Wang Hui, Huang Zejun, Chen Qi, Zhang Zhijin, Zhang Hongbo, Wu Yanming, Huang Dafang, Huang Rongfeng
The National Plant Gene Research Center (Beijing), Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 10081, China.
Plant Mol Biol. 2004 May;55(2):183-92. doi: 10.1007/s11103-004-0113-6.
The ethylene, jasmonic acid and osmotic signaling pathways respond to environmental stimuli and in order to understand how plants adapt to biotic and abiotic stresses it is important to understand how these pathways interact each other. In this paper, we report a novel ERF protein--jasmonate and ethylene-responsive factor 3 (JERF3)--that unites these pathways. JERF3, which functions as an in vivo transcription activator in yeast, binds to the GCC box, an element responsive to ethylene/JA signaling, as well as to DRE, a dehydration-responsive element that responds to dehydration, high salt and low-temperature. Expression of JERF3 in tomato is mainly induced by ethylene, JA, cold, salt or ABA. Constitutive expression of JERF3 in transgenic tobacco significantly activated expression of pathogenesis-related genes that contained the GCC box, resulting in enhanced tolerance to salt. These results indicate that JERF3 functions as a linker in ethylene- and osmotic stress-signaling pathways.
乙烯、茉莉酸和渗透信号通路对环境刺激做出响应,为了理解植物如何适应生物和非生物胁迫,了解这些通路如何相互作用很重要。在本文中,我们报道了一种新的ERF蛋白——茉莉酸和乙烯响应因子3(JERF3),它将这些通路联系起来。JERF3在酵母中作为体内转录激活因子发挥作用,它与GCC框(一种对乙烯/茉莉酸信号有响应的元件)以及DRE(一种对脱水、高盐和低温有响应的脱水响应元件)结合。JERF3在番茄中的表达主要由乙烯、茉莉酸、冷、盐或脱落酸诱导。JERF3在转基因烟草中的组成型表达显著激活了含有GCC框的病程相关基因的表达,从而增强了对盐的耐受性。这些结果表明,JERF3在乙烯和渗透胁迫信号通路中起连接作用。