Allen Trudie, Koustenis Athanasios, Theodorou George, Somers David E, Kay Steve A, Whitelam Garry C, Devlin Paul F
Department of Biology, University of Leicester, Leicester LE1 7RH, United Kingdom.
Plant Cell. 2006 Oct;18(10):2506-16. doi: 10.1105/tpc.105.037358. Epub 2006 Sep 29.
Circadian gating of light signaling limits the timing of maximum responsiveness to light to specific times of day. The fhy3 (for far-red elongated hypocotyl3) mutant of Arabidopsis thaliana is involved in independently gating signaling from a group of photoreceptors to an individual response. fhy3 shows an enhanced response to red light during seedling deetiolation. Analysis of two independent fhy3 alleles links enhanced inhibition of hypocotyl elongation in response to red light with an arrhythmic pattern of hypocotyl elongation. Both alleles also show disrupted rhythmicity of central-clock and clock-output gene expression in constant red light. fhy3 exhibits aberrant phase advances under red light pulses during the subjective day. Release-from-light experiments demonstrate clock disruption in fhy3 during the early part of the subjective day in constant red light, suggesting that FHY3 is important in gating red light signaling for clock resetting. The FHY3 gating function appears crucial in the early part of the day for the maintenance of rhythmicity under these conditions. However, unlike previously described Arabidopsis gating mutants that gate all light signaling, gating of direct red light-induced gene expression in fhy3 is unaffected. FHY3 appears to be a novel gating factor, specifically in gating red light signaling to the clock during daytime.
光信号的昼夜节律门控将对光的最大反应时间限制在一天中的特定时间。拟南芥的fhy3(远红光伸长下胚轴3)突变体参与将一组光感受器的信号独立地门控到单个反应中。fhy3在幼苗脱黄化过程中对红光的反应增强。对两个独立的fhy3等位基因的分析表明,对红光响应的下胚轴伸长的增强抑制与下胚轴伸长的无节律模式相关。两个等位基因在恒定红光下也表现出中央时钟和时钟输出基因表达的节律紊乱。fhy3在主观日的红光脉冲下表现出异常的相位提前。释放光照实验表明,在恒定红光下的主观日早期,fhy3的时钟被破坏,这表明FHY3在门控红光信号以重置时钟方面很重要。在这些条件下,FHY3的门控功能在一天的早期对于维持节律性似乎至关重要。然而,与先前描述的对所有光信号进行门控的拟南芥门控突变体不同,fhy3中直接红光诱导的基因表达的门控不受影响。FHY3似乎是一种新型的门控因子,特别是在白天将门控红光信号传递给时钟方面。