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The TIME FOR COFFEE Gene Maintains the Amplitude and Timing of Arabidopsis Circadian Clocks

机译:TIME FOR COFFEE基因维持拟南芥生物钟的振幅和时间

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摘要

Plants synchronize developmental and metabolic processes with the earth's 24-h rotation through the integration of circadian rhythms and responses to light. We characterize the time for coffee (tic) mutant that disrupts circadian gating, photoperiodism, and multiple circadian rhythms, with differential effects among rhythms. TIC is distinct in physiological functions and genetic map position from other rhythm mutants and their homologous loci. Detailed rhythm analysis shows that the chlorophyll a/b-binding protein gene expression rhythm requires TIC function in the mid to late subjective night, when human activity may require coffee, in contrast to the function of EARLY-FLOWERING3 (ELF3) in the late day to early night. tic mutants misexpress genes that are thought to be critical for circadian timing, consistent with our functional analysis. Thus, we identify TIC as a regulator of the clock gene circuit. In contrast to tic and elf3 single mutants, tic elf3 double mutants are completely arrhythmic. Even the robust circadian clock of plants cannot function with defects at two different phases.
机译:植物通过昼夜节律和对光的反应,使发育和代谢过程与地球24小时旋转同步。我们表征了咖啡(tic)突变体的时间,该突变体破坏了昼夜节律,光周期和多种昼夜节律,在节律之间存在差异。 TIC的生理功能和遗传图谱位置与其他节律突变体及其同源基因座不同。详细的节奏分析显示,叶绿素a / b结合蛋白基因表达节奏在主观中午至晚(需要人类活动可能需要喝咖啡的情况下)需要TIC功能,而在后期则需要EARLY-FLOWERING3(ELF3)到深夜。 tic突变体会误表达对昼夜节律至关重要的基因,这与我们的功能分析一致。因此,我们确定TIC为时钟基因电路的调节器。与tic和elf3单突变体相反,tic elf3双突变体是完全心律不齐的。即使是健壮的植物生物钟也不能在两个不同阶段出现缺陷。

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