Department of Life Science, Pohang University of Science and Technology (POSTECH), Pohang 790-784, Korea.
Plant J. 2010 Jul 1;63(1):18-30. doi: 10.1111/j.1365-313X.2010.04226.x. Epub 2010 Apr 16.
Plants recognize environmental factors to determine flowering time. CONSTANS (CO) plays a central role in the photoperiod flowering pathway of Arabidopsis, and CO protein stability is modulated by photoreceptors. In rice, Hd1, an ortholog of CO, acts as a flowering promoter, and phytochromes repress Hd1 expression. Here, we investigated the functioning of OsCOL4, a member of the CONSTANS-like (COL) family in rice. OsCOL4 null mutants flowered early under short or long days. In contrast, OsCOL4 activation-tagging mutants (OsCOL4-D) flowered late in either environment. Transcripts of Ehd1, Hd3a, and RFT1 were increased in the oscol4 mutants, but reduced in the OsCOL4-D mutants. This finding indicates that OsCOL4 is a constitutive repressor functioning upstream of Ehd1. By comparison, levels of Hd1, OsID1, OsMADS50, OsMADS51, and OsMADS56 transcripts were not significantly changed in oscol4 or OsCOL4-D, suggesting that OsCOL4 functions independently from previously reported flowering pathways. In osphyB mutants, OsCOL4 expression was decreased and osphyB oscol4 double mutants flowered at the same time as the osphyB single mutants, indicating OsCOL4 functions downstream of OsphyB. We also present evidence for two independent pathways through which OsPhyB controls flowering time. These pathways are: (i) night break-sensitive, which does not need OsCOL4; and (ii) night break-insensitive, in which OsCOL4 functions between OsphyB and Ehd1.
植物通过识别环境因素来决定开花时间。CONSTANS(CO)在拟南芥的光周期开花途径中起着核心作用,而 CO 蛋白的稳定性受光受体调节。在水稻中,CO 的同源物 Hd1 作为开花促进因子,而光敏色素抑制 Hd1 的表达。在这里,我们研究了水稻 CONSTANS 样(COL)家族成员 OsCOL4 的功能。OsCOL4 缺失突变体在短日或长日下都提前开花。相比之下,OsCOL4 激活标签突变体(OsCOL4-D)在这两种环境下都延迟开花。在 oscol4 突变体中,Ehd1、Hd3a 和 RFT1 的转录本增加,但在 OsCOL4-D 突变体中减少。这一发现表明 OsCOL4 是一个组成型的抑制剂,在上游作用于 Ehd1。相比之下,在 oscol4 或 OsCOL4-D 中,Hd1、OsID1、OsMADS50、OsMADS51 和 OsMADS56 的转录本水平没有显著变化,这表明 OsCOL4 独立于先前报道的开花途径发挥作用。在 osphyB 突变体中,OsCOL4 的表达减少,而 osphyB oscol4 双突变体与 osphyB 单突变体同时开花,表明 OsCOL4 位于 OsphyB 的下游。我们还提供了证据表明,OsPhyB 通过两条独立的途径来控制开花时间。这两条途径是:(i)不需要 OsCOL4 的夜间中断敏感途径;和(ii)夜间中断不敏感途径,其中 OsCOL4 在 OsphyB 和 Ehd1 之间发挥作用。