Liu X L, Covington M F, Fankhauser C, Chory J, Wagner D R
Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403, USA.
Plant Cell. 2001 Jun;13(6):1293-304. doi: 10.1105/tpc.13.6.1293.
Many aspects of plant development are regulated by photoreceptor function and the circadian clock. Loss-of-function mutations in the Arabidopsis EARLY FLOWERING 3 (ELF3) and PHYTOCHROME B (PHYB) genes cause early flowering and influence the activity of circadian clock-regulated processes. We demonstrate here that the relative abundance of the ELF3 protein, which is a novel nucleus-localized protein, displays circadian regulation that follows the pattern of circadian accumulation of ELF3 transcript. Furthermore, the ELF3 protein interacts with PHYB in the yeast two-hybrid assay and in vitro. Genetic analyses show that ELF3 requires PHYB function in early morphogenesis but not for the regulation of flowering time. This suggests that ELF3 is a component of a PHYB signaling complex that controls early events in plant development but that ELF3 and PHYB control flowering via independent signal transduction pathways.
植物发育的许多方面都受光受体功能和生物钟的调控。拟南芥早花3(ELF3)基因和光敏色素B(PHYB)基因的功能缺失突变会导致早花,并影响生物钟调控过程的活性。我们在此证明,ELF3蛋白(一种新的定位于细胞核的蛋白)的相对丰度呈现出昼夜节律调控,其模式与ELF3转录本的昼夜积累模式一致。此外,在酵母双杂交试验和体外实验中,ELF3蛋白与PHYB相互作用。遗传分析表明,ELF3在早期形态发生中需要PHYB的功能,但对开花时间的调控并非如此。这表明ELF3是PHYB信号复合体的一个组成部分,该复合体控制植物发育的早期事件,但ELF3和PHYB通过独立的信号转导途径控制开花。