Department of Plant Systems Biology, Center for Life and Food Sciences, Technische Universtität München, 85354 Freising, Germany.
Plant Physiol. 2013 Aug;162(4):1992-2004. doi: 10.1104/pp.113.219238. Epub 2013 Jun 5.
The paralogous and functionally redundant GATA transcription factors GNC (for GATA, NITRATE-INDUCIBLE, CARBON-METABOLISM INVOLVED) and GNL/CGA1 (for GNC-LIKE/CYTOKININ-RESPONSIVE GATA FACTOR1) from Arabidopsis (Arabidopsis thaliana) promote greening and repress flowering downstream from the phytohormone gibberellin. The target genes of GNC and GNL with regard to flowering time control have not been identified as yet. Here, we show by genetic and molecular analysis that the two GATA factors act upstream from the flowering time regulator SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 (SOC1) to directly repress SOC1 expression and thereby repress flowering. Interestingly, this analysis inversely also reveals that the MADS box transcription factor SOC1 directly represses GNC and GNL expression to control cold tolerance and greening, two further physiological processes that are under the control of SOC1. In summary, these findings support the case of a cross-repressive interaction between the GATA factors GNC and GNL and the MADS box transcription factor SOC1 in flowering time control on the one side and greening and cold tolerance on the other that may be governed by the various signaling inputs that are integrated at the level of SOC1 expression.
拟南芥(Arabidopsis thaliana)中的同源且功能冗余的 GATA 转录因子 GNC(代表 GATA、硝酸盐诱导、碳代谢参与)和 GNL/CGA1(代表 GNC 样/细胞分裂素响应 GATA 因子 1)可促进植物的绿叶形成并抑制开花,其作用机制是位于植物激素赤霉素下游。目前,尚未鉴定出 GNC 和 GNL 调控开花时间的靶基因。本研究通过遗传和分子分析发现,这两个 GATA 因子位于开花时间调控因子 SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1(SOC1)的上游,可直接抑制 SOC1 的表达,从而抑制开花。有趣的是,通过该分析还发现,MADS 框转录因子 SOC1 可直接抑制 GNC 和 GNL 的表达,以控制冷胁迫耐受和绿叶形成,这两个过程也受 SOC1 的调控。综上,这些发现支持 GATA 因子 GNC 和 GNL 与 MADS 框转录因子 SOC1 之间在开花时间控制和绿叶形成及冷胁迫耐受方面存在交叉抑制互作,这种互作可能是由 SOC1 表达水平整合的各种信号输入所决定的。