Yao Tao, Zhang Jin, Xie Meng, Yuan Guoliang, Tschaplinski Timothy J, Muchero Wellington, Chen Jin-Gui
Biosciences Division, Oak Ridge National Laboratory, Oak Ridge, TN, United States.
Center for Bioenergy Innovation, Oak Ridge National Laboratory, Oak Ridge, TN, United States.
Front Plant Sci. 2021 Jan 8;11:572137. doi: 10.3389/fpls.2020.572137. eCollection 2020.
Within the context of global warming, long-living plants such as perennial woody species endure adverse conditions. Among all of the abiotic stresses, drought stress is one of the most detrimental stresses that inhibit plant growth and productivity. Plants have evolved multiple mechanisms to respond to drought stress, among which transcriptional regulation is one of the key mechanisms. In this review, we summarize recent progress on the regulation of drought response by transcription factor (TF) families, which include abscisic acid (ABA)-dependent ABA-responsive element/ABRE-binding factors (ABRE/ABF), WRKY, and Nuclear Factor Y families, as well as ABA-independent AP2/ERF and NAC families, in the model plant . We also review what is known in woody species, particularly , due to its importance and relevance in economic and ecological processes. We discuss opportunities for a deeper understanding of drought response in woody plants with the development of high-throughput omics analyses and advanced genome editing techniques.
在全球变暖的背景下,多年生木本植物等长寿植物会面临不利条件。在所有非生物胁迫中,干旱胁迫是抑制植物生长和生产力的最有害胁迫之一。植物已经进化出多种机制来应对干旱胁迫,其中转录调控是关键机制之一。在本综述中,我们总结了转录因子(TF)家族在调控干旱响应方面的最新进展,这些家族包括依赖脱落酸(ABA)的ABA响应元件/ABRE结合因子(ABRE/ABF)、WRKY和核因子Y家族,以及不依赖ABA的AP2/ERF和NAC家族,以模式植物为例。我们还综述了木本植物中的相关研究,特别是[具体木本植物名称],因为它在经济和生态过程中具有重要性和相关性。我们讨论了随着高通量组学分析和先进的基因组编辑技术的发展,更深入了解木本植物干旱响应的机会。