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Research Article | Open Access

Rice stripe virus protein NS3 exploits synergistically insect vector importin and ubiquitin systems to promote viral replication

Lu Zhang1Ze Qu1Yihui Tan1Yao Li1Xinyi Li1Zhipeng Huang1Siyuan Ruan1Shimin Zuo2Fang Liu1,2,3( )Wenxing Hu1( )
College of Plant Protection, Yangzhou University, Yangzhou 225009, China
Jiangsu Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University, Yangzhou 225009, China
Key Laboratory of Plant Functional Genomics of the Ministry of Education, Yangzhou University, Yangzhou 225009, China
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Highlights

• RSV infection activates genes involved in both the non-classical and classical import pathways in the insect vector SBPH.

• A member of the importin β family of SBPH, importin 5, mediates nuclear entry of RSV protein NS3.

• The ubiquitin system interacts synergistically with the nuclear import pathway to facilitate RSV NS3 nuclear entry and viral replication in SBPH.

Abstract

Plant viruses pose significant threats to agriculture, with many vectored by insect pests. The entry of viruses and their encoded proteins into the host nucleus is a critical step for promoting some viral replication and enabling systemic infection. Laodelphax striatellus, also known as the small brown planthopper (SBPH), is an efficient vector for rice stripe virus (RSV), one of the most damaging viruses of rice. In this study, we demonstrate that RSV infection induces the expression of genes in both the classical and non-classical nuclear import pathways of SBPH. A gene belonging to the importin β family, importin 5 (LsIPO5), was upregulated by 84% in SBPH midguts infected with RSV. The nuclear localization signal (NLS, 168YRSPSKKRHKYV179) is located within the nonstructural protein NS3 directly bound to LsIPO5, thereby facilitating NS3 nuclear entry. Moreover, a RING-type E3 ligase (LsRING) in SBPH, which mediated the ubiquitination of NS3 in the insect vector, enhanced NS3 binding to LsIPO5 and facilitated NS3 perinuclear localization. Combined treatment of SBPH with both dsIPO5 and dsRING significantly reduced RSV loads, highlighting the importance of LsIPO5 and NS3 ubiquitination cooperation in facilitating viral replication. Our findings provide new insights into synergistic molecular mechanisms that govern RSV infection and suggest potential therapeutic targets to control viral transmission through their insect vectors.

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Journal of Integrative Agriculture (JIA)
Pages 1087-1098

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Cite this article:
Zhang L, Qu Z, Tan Y, et al. Rice stripe virus protein NS3 exploits synergistically insect vector importin and ubiquitin systems to promote viral replication. Journal of Integrative Agriculture (JIA), 2026, 25(3): 1087-1098. https://doi.org/10.1016/j.jia.2025.04.025

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Received: 03 February 2025
Revised: 23 March 2025
Accepted: 30 March 2025
Published: 18 April 2025
© 2026 CAAS.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). Peer review under responsibility of Editorial Board of Journal of Integrative Agriculture.