Fujita Yasunari, Fujita Miki, Satoh Rie, Maruyama Kyonoshin, Parvez Mohammad M, Seki Motoaki, Hiratsu Keiichiro, Ohme-Takagi Masaru, Shinozaki Kazuo, Yamaguchi-Shinozaki Kazuko
Biological Resources Division, Japan International Research Center for Agricultural Sciences, Tsukuba, Ibaraki.
Plant Cell. 2005 Dec;17(12):3470-88. doi: 10.1105/tpc.105.035659. Epub 2005 Nov 11.
ABSCISIC ACID-RESPONSIVE ELEMENT BINDING PROTEIN1 (AREB1) (i.e., ABF2) is a basic domain/leucine zipper transcription factor that binds to the abscisic acid (ABA)-responsive element (ABRE) motif in the promoter region of ABA-inducible genes. Here, we show that expression of the intact AREB1 gene on its own is insufficient to lead to expression of downstream genes under normal growth conditions. To overcome the masked transactivation activity of AREB1, we created an activated form of AREB1 (AREB1DeltaQT). AREB1DeltaQT-overexpressing plants showed ABA hypersensitivity and enhanced drought tolerance, and eight genes with two or more ABRE motifs in the promoter regions in two groups were greatly upregulated: late embryogenesis abundant class genes and ABA- and drought stress-inducible regulatory genes. By contrast, an areb1 null mutant and a dominant loss-of-function mutant of AREB1 (AREB1:RD) with a repression domain exhibited ABA insensitivity. Furthermore, AREB1:RD plants displayed reduced survival under dehydration, and three of the eight greatly upregulated genes were downregulated, including genes for linker histone H1 and AAA ATPase, which govern gene expression and multiple cellular activities through protein folding, respectively. Thus, these data suggest that AREB1 regulates novel ABRE-dependent ABA signaling that enhances drought tolerance in vegetative tissues.
脱落酸应答元件结合蛋白1(AREB1)(即ABF2)是一种碱性结构域/亮氨酸拉链转录因子,可与脱落酸(ABA)诱导型基因启动子区域中的脱落酸应答元件(ABRE)基序结合。在此,我们表明在正常生长条件下,完整的AREB1基因自身的表达不足以导致下游基因的表达。为了克服AREB1被掩盖的反式激活活性,我们构建了一种激活形式的AREB1(AREB1DeltaQT)。过表达AREB1DeltaQT的植物表现出ABA超敏性并增强了耐旱性,并且两组启动子区域中具有两个或更多ABRE基序的八个基因被大幅上调:晚期胚胎发生丰富类基因以及ABA和干旱胁迫诱导型调控基因。相比之下,AREB1的缺失突变体和具有抑制结构域的显性功能丧失突变体(AREB1:RD)表现出ABA不敏感性。此外,AREB1:RD植物在脱水条件下的存活率降低,八个大幅上调的基因中有三个被下调,包括连接组蛋白H1和AAA ATP酶的基因,它们分别通过蛋白质折叠来调控基因表达和多种细胞活动。因此,这些数据表明AREB1调节新的ABRE依赖性ABA信号传导,从而增强营养组织中的耐旱性。