Ciannamea Stefano, Kaufmann Kerstin, Frau Marta, Tonaco Isabella A Nougalli, Petersen Klaus, Nielsen Klaus K, Angenent Gerco C, Immink Richard G H
Plant Research International, Business unit Bioscience, Bornsesteeg 65, 6708 PD, Wageningen, The Netherlands.
J Exp Bot. 2006;57(13):3419-31. doi: 10.1093/jxb/erl144. Epub 2006 Sep 27.
Regulation of flowering time is best understood in the dicot model species Arabidopsis thaliana. Molecular analyses revealed that genes belonging to the MADS box transcription factor family play pivotal regulatory roles in both the vernalization- and photoperiod-regulated flowering pathways. Here the analysis of three APETALA1 (AP1)-like MADS box proteins (LpMADS1-3) and a SHORT VEGETATIVE PHASE (SVP)-like MADS box protein (LpMADS10) from the monocot perennial grass species Lolium perenne is reported. Features of these MADS box proteins were studied by yeast two-hybrid assays. Protein-protein interactions among the Lolium proteins and with members of the Arabidopsis MADS box family have been studied. The expression pattern for LpMADS1 and the protein properties suggest that not the Arabidopsis AP1 gene, but the SUPPRESSOR OF CONSTANS1 (SOC1) gene, is the functional equivalent of LpMADS1. To obtain insight into the molecular mechanism underlying the regulation of LpMADS1 gene expression in vernalization-sensitive and -insensitive Lolium accessions, the upstream sequences of this gene from a winter and spring growth habit variety were compared with respect to MADS box protein binding. In both promoter elements, a putative MADS box transcription factor-binding site (CArG-box) is present; however, the putative spring promoter has a short deletion adjacent to this DNA motif. Experiments using yeast one-hybrid and gel retardation assays demonstrated that the promoter element is bound by an LpMADS1-LpMADS10 higher order protein complex and, furthermore, that this complex binds efficiently to the promoter element from the winter variety only. This strongly supports the model that LpMADS1 together with LpMADS10 controls the vernalization-dependent regulation of the LpMADS1 gene, which is part of the vernalization-induced flowering process in Lolium.
开花时间的调控在双子叶模式植物拟南芥中得到了最好的理解。分子分析表明,属于MADS盒转录因子家族的基因在春化和光周期调控的开花途径中都起着关键的调节作用。本文报道了对单子叶多年生禾本科植物黑麦草中三种类APETALA1(AP1)的MADS盒蛋白(LpMADS1 - 3)和一种类SHORT VEGETATIVE PHASE(SVP)的MADS盒蛋白(LpMADS10)的分析。通过酵母双杂交试验研究了这些MADS盒蛋白的特性。研究了黑麦草蛋白之间以及与拟南芥MADS盒家族成员之间的蛋白质 - 蛋白质相互作用。LpMADS1的表达模式和蛋白质特性表明,与LpMADS1功能等同的不是拟南芥的AP1基因,而是CONSTANS1的抑制因子(SOC1)基因。为了深入了解春化敏感和不敏感的黑麦草种质中LpMADS1基因表达调控的分子机制,比较了来自冬性和春性生长习性品种的该基因上游序列与MADS盒蛋白结合情况。在两个启动子元件中,都存在一个假定的MADS盒转录因子结合位点(CArG - box);然而,假定的春性启动子在该DNA基序附近有一个短缺失。使用酵母单杂交和凝胶阻滞试验的实验表明,启动子元件被LpMADS1 - LpMADS10高阶蛋白复合物结合,此外,该复合物仅能有效地结合冬性品种的启动子元件。这有力地支持了这样一个模型,即LpMADS1与LpMADS10一起控制LpMADS1基因的春化依赖性调控,这是黑麦草春化诱导开花过程的一部分。