Dipartimento di Agrobiologia e Agrochimica, Universita' della Tuscia, Via S. Camillo De Lellis, Viterbo 01100, Italy.
J Exp Bot. 2011 Mar;62(6):1975-90. doi: 10.1093/jxb/erq396. Epub 2010 Dec 30.
WRKY proteins are transcription factors involved in many plant processes including plant responses to pathogens. Here, the cross activity of TaWRKY78 from the monocot wheat and AtWRKY20 from the dicot Arabidopsis on the cognate promoters of the orthologous PR4-type genes wPR4e and AtHEL of wheat and Arabidopsis, respectively, was investigated. In vitro analysis showed the ability of TaWRKY78 to bind a -17/+80 region of the wPR4e promoter, containing one cis-acting W-box. Moreover, transient expression analysis performed on both TaWRKY78 and AtWRKY20 showed their ability to recognize the cognate cis-acting elements present in the wPR4e and AtHEL promoters, respectively. Finally, this paper provides evidence that both transcription factors are able to cross-regulate the orthologous PR4 genes with an efficiency slightly lower than that exerted on the cognate promoters. The observation that orthologous genes are subjected to similar transcriptional control by orthologous transcription factors demonstrates that the terminal stages of signal transduction pathways leading to defence are conserved and suggests a fundamental role of PR4 genes in plant defence. Moreover, these results corroborate the hypothesis that gene orthology imply similar gene function and that diversification between monocot and dicot has most likely occurred after the specialization of WRKY function.
WRKY 蛋白是参与许多植物过程的转录因子,包括植物对病原体的反应。在这里,研究了单子叶小麦的 TaWRKY78 和双子叶拟南芥的 AtWRKY20 对同源 PR4 型基因 wPR4e 和 AtHEL 的同源启动子的交叉活性,分别。体外分析表明 TaWRKY78 能够结合包含一个顺式作用 W-box 的 wPR4e 启动子的-17/+80 区域。此外,在 TaWRKY78 和 AtWRKY20 上进行的瞬时表达分析表明,它们能够分别识别 wPR4e 和 AtHEL 启动子中存在的同源顺式作用元件。最后,本文提供的证据表明,这两种转录因子都能够以略低于对同源启动子的效率交叉调节同源 PR4 基因。同源基因受到同源转录因子相似转录调控的观察表明,导致防御的信号转导途径的末端阶段是保守的,并表明 PR4 基因在植物防御中的基本作用。此外,这些结果证实了以下假设,即基因同源性意味着相似的基因功能,并且单子叶植物和双子叶植物之间的多样化很可能发生在 WRKY 功能专业化之后。