Wu Jianguo, Yang Zhirui, Wang Yu, Zheng Lijia, Ye Ruiqiang, Ji Yinghua, Zhao Shanshan, Ji Shaoyi, Liu Ruofei, Xu Le, Zheng Hong, Zhou Yijun, Zhang Xin, Cao Xiaofeng, Xie Lianhui, Wu Zujian, Qi Yijun, Li Yi
State Key Laboratory of Protein and Plant Gene Research, College of Life Sciences, Peking University, Beijing, China.
Center for Plant Biology, Tsinghua-Peking Center for Life Sciences, College of Life Sciences, Tsinghua University, Beijing, China.
Elife. 2015 Feb 17;4:e05733. doi: 10.7554/eLife.05733.
Viral pathogens are a major threat to rice production worldwide. Although RNA interference (RNAi) is known to mediate antiviral immunity in plant and animal models, the mechanism of antiviral RNAi in rice and other economically important crops is poorly understood. Here, we report that rice resistance to evolutionarily diverse viruses requires Argonaute18 (AGO18). Genetic studies reveal that the antiviral function of AGO18 depends on its activity to sequester microRNA168 (miR168) to alleviate repression of rice AGO1 essential for antiviral RNAi. Expression of miR168-resistant AGO1a in ago18 background rescues or increases rice antiviral activity. Notably, stable transgenic expression of AGO18 confers broad-spectrum virus resistance in rice. Our findings uncover a novel cooperative antiviral activity of two distinct AGO proteins and suggest a new strategy for the control of viral diseases in rice.
病毒病原体是全球水稻生产的主要威胁。尽管已知RNA干扰(RNAi)在植物和动物模型中介导抗病毒免疫,但水稻和其他经济作物中抗病毒RNAi的机制仍知之甚少。在此,我们报道水稻对进化上不同病毒的抗性需要AGO18。遗传学研究表明,AGO18的抗病毒功能取决于其隔离miR168以减轻对水稻AGO1的抑制的活性,而AGO1对抗病毒RNAi至关重要。在ago18背景中表达抗miR168的AGO1a可挽救或增强水稻的抗病毒活性。值得注意的是,AGO18的稳定转基因表达赋予水稻广谱病毒抗性。我们的发现揭示了两种不同AGO蛋白的新型协同抗病毒活性,并为控制水稻病毒病提出了新策略。