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The Novel MYB Protein EARLY-PHYTOCHROME-RESPONSIVE1 Is a Component of a Slave Circadian Oscillator in Arabidopsis

机译:新型MYB蛋白EARTH-PHYTOCHROME-RESPONSIVE1是拟南芥中一个奴隶昼夜节律振荡器的组成部分。

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摘要

Using fluorescent differential display, we identified, from ∼8000 displayed bands, a DNA fragment showing rapid induction in response to red light irradiation. This EARLY-PHYTOCHROME-RESPONSIVE1 gene (EPR1) encodes a novel nucleus-localized MYB protein harboring a single MYB domain that is highly similar to the circadian oscillator proteins CCA1 and LHY. EPR1 is regulated by both phytochrome A and phytochrome B, and the red-light induction of EPR1 is not inhibited by cycloheximide, demonstrating that EPR1 represents a primary phytochrome-responsive gene. Our results show that EPR1 overexpression results in enhanced far-red light–induced cotyledon opening and delayed flowering. In wild-type Arabidopsis plants grown in continuous light, the EPR1 transcript exhibits circadian rhythmicity similar to that of CCA1 and LHY. Moreover, EPR1 suppresses its own expression, suggesting that this protein is part of a regulatory feedback loop. Constitutive expression of CCA1 and LHY results in the loss of EPR1 rhythmicity, whereas increased levels of EPR1 have no effect on the central oscillator. We propose that EPR1 is a component of a slave oscillator that contributes to the refinement of output pathways, ultimately mediating the correct oscillatory behavior of target genes.
机译:使用荧光差分显示,我们从大约8000条显示带中鉴定出了响应于红光照射而显示出快速诱导作用的DNA片段。该早期植物染色体响应基因(EPR1)编码一种新的位于核内的MYB蛋白,该蛋白具有一个与昼夜节律振荡器蛋白CCA1和LHY非常相似的MYB结构域。 EPR1受到植物色素A和植物色素B的调节,并且EPR1的红光诱导不受环己酰亚胺的抑制,表明EPR1代表主要的植物色素响应基因。我们的结果表明,EPR1的过表达导致远红光诱导的子叶开放和延迟开花。在连续光照下生长的野生型拟南芥植物中,EPR1转录本的昼夜节律性与CCA1和LHY相似。此外,EPR1抑制其自身的表达,表明该蛋白是调节反馈回路的一部分。 CCA1和LHY的组成型表达导致EPR1节律性丧失,而EPR1水平升高对中央振荡器无影响。我们提出,EPR1是从属振荡器的一个组成部分,它有助于改善输出途径,最终介导目标基因的正确振荡行为。

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