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LUX ARRHYTHMO encodes a Myb domain protein essential for circadian rhythms

机译:LUX节律编码昼夜节律必不可少的Myb结构域蛋白

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In higher plants, the circadian clock orchestrates fundamental processes such as light signaling and the transition to flowering. We isolated mutants of the circadian clock from an Arabidopsis thaliana mutagenized reporter line by screening for seedlings with long hypocotyl phenotypes and subsequently assaying for abnormal clock-regulated CAB2::LUC expression. This screen identified five mutant alleles of a clock gene, LUX ARRHYTHMO (LUX), that significantly affect amplitude and robustness of rhythms in both constant white light and dark conditions. In addition, the transition from vegetative to floral development is accelerated and hypocotyl elongation is accentuated in these mutants under light:dark cycles. We genetically mapped the mutations by bulk segregant analysis with high-density oligonucleotide array genotyping to a small putative Myb transcription factor related to other clock components and response regulators in Arabidopsis. The negative arm of the Arabidopsis circadian clock, CIRCADIAN CLOCK ASSOCIATED (CCA1) and LATE ELONGATED HYPOCOTYL (LHY), is repressed in the lux mutants, whereas TIMING OF CAB2 EXPRESSION (TOC1) is activated. We demonstrate that CCA1 and LHY bind to the evening element motif in the LUX promoter, which strongly suggests that these proteins repress LUX expression, as they do TOC1. The data are also consistent with LUX being necessary for activation of CCA 1 and LHY expression.
机译:在高等植物中,生物钟能协调基本过程,例如光信号传递和向开花的过渡。我们通过筛选具有长下胚轴表型的幼苗并随后检测异常的时钟调节的CAB2 :: LUC,从拟南芥诱变的报道株中分离了昼夜节律的突变体。该筛选确定了时钟基因LUX ARRHYTHMO(LUX)的五个突变等位基因,这些等位基因在恒定的白光和黑暗条件下均显着影响节奏的幅度和鲁棒性。此外,在光暗循环下,这些突变体从营养到花的发育加速,下胚轴伸长加剧。我们通过使用高密度寡核苷酸阵列基因分型的大规模分离子分析,对与其他拟南芥中其他时钟成分和响应调节剂有关的小推定Myb转录因子进行基因分型,对突变进行了遗传定位。在lux突变体中,拟南芥生物钟的负臂CIRCADIAN CLOCK ASSOCIATED(CCA1)和LAONGETED HYPOCOTYL(LHY)受阻,而TIMING CAB2 EXPRESSION(TOC1)被激活。我们证明CCA1和LHY绑定到LUX启动子中的傍晚元素图案,强烈暗示这些蛋白质像TOC1一样抑制LUX表达。数据也与激活CCA 1和LHY表达所必需的LUX一致。

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