Serrano-Mislata Antonio, Fernández-Nohales Pedro, Doménech María J, Hanzawa Yoshie, Bradley Desmond, Madueño Francisco
Instituto de Biología Molecular y Celular de Plantas (IBMCP), Consejo Superior de Investigaciones Científicas (CSIC)-Universidad Politécnica de Valencia (UPV), Valencia 46022, Spain.
John Innes Centre, Colney, Norwich NR4 7UH, UK Department of Crop Sciences, University of Illinois at Urbana-Champaign, 1201 W Gregory Drive, Urbana, IL 61801, USA.
Development. 2016 Sep 15;143(18):3315-27. doi: 10.1242/dev.135269. Epub 2016 Jul 6.
TERMINAL FLOWER 1 (TFL1) is a key regulator of Arabidopsis plant architecture that responds to developmental and environmental signals to control flowering time and the fate of shoot meristems. TFL1 expression is dynamic, being found in all shoot meristems, but not in floral meristems, with the level and distribution changing throughout development. Using a variety of experimental approaches we have analysed the TFL1 promoter to elucidate its functional structure. TFL1 expression is based on distinct cis-regulatory regions, the most important being located 3' of the coding sequence. Our results indicate that TFL1 expression in the shoot apical versus lateral inflorescence meristems is controlled through distinct cis-regulatory elements, suggesting that different signals control expression in these meristem types. Moreover, we identified a cis-regulatory region necessary for TFL1 expression in the vegetative shoot and required for a wild-type flowering time, supporting that TFL1 expression in the vegetative meristem controls flowering time. Our study provides a model for the functional organisation of TFL1 cis-regulatory regions, contributing to our understanding of how developmental pathways are integrated at the genomic level of a key regulator to control plant architecture.
终端花1(TFL1)是拟南芥植株结构的关键调节因子,它响应发育和环境信号来控制开花时间以及茎尖分生组织的命运。TFL1的表达是动态的,在所有茎尖分生组织中都有发现,但在花分生组织中没有,其水平和分布在整个发育过程中都会发生变化。我们使用了多种实验方法来分析TFL1启动子,以阐明其功能结构。TFL1的表达基于不同的顺式调控区域,其中最重要的位于编码序列的3'端。我们的结果表明,TFL1在茎尖与侧生花序分生组织中的表达是通过不同的顺式调控元件来控制的,这表明不同的信号控制着这些分生组织类型中的表达。此外,我们鉴定出了一个在营养茎中TFL1表达所必需的顺式调控区域,并且它对于野生型开花时间也是必需的,这支持了营养分生组织中TFL1的表达控制开花时间的观点。我们的研究为TFL1顺式调控区域的功能组织提供了一个模型,有助于我们理解发育途径是如何在一个关键调节因子的基因组水平上整合以控制植株结构的。