The State Key Laboratory of Protein and Plant Gene Research, School of Life Sciences, Peking University, Beijing, China.
Department of Biology, Southern University of Science and Technology, Shenzhen, China.
PLoS Pathog. 2020 Dec 2;16(12):e1009118. doi: 10.1371/journal.ppat.1009118. eCollection 2020 Dec.
There are 25 auxin response factors (ARFs) in the rice genome, which play critical roles in regulating myriad aspects of plant development, but their role (s) in host antiviral immune defense and the underneath mechanism remain largely unknown. By using the rice-rice dwarf virus (RDV) model system, here we report that auxin signaling enhances rice defense against RDV infection. In turn, RDV infection triggers increased auxin biosynthesis and accumulation in rice, and that treatment with exogenous auxin reduces OsIAA10 protein level, thereby unleashing a group of OsIAA10-interacting OsARFs to mediate downstream antiviral responses. Strikingly, our genetic data showed that loss-of-function mutants of osarf12 or osarf16 exhibit reduced resistance whereas osarf11 mutants display enhanced resistance to RDV. In turn, OsARF12 activates the down-stream OsWRKY13 expression through direct binding to its promoter, loss-of-function mutants of oswrky13 exhibit reduced resistance. These results demonstrated that OsARF 11, 12 and 16 differentially regulate rice antiviral defense. Together with our previous discovery that the viral P2 protein stabilizes OsIAA10 protein via thwarting its interaction with OsTIR1 to enhance viral infection and pathogenesis, our results reveal a novel auxin-IAA10-ARFs-mediated signaling mechanism employed by rice and RDV for defense and counter defense responses.
在水稻基因组中有 25 个生长素响应因子(ARFs),它们在调节植物发育的各个方面起着关键作用,但它们在宿主抗病毒免疫防御中的作用及其潜在机制在很大程度上尚不清楚。利用水稻矮缩病毒(RDV)模型系统,我们在这里报告生长素信号增强了水稻对 RDV 感染的防御。反过来,RDV 感染触发水稻中生长素的生物合成和积累增加,而外源生长素的处理会降低 OsIAA10 蛋白水平,从而释放一组与 OsIAA10 相互作用的 OsARFs 来介导下游抗病毒反应。引人注目的是,我们的遗传数据表明,osarf12 或 osarf16 的功能丧失突变体对 RDV 的抗性降低,而 osarf11 突变体对 RDV 的抗性增强。反过来,OsARF12 通过直接结合其启动子激活下游 OsWRKY13 的表达,owsrky13 的功能丧失突变体表现出对 RDV 的抗性降低。这些结果表明,OsARF11、12 和 16 差异调节水稻抗病毒防御。结合我们之前的发现,病毒 P2 蛋白通过阻止其与 OsTIR1 的相互作用稳定 OsIAA10 蛋白,以增强病毒感染和发病机制,我们的结果揭示了水稻和 RDV 用于防御和反击的一种新的生长素-IAA10-ARFs 介导的信号机制。