National Key Laboratory for Rice Biology, Institute of Biotechnology, Zhejiang University, Hangzhou 310058, P.R. China.
Sci Rep. 2016 Jul 22;6:30251. doi: 10.1038/srep30251.
ERF transcription factors play critical roles in plant immune responses. Here, we report the function of AtERF014, a nucleus-localized transcriptional activator, in Arabidopsis immunity. Expression of AtERF014 was induced by Pseudomonas syringae pv. tomato (Pst) and Botrytis cinerea (Bc). AtERF014-overexpressing (OE) plants displayed increased Pst resistance but decreased Bc resistance, whereas AtERF014-RNAi plants exhibited decreased Pst resistance but increased Bc resistance. After Pst infection, expression of salicylic acid (SA)-responsive genes AtPR1 and AtPR5 in AtERF014-OE plants and of a jasmonic acid/ethylene-responsive gene AtPDF1.2 in AtERF014-RNAi plants was intensified but expression of AtPDF1.2 in AtERF014-OE plants and of AtPR1 and AtPR5 in AtERF014-RNAi plants was weakened. After Bc infection, expression of AtPR1 and AtPR5 in AtERF014-OE plants was attenuated but expression of AtPR1, AtPR5 and AtPDF1.2 in AtERF014-RNAi plants was strengthened. Pathogen- and flg22-induced ROS burst, expression of PTI genes and SA-induced defense were partially suppressed in AtERF014-RNAi plants, whereas pathogen-induced ROS and flg22-induced immune response were strengthened in AtER014-OE plants. Altered expression of AtERR014 affected expression of pectin biosynthetic genes and pectin content in AtERF014-RNAi plants was decreased. These data demonstrate that AtERF014 acts as a dual regulator that differentially modulates immunity against Pst and Bc in Arabidopsis.
ERF 转录因子在植物免疫反应中发挥关键作用。在这里,我们报告了核定位转录激活因子 AtERF014 在拟南芥免疫中的功能。AtERF014 的表达受丁香假单胞菌 pv.番茄 (Pst) 和 Botrytis cinerea (Bc) 的诱导。AtERF014 过表达 (OE) 植物对 Pst 的抗性增加,但对 Bc 的抗性降低,而 AtERF014-RNAi 植物对 Pst 的抗性降低,但对 Bc 的抗性增加。在 Pst 感染后,AtERF014-OE 植物中水杨酸 (SA) 响应基因 AtPR1 和 AtPR5 的表达以及 AtPDF1.2 的表达增强,但 AtERF014-OE 植物中 AtPDF1.2 的表达和 AtERF014-RNAi 植物中 AtPR1 和 AtPR5 的表达减弱。在 Bc 感染后,AtERF014-OE 植物中 AtPR1 和 AtPR5 的表达减弱,但 AtERF014-RNAi 植物中 AtPR1、AtPR5 和 AtPDF1.2 的表达增强。AtERF014-RNAi 植物中,病原菌和 flg22 诱导的 ROS 爆发、PTI 基因的表达和 SA 诱导的防御反应部分受到抑制,而 AtER014-OE 植物中,病原菌诱导的 ROS 和 flg22 诱导的免疫反应增强。AtERR014 表达的改变影响了果胶生物合成基因的表达,AtERF014-RNAi 植物中的果胶含量降低。这些数据表明,AtERF014 作为一个双重调节剂,在拟南芥中差异化地调节对 Pst 和 Bc 的免疫反应。