of gene expression (BRC1/TB1/FC1). encodes a pivotal bud-outgrowth-inhibiting transcription factor belonging to the TCP family. As the regulation of expression is a hub for many shoot-branching-related mechanisms, it is influenced by endogenous (phytohormones and nutrients) and exogenous (light) inputs, which involve so-far only partly identified molecular networks. This review highlights the central role of BRC1 in shoot branching and its responsiveness to different stimuli, and emphasizes the different knowledge gaps that should be addressed in the near future.
茎枝分枝是植物生长和适应性的关键过程。新产生的茎轴源于腋芽的生长,这至少部分是通过基因表达(BRC1/TB1/FC1)的调控介导的。 编码一种属于TCP家族的关键的抑制芽生长的转录因子。由于 表达的调控是许多与茎枝分枝相关机制的核心,它受到内源性(植物激素和营养物质)和外源性(光)输入的影响,而这些输入涉及到目前仅部分确定的分子网络。本综述强调了BRC1在茎枝分枝中的核心作用及其对不同刺激的反应性,并强调了在不久的将来应解决的不同知识空白。