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Arabidopsis thaliana VOZ (Vascular plant One-Zinc finger) transcription factors are required for proper regulation of flowering time

机译:拟南芥拟南芥VOZ(血管植物一锌指)转录因子是适当调节开花时间所必需的

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Transition to flowering in plants is tightly controlled by environmental cues, which regulate the photoperiod and vernalization pathways, and endogenous signals, which mediate the autonomous and gibberellin pathways. In this work, we investigated the role of two Zn2+-finger transcription factors, the paralogues AtVOZ1 and AtVOZ2, in Arabidopsis thaliana flowering. Single atvoz1-1 and atvoz2-1 mutants showed no significant phenotypes as compared to wild type. However, atvoz1-1 atvoz2-1 double mutant plants exhibited several phenotypes characteristic of flowering-time mutants. The double mutant displayed a severe delay in flowering, together with additional pleiotropic phenotypes. Late flowering correlated with elevated expression of FLOWERING LOCUS C ( FLC ), which encodes a potent floral repressor, and decreased expression of its target, the floral promoter FD . Vernalization rescued delayed flowering of atvoz1-1 atvoz2-1 and reversed elevated FLC levels. Accumulation of FLC transcripts in atvoz1-1 atvoz2-1 correlated with increased expression of several FLC activators, including components of the PAF1 and SWR1 chromatin-modifying complexes. Additionally, AtVOZs were shown to bind the promoter of MOS3/SAR3 and directly regulate expression of this nuclear pore protein, which is known to participate in the regulation of flowering time, suggesting that AtVOZs exert at least some of their flowering regulation by influencing the nuclear pore function. Complementation of atvoz1-1 atvoz2-1 with AtVOZ2 reversed all double mutant phenotypes, confirming that the observed morphological and molecular changes arise from the absence of functional AtVOZ proteins, and validating the functional redundancy between AtVOZ1 and AtVOZ2.
机译:植物向花期的转化受到环境信号的严格控制,环境信号调节光周期和春化途径,以及内源信号,介导自主和赤霉素途径。在这项工作中,我们调查了拟南芥开花中两个Zn2 +手指转录因子旁系同源物AtVOZ1和AtVOZ2的作用。与野生型相比,单个atvoz1-1和atvoz2-1突变体未显示明显的表型。但是,atvoz1-1 atvoz2-1双重突变植物表现出几种开花期突变体的表型。双重突变体显示出严重的开花延迟,以及其他多效性表型。晚期开花与FLOWERING LOCUS C(FLC)的表达升高相关,后者编码强效的花卉阻遏物,并降低其靶标即花卉启动子FD的表达。春化挽救了atvoz1-1 atvoz2-1的延迟开花,并逆转了FLC升高的水平。 atvoz1-1 atvoz2-1中FLC转录物的积累与几种FLC激活剂(包括PAF1和SWR1染色质修饰复合物的成分)的表达增加相关。此外,AtVOZs结合MOS3 / SAR3的启动子并直接调节该核孔蛋白的表达,已知该蛋白参与开花时间的调节,这表明AtVOZs通过影响核蛋白而发挥了至少一些开花调节作用。毛孔功能。 Atvoz1-1与atvoz2-1的互补补充逆转了所有双重突变表型,证实观察到的形态和分子变化是由于功能性AtVOZ蛋白的缺失而引起的,并验证了AtVOZ1和AtVOZ2之间的功能冗余。

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