Max Planck Institute for Plant Breeding Research, 50829 Cologne, Germany.
Plant Cell. 2011 Sep;23(9):3230-46. doi: 10.1105/tpc.111.088195. Epub 2011 Sep 9.
Arabidopsis thaliana EARLY FLOWERING3 (ELF3) is essential for the generation of circadian rhythms. ELF3 has been proposed to restrict light signals to the oscillator through phytochrome photoreceptors, but that has not been explicitly shown. Furthermore, the genetic action of ELF3 within the clock had remained elusive. Here, we report a functional characterization of ELF3 through the analysis of the elf3-12 allele, which encodes an amino acid replacement in a conserved domain. Circadian oscillations persisted, and unlike elf3 null alleles, elf3-12 resulted in a short circadian period only under ambient light. The period shortening effect of elf3-12 was enhanced by the overexpression of phytochromes phyA and phyB. We found that elf3-12 was only modestly perturbed in resetting of the oscillator and in gating light-regulated gene expression. Furthermore, elf3-12 essentially displayed wild-type development. We identified targets of ELF3 transcriptional repression in the oscillator, highlighting the action at the morning gene PSEUDO-RESPONSE REGULATOR9. Taken together, we identified two separable roles for ELF3, one affecting the circadian network and the other affecting light input to the oscillator. This is consistent with a dual function of ELF3 as both an integrator of phytochrome signals and a repressor component of the core oscillator.
拟南芥 EARLY FLOWERING3(ELF3)对于生物钟节律的产生是必不可少的。ELF3 被提议通过光敏色素光受体将光信号限制在振荡器中,但这尚未得到明确证明。此外,ELF3 在时钟内的遗传作用仍然难以捉摸。在这里,我们通过分析 elf3-12 等位基因对 ELF3 的功能进行了表征,该等位基因编码一个保守结构域中的氨基酸替换。生物钟的昼夜节律仍然存在,与 elf3 缺失等位基因不同,elf3-12 仅在环境光下导致短昼夜周期。phyA 和 phyB 过表达增强了 elf3-12 的短周期效应。我们发现 elf3-12 在振荡器的重置和光调控基因表达的门控方面仅受到适度干扰。此外,elf3-12 基本上表现出野生型发育。我们鉴定了振荡器中 ELF3 转录抑制的靶标,突出了 PSEUDO-RESPONSE REGULATOR9 这一晨基因的作用。总之,我们确定了 ELF3 的两个可分离作用,一个作用于生物钟网络,另一个作用于光输入到振荡器。这与 ELF3 作为光敏色素信号的整合器和核心振荡器的抑制组件的双重功能一致。