Qiu Deyun, Xiao Jun, Ding Xinhua, Xiong Min, Cai Meng, Cao Yinglong, Li Xianghua, Xu Caiguo, Wang Shiping
National Key Laboratory of Crop Genetic Improvement, National Center for Plant Gene Research, Huazhong Agricultural University, Wuhan 430070, China.
Mol Plant Microbe Interact. 2007 May;20(5):492-9. doi: 10.1094/MPMI-20-5-0492.
Although 109 WRKY genes have been identified in the rice genome, the functions of most are unknown. Here, we show that OsWRKY13 plays a pivotal role in rice disease resistance. Overexpression of OsWRKY13 can enhance rice resistance to bacterial blight and fungal blast, two of the most devastating diseases of rice worldwide, at both the seedling and adult stages, and shows no influence on the fertility. This overexpression was accompanied by the activation of salicylic acid (SA) synthesis-related genes and SA-responsive genes and the suppression of jasmonic acid (JA) synthesis-related genes and JA-responsive genes. OsWRKY13 bound to the promoters of its own and at least three other genes in SA- and JA-dependent signaling pathways. Its DNA-binding activity was influenced by pathogen infection. These results suggest that OsWRKY13, as an activator of the SA-dependent pathway and a suppressor of JA-dependent pathways, mediates rice resistance by directly or indirectly regulating the expression of a subset of genes acting both upstream and downstream of SA and JA. Furthermore, OsWRKY13 will provide a transgenic tool for engineering wider-spectrum and whole-growth-stage resistance rice in breeding programs.
尽管在水稻基因组中已鉴定出109个WRKY基因,但大多数基因的功能尚不清楚。在此,我们表明OsWRKY13在水稻抗病性中起关键作用。过表达OsWRKY13可增强水稻在幼苗期和成年期对水稻白叶枯病和稻瘟病这两种全球最具毁灭性的水稻病害的抗性,且对育性无影响。这种过表达伴随着水杨酸(SA)合成相关基因和SA响应基因的激活以及茉莉酸(JA)合成相关基因和JA响应基因的抑制。OsWRKY13与SA和JA依赖信号通路中其自身以及至少其他三个基因的启动子结合。其DNA结合活性受病原体感染影响。这些结果表明,OsWRKY13作为SA依赖途径的激活剂和JA依赖途径的抑制剂,通过直接或间接调节SA和JA上下游的一部分基因的表达来介导水稻抗性。此外,OsWRKY13将为育种计划中培育更广谱和全生育期抗性水稻提供一种转基因工具。