State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.
State Key Laboratory of Rice Biology, Institute of Biotechnology, Zhejiang University, Hangzhou, Zhejiang, 310058, China.
Adv Sci (Weinh). 2024 Aug;11(32):e2400978. doi: 10.1002/advs.202400978. Epub 2024 Jun 21.
Nonsense-mediated decay (NMD) and autophagy play pivotal roles in restricting virus infection in plants. However, the interconnection between these two pathways in viral infections has not been explored. Here, it is shown that overexpression of NbSMG7 and NbUPF3 attenuates cucumber green mottle mosaic virus (CGMMV) infection by recognizing the viral internal termination codon and vice versa. NbSMG7 is subjected to autophagic degradation, which is executed by its interaction with one of the autophagy-related proteins, NbATG8i. Mutation of the ATG8 interacting motif (AIM) in NbSMG7 (SMG7mAIM1) abolishes the interaction and comprises its autophagic degradation. Silencing of NbSMG7 and NbATG8i, or NbUPF3 and NbATG8i, compared to silencing each gene individually, leads to more virus accumulations, but overexpression of NbSMG7 and NbATG8i fails to achieve more potent virus inhibition. When CGMMV is co-inoculated with NbSMG7mAIM1 or with NbUPF3, compared to co-inoculating with NbSMG7 in NbATG8i transgene plants, the inoculated plants exhibit milder viral phenotypes. These findings reveal that NMD-mediated virus inhibition is impaired by the autophagic degradation of SMG7 in a negative feedback loop, and a novel regulatory interplay between NMD and autophagy is uncovered, providing insights that are valuable in optimizing strategies to harness NMD and autophagy for combating viral infections.
无意义介导的衰变(NMD)和自噬在限制植物病毒感染中发挥着关键作用。然而,这两种途径在病毒感染中的相互联系尚未被探索。本研究表明,过表达 NbSMG7 和 NbUPF3 通过识别病毒的内部终止密码子来减轻黄瓜绿斑驳花叶病毒(CGMMV)的感染,反之亦然。NbSMG7 被自噬降解,这是通过它与一个自噬相关蛋白 NbATG8i 的相互作用来执行的。NbSMG7 的 ATG8 相互作用基序(AIM)突变(SMG7mAIM1)会破坏相互作用并包含其自噬降解。与单独沉默每个基因相比,沉默 NbSMG7 和 NbATG8i 或 NbUPF3 和 NbATG8i 会导致更多的病毒积累,但过表达 NbSMG7 和 NbATG8i 并不能实现更有效的病毒抑制。当 CGMMV 与 NbSMG7mAIM1 或 NbUPF3 共接种时,与在 NbATG8i 转基因植物中与 NbSMG7 共接种相比,接种植物表现出较轻的病毒表型。这些发现表明,NMD 介导的病毒抑制受到 SMG7 自噬降解的负反馈环的损害,揭示了 NMD 和自噬之间的一种新的调控相互作用,为利用 NMD 和自噬来对抗病毒感染提供了有价值的见解。