Yu D, Chen C, Chen Z
Department of Microbiology, Molecular Biology, and Biochemistry, University of Idaho, Moscow, ID 83844-3052, USA.
Plant Cell. 2001 Jul;13(7):1527-40. doi: 10.1105/tpc.010115.
The Arabidopsis NPR1 gene is a positive regulator of inducible plant disease resistance. Expression of NPR1 is induced by pathogen infection or treatment with defense-inducing compounds such as salicylic acid (SA). Transgenic plants overexpressing NPR1 exhibit enhanced resistance to a broad spectrum of microbial pathogens, whereas plants underexpressing the gene are more susceptible to pathogen infection. These results suggest that regulation of NPR1 gene expression is important for the activation of plant defense responses. In the present study, we report the identification of W-box sequences in the promoter region of the NPR1 gene that are recognized specifically by SA-induced WRKY DNA binding proteins from Arabidopsis. Mutations in these W-box sequences abolished their recognition by WRKY DNA binding proteins, rendered the promoter unable to activate a downstream reporter gene, and compromised the ability of NPR1 to complement npr1 mutants for SA-induced defense gene expression and disease resistance. These results provide strong evidence that certain WRKY genes act upstream of NPR1 and positively regulate its expression during the activation of plant defense responses. Consistent with this model, we found that SA-induced expression of a number of WRKY genes was independent of NPR1.
拟南芥NPR1基因是诱导型植物抗病性的正向调节因子。NPR1的表达受病原体感染或用防御诱导化合物(如水杨酸,SA)处理诱导。过表达NPR1的转基因植物对广谱微生物病原体表现出增强的抗性,而该基因表达不足的植物对病原体感染更敏感。这些结果表明,NPR1基因表达的调控对于植物防御反应的激活很重要。在本研究中,我们报告了在NPR1基因启动子区域中鉴定出W-box序列,这些序列被来自拟南芥的SA诱导的WRKY DNA结合蛋白特异性识别。这些W-box序列中的突变消除了WRKY DNA结合蛋白对它们的识别,使启动子无法激活下游报告基因,并损害了NPR1在SA诱导的防御基因表达和抗病性方面互补npr1突变体的能力。这些结果提供了强有力的证据,表明某些WRKY基因在NPR1上游起作用,并在植物防御反应激活过程中正向调节其表达。与该模型一致,我们发现许多WRKY基因的SA诱导表达独立于NPR1。