Plant Translational Research Laboratory, Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad, India.
Brief Funct Genomics. 2018 Jul 22;18(4):240-254. doi: 10.1093/bfgp/elz001.
Understanding the molecular basis of the gene-regulatory networks underlying agronomic traits or plant responses to abiotic/biotic stresses is very important for crop improvement. In this context, transcription factors, which either singularly or in conjugation directly control the expression of many target genes, are suitable candidates for improving agronomic traits via genetic engineering. In this regard, members of one of the largest class of plant-specific APETALA2/Ethylene Response Factor (AP2/ERF) superfamily, which is implicated in various aspects of development and plant stress adaptation responses, are considered high-value targets for crop improvement. Besides their long-known regulatory roles in mediating plant responses to abiotic stresses such as drought and submergence, the novel roles of AP2/ERFs during fruit ripening or secondary metabolites production have also recently emerged. The astounding functional plasticity of AP2/ERF members is considered to be achieved by their interplay with other regulatory networks and signalling pathways. In this review, we have integrated the recently accumulated evidence from functional genomics studies and described their newly emerged functions in plants. The key structural features of AP2/ERF proteins and the modes of their action are briefly summarized. The importance of AP2/ERFs in plant development and stress responses and a summary of the event of their successful applications in crop improvement programs are also provided. Altogether, we envisage that the synthesized information presented in this review will be useful to design effective strategies for improving agronomic traits in crop plants.
了解控制农艺性状或植物对非生物/生物胁迫反应的基因调控网络的分子基础对于作物改良非常重要。在这种情况下,转录因子可以单独或与其他因子一起直接控制许多靶基因的表达,是通过遗传工程改良农艺性状的合适候选物。在这方面,AP2/ERF 超家族是植物特有的最大类之一的成员,该家族参与发育和植物应激适应反应的各个方面,被认为是作物改良的高价值靶标。除了它们在介导植物对非生物胁迫(如干旱和淹没)反应方面的长期已知调节作用外,AP2/ERF 在果实成熟或次生代谢产物生产过程中的新作用最近也出现了。AP2/ERF 成员的惊人功能可塑性被认为是通过它们与其他调控网络和信号通路的相互作用实现的。在这篇综述中,我们整合了来自功能基因组学研究的最新累积证据,并描述了它们在植物中的新出现的功能。简要总结了 AP2/ERF 蛋白的关键结构特征及其作用模式。还提供了 AP2/ERF 在植物发育和应激反应中的重要性以及它们在作物改良计划中的成功应用的概述。总的来说,我们预计本综述中呈现的综合信息将有助于设计提高作物农艺性状的有效策略。