Dipartimento di Produzione Vegetale, University of Milan, 20133 Milan, Italy.
Plant Physiol. 2010 Dec;154(4):1616-32. doi: 10.1104/pp.110.161984. Epub 2010 Oct 4.
In the barley (Hordeum vulgare) Hooded (Kap) mutant, the duplication of a 305-bp intron sequence leads to the overexpression of the Barley knox3 (Bkn3) gene, resulting in the development of an extra flower in the spikelet. We used a one-hybrid screen to identify four proteins that bind the intron-located regulatory element (Kap intron-binding proteins). Three of these, Barley Ethylene Response Factor1 (BERF1), Barley Ethylene Insensitive Like1 (BEIL1), and Barley Growth Regulating Factor1 (BGRF1), were characterized and their in vitro DNA-binding capacities verified. Given the homology of BERF1 and BEIL1 to ethylene signaling proteins, we investigated if these factors might play a dual role in intron-mediated regulation and ethylene response. In transgenic rice (Oryza sativa), constitutive expression of the corresponding genes produced phenotypic alterations consistent with perturbations in ethylene levels and variations in the expression of a key gene of ethylene biosynthesis. In barley, ethylene treatment results in partial suppression of the Kap phenotype, accompanied by up-regulation of BERF1 and BEIL1 expression, followed by down-regulation of Bkn3 mRNA levels. In rice protoplasts, BEIL1 activates the expression of a reporter gene driven by the 305-bp intron element, while BERF1 can counteract this activation. Thus, BEIL1 and BERF1, likely in association with other Kap intron-binding proteins, should mediate the fine-tuning of Bkn3 expression by ethylene. We propose a hypothesis for the cross talk between the KNOX and ethylene pathways.
在大麦(Hordeum vulgare) Hooded(Kap)突变体中,305bp 内含子序列的重复导致 Barley knox3(Bkn3)基因的过表达,从而导致小穗中额外的花的发育。我们使用单杂交筛选来鉴定四个结合内含子定位调控元件(Kap 内含子结合蛋白)的蛋白质。其中三个,大麦乙烯响应因子 1(BERF1)、大麦乙烯不敏感样 1(BEIL1)和大麦生长调节因子 1(BGRF1),被表征并验证了它们在体外的 DNA 结合能力。鉴于 BERF1 和 BEIL1 与乙烯信号蛋白的同源性,我们研究了这些因子是否可能在内含子介导的调节和乙烯反应中发挥双重作用。在转基因水稻(Oryza sativa)中,相应基因的组成型表达产生了与乙烯水平变化和乙烯生物合成关键基因表达变化一致的表型改变。在大麦中,乙烯处理导致 Kap 表型部分抑制,同时 BERF1 和 BEIL1 的表达上调,随后 Bkn3 mRNA 水平下调。在水稻原生质体中,BEIL1 激活由 305bp 内含子元件驱动的报告基因的表达,而 BERF1 可以抵消这种激活。因此,BEIL1 和 BERF1,可能与其他 Kap 内含子结合蛋白一起,应该通过乙烯来调节 Bkn3 表达的微调。我们提出了 KNOX 和乙烯途径之间交叉对话的假设。