Nanomaterial inactivates environmental virus and enhances plant immunity for controlling tobacco mosaic virus disease

Tobacco mosaic virus (TMV) is extremely pathogenic and resistant to stress There are great needs to develop methods to reduce the virus in the environment and induce plant immunity simultaneously. Here, we report a multifunctional nano-protectant to reduce the virus in the environment and induce pla...

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Veröffentlicht in:Nature communications 2024-10, Vol.15 (1), p.8509-17, Article 8509
Hauptverfasser: Jiang, Qinhong, Xie, Yonghui, Zhou, Bingcheng, Wang, Zhijiang, Ning, Dekai, Li, Hongming, Zhang, Junzheng, Yin, Meizhen, Shen, Jie, Yan, Shuo
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Sprache:eng
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Zusammenfassung:Tobacco mosaic virus (TMV) is extremely pathogenic and resistant to stress There are great needs to develop methods to reduce the virus in the environment and induce plant immunity simultaneously. Here, we report a multifunctional nano-protectant to reduce the virus in the environment and induce plant immunity simultaneously. The star polycation (SPc) nanocarrier can act as an active ingredient to interact with virus coat protein via electrostatic interaction, which reduces the proportion of TMV particles to 2.9% and leads to a reduction of the amount of virus in the environment by half. SPc can act as an adjuvant to spontaneously assemble with an immune inducer lentinan (LNT) through hydrogen bonding into nanoscale (142 nm diameter) LNT/SPc complex, which improves the physicochemical property of LNT for better wetting performance on leaves and cellular uptake, and further activates plant immune responses. Finally, the LNT/SPc complex displays preventive and curative effects on TMV disease, reducing TMV-GFP relative expression by 26% in the laboratory and achieving 82% control efficacy in the field We hope the strategy reported here would be useful for control of crop virus disease. Tobacco mosaic virus (TMV) infects a wide range of plants and cause tremendous economic loss. Here, the authors assemble lentinan, an immune inducer with antiviral activity, with the nanocarrier star polycation through hydrogen bonding and show its effectiveness in controlling TMV in field conditions.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-024-52851-z