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The ELF3 zeitnehmer regulates light signalling to the circadian clock.

机译:ELF3 zeitnehmer调节向生物钟发出的光信号。

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The circadian system regulates 24-hour biological rhythms and seasonal rhythms, such as flowering. Long-day flowering plants like Arabidopsis thaliana, measure day length with a rhythm that is not reset at lights-off, whereas short-day plants measure night length on the basis of circadian rhythm of light sensitivity that is set from dusk, early flowering 3 (elf3) mutants of Arabidopsis are aphotoperiodic and exhibit light-conditional arrhythmias. Here we show that the elf3-7 mutant retains oscillator function in the light but blunts circadian gating of CAB gene activation, indicating that deregulated phototransduction may mask rhythmicity. Furthermore, elf3 mutations confer the resetting pattern of short-day photoperiodism, indicating that gating of phototransduction may control resetting. Temperature entrainment can bypass the requirement for normal ELF3 function for the oscillator and partially restore rhythmic CAB expression. Therefore, ELF3 specifically affects light input to the oscillator, similar to its function in gating CAB activation, allowing oscillator progression past a light-sensitive phase in the subjective evening. ELF3 provides experimental demonstration of the zeitnehmer ('time-taker') concept.
机译:昼夜节律系统调节24小时的生物节律和季节性节律,例如开花。像拟南芥(Arabidopsis thaliana)这样的长日开花植物,用熄灯时不会重置的节奏来测量日长,而短日植物则根据从黄昏开始开花的光敏感度的昼夜节律来测量夜晚的长度3 (elf3)拟南芥的突变体是光周期的,并表现出光条件性心律失常。在这里,我们显示elf3-7突变体在光中保留了振荡器功能,但钝化了CAB基因激活的昼夜节律门控,表明光调节失调可能掩盖了节律。此外,elf3突变赋予短日光周期异常的复位模式,表明光转导的门控可以控制复位。温度夹带可以绕过振荡器对正常ELF3功能的要求,并部分恢复有节奏的CAB表达。因此,ELF3特别影响输入到振荡器的光,类似于其在门控CAB激活中的功能,从而允许振荡器在主观夜晚经过光敏相位。 ELF3提供了Zeitnehmer(“计时”)概念的实验演示。

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