植物学报 ›› 2026, Vol. 61 ›› Issue (3): 357-368.DOI: 10.3724/CBB-2026-0044

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独脚金内酯受体精准改造助力水稻抗病毒“防卫战”

阳锦华, 王冰*   

  1. 中国科学院遗传与发育生物学研究所, 种子创新全国重点实验室, 北京 100101

  • 出版日期:2026-05-10 发布日期:2026-05-20
  • 通讯作者: 王冰
  • 基金资助:
    国家自然科学基金(No.32525014)

Precision Engineering of Strigolactone Receptor Aids Rice in Antiviral Defense

Jinhua Yang, Bing Wang*   

  1. State Key Laboratory of Seed Innovation, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China

  • Online:2026-05-10 Published:2026-05-20
  • Contact: Bing Wang

摘要: RNA干扰(RNAi)途径是植物广谱抗病毒的天然防御机制, 病毒则通过效应蛋白实现反防御。独脚金内酯(strigolactones, SLs)作为新型植物激素, 调控植物株型、耐逆性、菌根真菌共生及寄生病害, 但其抗病毒机制尚不明确。最新研究发现, 独脚金内酯信号在病毒与植物“攻防博弈”中发挥关键作用, 通过诱导转录因子ONAC131的表达, 与病毒响应蛋白MID1协同作用, 增强抗病毒RNAi反应; 而水稻草状矮化病毒(RGSV)的效应蛋白P3通过干扰独脚金内酯受体D14与D3的结合, 抑制独脚金内酯信号感知以削弱宿主防御; 精准编辑D14能有效提升RGSV抗性且不影响水稻(Oryza sativa)产量, 研究揭示了独脚金内酯信号通路与RNAi途径协同抵御病毒入侵的新机制, 为作物抗病毒育种提供了精准靶点, 是植物病毒学领域的重大突破。鉴于此, 该文梳理了抗病毒RNAi途径及独脚金内酯途径的研究进展, 重点探讨独脚金内酯等植物激素在植物-病毒互作攻防中的调控功能并展望未来, 为靶向激素信号枢纽基因实现作物精准抗病育种提供新思路。

Abstract: The RNA interference (RNAi) pathway acts as a conserved and broad-spectrum antiviral defense mechanism in plants, whereas viruses deploy effector proteins to counter host defense. Strigolactones (SLs) are a new class of phytohormones that regulate plant architecture, stress resilience, arbuscular mycorrhizal symbiosis, and parasitic diseases, but their antiviral mechanisms remain unclear. Recent research reveals that SL signaling is a pivotal regulatory node in the arms race between viruses and plants. SLs induce the expression of the transcription factor ONAC131, which acts synergistically with the virus-responsive protein MID1 to enhance antiviral RNAi. However, the rice grassy stunt virus (RGSV) deploys the P3 effector to dampen SL perception by disrupting the interaction between the SL receptor D14 and D3, thereby weakening the antiviral defense of rice. Precise editing of D14 remarkably enhances resistance to RGSV without yield penalty. This work reveals a novel mechanism whereby the SL signaling pathway and the RNAi pathway cooperate to counter viral invasion. It also provides a precise target for antiviral breeding in crops and represents a major breakthrough in the field of plant virology. In light of this, this paper summarizes the research progress on the antiviral RNAi pathway and SL signaling pathway, highlighting the regulatory functions of SL and other phytohormone signaling pathways in the offensive and defensive interactions between plants and viruses. Looking ahead, it offers new insights for the targeted breeding of antiviral crops by identifying key genes in hormone signaling hubs.