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小麦PKABA1互作因子TaABF1在经轰击的糊粉层细胞中介导脱落酸抑制和脱落酸诱导的基因表达。

The wheat PKABA1-interacting factor TaABF1 mediates both abscisic acid-suppressed and abscisic acid-induced gene expression in bombarded aleurone cells.

作者信息

Johnson Russell R, Shin Margaret, Shen Jeff Q

机构信息

Department of Biology, Colby College, Waterville, ME 04901, USA.

出版信息

Plant Mol Biol. 2008 Sep;68(1-2):93-103. doi: 10.1007/s11103-008-9354-0. Epub 2008 May 31.

Abstract

To investigate the crosstalk of abscisic acid (ABA) and gibberellin (GA) signaling in wheat (Triticum aestivum), we have focused on the transcription factor TaABF1. TaABF1 (a member of the ABA response element binding factor family) physically interacts with PKABA1, a signaling component in the ABA-suppression of GA-induced gene expression in cereal grains. Constitutive expression of TaABF1 in aleurone cells of imbibing grains completely eliminated GA-induced expression from the Amy32b promoter. In addition to its effect on Amy32b, TaABF1 strongly stimulated expression from the ABA-inducible HVA1 and HVA22 promoters. Overexpression of TaABF1 fully substituted for exogenous ABA in the induction of these two promoters. The introduction of a construct directing RNA inhibition (RNAi) of TaABF1 did not prevent either ABA-mediated or PKABA1-mediated suppression of Amy32b expression. Similarly, the RNAi construct did not prevent ABA-induction of HVA1. These results suggest that another protein may act redundantly with TaABF1 during cereal imbibition. Although TaABF1 mRNA was downregulated during imbibition of afterripened grains, transcript levels were not significantly altered by exogenous GA or ABA, suggesting that upregulation of TaABF1 at the mRNA level is not required for its role in ABA signaling. We propose a model in which TaABF1 is involved in two separate branches of ABA signaling. In this model, TaABF1 acts downstream of PKABA1 in ABA-suppression of GA-induced gene expression, and participates (independently of PKABA1) in the stimulation of ABA-induced genes.

摘要

为了研究小麦(Triticum aestivum)中脱落酸(ABA)和赤霉素(GA)信号通路的相互作用,我们重点关注了转录因子TaABF1。TaABF1(ABA反应元件结合因子家族的一员)与PKABA1发生物理相互作用,PKABA1是谷物中ABA抑制GA诱导基因表达信号通路中的一个组分。TaABF1在吸胀种子糊粉层细胞中的组成型表达完全消除了Amy32b启动子的GA诱导表达。除了对Amy32b的影响外,TaABF1还强烈刺激了ABA诱导型HVA1和HVA22启动子的表达。TaABF1的过表达完全替代了外源ABA对这两个启动子的诱导作用。导入针对TaABF1的RNA抑制(RNAi)构建体并没有阻止ABA介导的或PKABA1介导的对Amy32b表达的抑制作用。同样,RNAi构建体也没有阻止ABA对HVA1的诱导作用。这些结果表明,在谷物吸胀过程中可能有另一种蛋白质与TaABF1发挥冗余作用。虽然TaABF1 mRNA在后熟种子吸胀过程中被下调,但转录水平并未因外源GA或ABA而发生显著改变,这表明TaABF1在ABA信号通路中的作用并不需要其mRNA水平的上调。我们提出了一个模型,其中TaABF1参与了ABA信号通路的两个独立分支。在这个模型中,TaABF1在ABA抑制GA诱导基因表达过程中位于PKABA1的下游,并(独立于PKABA1)参与刺激ABA诱导基因的表达。

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