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杨树类FD碱性亮氨酸拉链转录因子的组成型表达改变生长和芽发育。

Constitutive expression of the Poplar FD-like basic leucine zipper transcription factor alters growth and bud development.

作者信息

Parmentier-Line Cécile M, Coleman Gary D

机构信息

Department of Plant Science and Landscape Architecture, University of Maryland, College Park, MD, USA.

出版信息

Plant Biotechnol J. 2016 Jan;14(1):260-70. doi: 10.1111/pbi.12380. Epub 2015 Apr 24.

Abstract

In poplar, the CO/FT regulatory module mediates seasonal growth cessation. Although FT interacts with the basic leucine zipper transcription factor FD, surprisingly little is known about the possible role of FD in bud development and growth cessation in trees. In this study, we examined the expression and localization of the poplar FD homolog, PtFD1, during short-day (SD)-induced bud development, and the consequences of overexpressing PtFD1 on bud development and shoot growth. PtFD1 was primarily expressed in apical and axillary buds and exhibited a transient increase in expression during the initial stages of SD-induced bud development. This transient increase declined with continued SD treatment. When PtFD1 was overexpressed in poplar, SD-induced growth cessation and bud formation were abolished. PTFD1 overexpression also resulted in precocious flowering of juvenile plants in long-day (LD) photoperiods. Because the phenotypes associated with overexpression of PtFD1 are similar to those observe when poplar FT1 is overexpressed (Science, 312, 2006, 1040), the expression and diurnal patterns of expression of both poplar FT1 and FT2 were characterized in PtFD1 overexpression poplars and found to be altered. DNA microarray analysis revealed few differences in gene expression between PtFD1 overexpressing poplars in LD conditions while extensive levels of differential gene expression occur in SD-treated plants. These results enforce the connection between the regulation of flowering and the regulation of growth cessation and bud development in poplar.

摘要

在杨树中,CO/FT调控模块介导季节性生长停止。尽管FT与碱性亮氨酸拉链转录因子FD相互作用,但令人惊讶的是,关于FD在树木芽发育和生长停止中可能发挥的作用却知之甚少。在本研究中,我们检测了杨树FD同源物PtFD1在短日照(SD)诱导的芽发育过程中的表达和定位,以及过表达PtFD1对芽发育和枝条生长的影响。PtFD1主要在顶芽和腋芽中表达,并且在SD诱导的芽发育初始阶段表达呈现短暂增加。随着SD处理的持续,这种短暂增加下降。当PtFD1在杨树中过表达时,SD诱导的生长停止和芽形成被消除。PtFD1过表达还导致幼龄植物在长日照(LD)光周期下早熟开花。由于与PtFD1过表达相关的表型与杨树FT1过表达时观察到的表型相似(《科学》,312卷,2006年,第1040页),因此在PtFD1过表达杨树中对杨树FT1和FT2的表达及昼夜表达模式进行了表征,发现它们发生了改变。DNA微阵列分析显示,在LD条件下,PtFD1过表达杨树之间基因表达差异很少,而在SD处理的植物中出现了大量的差异基因表达。这些结果强化了杨树开花调控与生长停止及芽发育调控之间的联系。

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