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Updated: Apr 19, 2026

Experimental Viral Infection in Adult Mosquitoes by Oral Feeding and Microinjection
Published on: July 28, 2022
A hypothetical model of crossing Bombyx mori nucleopolyhedrovirus through its host midgut physical barrier
Yang Cheng1, Xue-Yang Wang1, Hao Hu2
1School of Life Sciences, Anhui Agricultural University, Hefei, People's Republic of China.
Abstract:
Bombyx mori nucleopolyhedrovirus (BmNPV) is a primary pathogen of silkworm (B. mori) that causes severe economic losses each year. However, the molecular mechanisms of silkworm-BmNPV interactions, especially the silkworm proteins that can interact with the virus, are still largely unknown. In this study, the total and membrane proteins of silkworm midguts were displayed using one- and two-dimensional electrophoresis. A virus overlay assay was used to detect B. mori proteins that specifically bind to BmNPV particles. Twelve proteins were located and identified using mass spectrometry, and the different expression of the corresponding genes in BmNPV susceptible and resistant silkworm strains also indicated their involvement in BmNPV infection. The 12 proteins are grouped based on their potential roles in viral infection, for example, endocytosis, intracellular transportation, and host responses. Based on these results, we hypothesize the following: I) vacuolar ATP synthase catalytic subunit A and subunit B may be implicated in the process of the membrane fusion of virus and the release of the nucleocapsid into cytoplasm; II) actin, enolase and phosphoglycerate kinase are cytoskeleton associated proteins and may play an important role in BmNPV intracellular transportation; III) mitochondrial prohibitin complex protein 2, ganglioside-induced differentiation-associated protein, calreticulin, regucalcin-like isoform X1 and 60 kDa heat shock protein are involved in cell apoptosis regulation during BmNPV infection in larvae midguts; IV) ribosomal P0 may be associated with BmNPV infection by regulating gene expression of BmNPV; V) arginine kinase has a role in the antiviral activities against BmNPV. Our work should prove informative by providing multiple protein targets and a novel direction to investigate the molecular mechanisms of the interactions between silkworms and BmNPV.
Insights
Researchers identified 12 silkworm proteins interacting with Bombyx mori nucleopolyhedrovirus (BmNPV), revealing potential mechanisms for viral entry, transport, and host response. This study offers new targets for understanding silkworm-BmNPV interactions and developing disease resistance.
Area of Science:
- Insect pathology
- Molecular biology
- Proteomics
Background:
- Bombyx mori nucleopolyhedrovirus (BmNPV) causes significant economic losses in silkworm farming.
- The molecular mechanisms underlying silkworm-BmNPV interactions remain largely unelucidated.
- Identifying host proteins that interact with BmNPV is crucial for understanding viral pathogenesis.
Purpose of the Study:
- To identify and characterize silkworm proteins that interact with BmNPV particles.
- To elucidate the roles of these proteins in the viral infection process.
- To provide potential protein targets for enhancing silkworm resistance to BmNPV.
Main Methods:
- Proteomic analysis of silkworm midgut proteins using one- and two-dimensional electrophoresis.
- Virus overlay assay to detect specific protein-virus interactions.
- Mass spectrometry for protein identification.
- Gene expression analysis in susceptible and resistant silkworm strains.
Main Results:
- Twelve proteins were identified that specifically bind to BmNPV particles.
- These proteins are involved in various cellular processes including endocytosis, intracellular transport, apoptosis regulation, and gene expression.
- Differential gene expression patterns were observed in BmNPV-infected silkworm strains, correlating with identified proteins.
- Hypothesized roles for specific proteins in viral entry, nucleocapsid release, intracellular transport, apoptosis, and antiviral defense.
Conclusions:
- The study identified key silkworm proteins involved in BmNPV infection, offering insights into molecular mechanisms.
- These proteins represent potential targets for developing strategies to control BmNPV in silkworms.
- Further research into these protein-virus interactions can lead to novel approaches for disease management in sericulture.
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