Graduate School of Biostudies, Kyoto University, Kyoto 606-8502, Japan.
Plant Cell. 2012 Aug;24(8):3248-63. doi: 10.1105/tpc.112.101915. Epub 2012 Aug 17.
The timing of the transition to flowering in plants is regulated by various environmental factors, including daylength and light quality. Although the red/far-red photoreceptor phytochrome B (phyB) represses flowering by indirectly regulating the expression of a key flowering regulator, FLOWERING LOCUS T (FT), the mechanism of phyB signaling for flowering is largely unknown. Here, we identified two Arabidopsis thaliana genes, VASCULAR PLANT ONE-ZINC FINGER1 (VOZ1) and VOZ2, which are highly conserved throughout land plant evolution, as phyB-interacting factors. voz1 voz2 double mutants, but neither single mutant, showed a late-flowering phenotype under long-day conditions, which indicated that VOZ1 and VOZ2 redundantly promote flowering. voz1 voz2 mutations suppressed the early-flowering phenotype of the phyB mutant, and FT expression was repressed in the voz1 voz2 mutant. Green fluorescent protein-VOZ2 signal was observed in the cytoplasm, and interaction of VOZ proteins with phyB was indicated to occur in the cytoplasm under far-red light. However, VOZ2 protein modified to localize constitutively in the nucleus promoted flowering. In addition, the stability of VOZ2 proteins in the nucleus was modulated by light quality in a phytochrome-dependent manner. We propose that partial translocation of VOZ proteins from the cytoplasm to the nucleus mediates the initial step of the phyB signal transduction pathway that regulates flowering.
植物向开花转变的时间受各种环境因素的调节,包括日照长度和光质。尽管红光/远红光光受体光敏色素 B(phyB)通过间接调节关键开花调节剂 FLOWERING LOCUS T(FT)的表达来抑制开花,但 phyB 信号转导开花的机制在很大程度上尚不清楚。在这里,我们鉴定了两个拟南芥基因 VASCULAR PLANT ONE-ZINC FINGER1(VOZ1)和 VOZ2,它们在整个陆地植物进化中高度保守,是 phyB 相互作用的因子。voz1 voz2 双突变体,但不是单个突变体,在长日照条件下表现出晚花表型,这表明 VOZ1 和 VOZ2 冗余地促进开花。voz1 voz2 突变抑制了 phyB 突变体的早花表型,并且 FT 表达在 voz1 voz2 突变体中受到抑制。在细胞质中观察到绿色荧光蛋白-VOZ2 信号,并且表明在远红光下 VOZ 蛋白与 phyB 相互作用发生在细胞质中。然而,定位于核中的 CONSTITUTIVE 核定位 VOZ2 蛋白促进开花。此外,VOZ2 蛋白在核中的稳定性以依赖于光质的方式被光质调节。我们提出,VOZ 蛋白从细胞质向细胞核的部分易位介导了调节开花的 phyB 信号转导途径的初始步骤。