Scuola Superiore Sant'Anna, Institute of Life Sciences, Plantlab, Via Guidiccioni 8/10, 56017, Pisa, Italy.
Biology Department, Università degli Studi di Pisa, Via Luca Ghini 13, 56126, Pisa, Italy.
Plant Cell Environ. 2017 Oct;40(10):2333-2346. doi: 10.1111/pce.13037. Epub 2017 Aug 30.
The Group VII Ethylene Responsive Factors (ERFs-VII) RAP2.2 and RAP2.12 have been mainly characterized with regard to their contribution as activators of fermentation in plants. However, transcriptional changes measured in conditions that stabilize these transcription factors exceed the mere activation of this biochemical pathway, implying additional roles performed by the ERF-VIIs in other processes. We evaluated gene expression in transgenic Arabidopsis lines expressing a stabilized form of RAP2.12, or hampered in ERF-VII activity, and identified genes affected by this transcriptional regulator and its homologs, including some involved in oxidative stress response, which are not universally induced under anaerobic conditions. The contribution of the ERF-VIIs in regulating this set of genes in response to chemically induced or submergence-stimulated mitochondria malfunctioning was found to depend on the plant developmental stage. A similar age-dependent mechanism also restrained ERF-VII activity upon the core-hypoxic genes, independently of the N-end rule pathway, which is accounted for the control of the anaerobic response. To conclude, this study shed new light on a dual role of ERF-VII proteins under submergence: as positive regulators of the hypoxic response and as repressors of oxidative-stress related genes, depending on the developmental stage at which plants are challenged by stress conditions.
VII 组乙烯响应因子(ERF-VII)RAP2.2 和 RAP2.12 主要以其作为植物发酵激活剂的作用特征。然而,在稳定这些转录因子的条件下测量的转录变化超出了这种生化途径的单纯激活,意味着 ERF-VII 在其他过程中发挥了额外的作用。我们评估了在表达稳定形式的 RAP2.12 或 ERF-VII 活性受阻的转基因拟南芥系中的基因表达,并鉴定了受这种转录调节剂及其同源物影响的基因,包括一些参与氧化应激反应的基因,这些基因在厌氧条件下并非普遍诱导。发现 ERF-VII 在响应化学诱导或淹没刺激的线粒体功能障碍时调节这组基因的作用取决于植物的发育阶段。一个类似的年龄依赖性机制也限制了 ERF-VII 活性,而不依赖于 N 端规则途径,该途径负责控制厌氧反应。总之,本研究揭示了 ERF-VII 蛋白在淹没条件下的双重作用:作为缺氧反应的正调节剂和作为与氧化应激相关基因的负调节剂,这取决于植物受到胁迫条件挑战的发育阶段。