Abstract

Background

The annual economic loss caused by plant viruses exceeds 10 billion dollars due to the lack of ideal control measures. Quercetin is a flavonol compound that exerts a control effect on plant virus diseases, but its poor solubility and stability limit the control efficiency. Fortunately, the development of nanopesticides has led to new ideas.

Results

In this study, 117 nm quercetin nanoliposomes with excellent stability were prepared from biomaterials, and few surfactants and stabilizers were added to optimize the formula. Nbhsp70er-1 and Nbhsp70c-A were found to be the target genes of quercetin, through abiotic and biotic stress, and the nanoliposomes improved the inhibitory effect at the gene and protein levels by 33.6 and 42%, respectively. Finally, the results of field experiment showed that the control efficiency was 38% higher than that of the conventional quercetin formulation and higher than those of other antiviral agents.

Conclusion

This research innovatively reports the combination of biological antiviral agents and nanotechnology to control plant virus diseases, and it significantly improved the control efficiency and reduced the use of traditional chemical pesticides.

Details

Title
Field application of nanoliposomes delivered quercetin by inhibiting specific hsp70 gene expression against plant virus disease
Author
Wang, Jie; Kaiqiang Hao; Yu, Fangfei; Shen, Lili; Wang, Fenglong; Yang, Jinguang; Su, Chenyu
Pages
1-16
Section
Research
Publication year
2022
Publication date
2022
Publisher
BioMed Central
e-ISSN
14773155
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2621034496
Copyright
© 2022. This work is licensed under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.