Related Experiment Video
Updated: Nov 18, 2025

Author Spotlight: Advancing Gene Silencing Research in Silkworms with dsRNA Delivery Through Feeding Chitosan Nanoparticles
Published on: October 4, 2024
The digestive proteinase trypsin, alkaline A contributes to anti-BmNPV activity in silkworm (Bombyx mori)
Hui-Hua Cao1, Shang-Zhi Zhang2, Lin-Bao Zhu1
1School of Life Sciences, Anhui Agricultural University, Hefei, 230036, China; Anhui International Joint Research and Developmental Center of Sericulture Resources Utilization, Hefei, 230036, China.
Abstract:
Bombyx mori nucleopolyhedrovirus (BmNPV) is a serious pathogenic microorganism that causes tremendous loss to sericulture. Previous studies have found that some proteins of serine protease family in the digestive juice of B. mori larvae have anti-BmNPV activity. In our previous publication about proteome analysis of the digestive juice of B. mori larvae, the digestive enzyme trypsin, alkaline A (BmTA) was filtered as a differentially expressed protein possibly involved in BmNPV resistance. Here, the biological characteristics and anti-BmNPV functions of BmTA were comprehensively analysed. The cDNA sequence of BmTA had an ORF of 768 nucleotides encoding 255 amino acid residues. Domain architecture analysis showed that BmTA contained a signal peptide and a typical Tryp_SPc domain. Quantitative real-time PCR analysis showed that BmTA was highly expressed in the larval stages and specifically expressed in the midgut of B. mori larvae. The expression level of BmTA in BmNPV resistant strain A35 was higher than that in susceptible strain P50. After BmNPV infection, the expression of BmTA increased in both strains from 24 to 72 h. Virus amplification analysis showed that the relative levels of VP39 in B. mori larvae and BmN cells infected with the appropriate concentration of recombinant-BmTA-treated BmNPV were significantly lower than in the control groups. Moreover, overexpression of BmTA in BmN cells significantly inhibited the amplification of BmNPV. Taken together, the results of this study indicated that BmTA possessed anti-BmNPV activity in B. mori, which broadens the horizon for virus-resistant breeding of silkworms.
Insights
Bombyx mori nucleopolyhedrovirus (BmNPV) causes significant losses in silkworm farming. This study identifies trypsin, alkaline A (BmTA) as a key protein with anti-BmNPV activity, offering potential for virus-resistant silkworm breeding.
Area of Science:
- Entomology
- Virology
- Biochemistry
Background:
- Bombyx mori nucleopolyhedrovirus (BmNPV) is a major pathogen impacting sericulture.
- Serine protease family proteins in silkworm digestive juice show potential anti-BmNPV activity.
- Trypsin, alkaline A (BmTA) was identified as a differentially expressed protein linked to BmNPV resistance.
Purpose of the Study:
- To comprehensively analyze the biological characteristics and anti-BmNPV functions of BmTA.
- To investigate the role of BmTA in Bombyx mori's resistance to BmNPV infection.
Main Methods:
- cDNA sequencing and domain architecture analysis of BmTA.
- Quantitative real-time PCR to assess BmTA expression patterns.
- Virus amplification assays and gene overexpression in BmN cells.
Main Results:
- BmTA cDNA encodes a 255-amino acid protein with a signal peptide and Tryp_SPc domain.
- BmTA is highly expressed in larval midgut, with higher levels in BmNPV-resistant strains.
- BmTA expression increases post-BmNPV infection, and its presence/overexpression inhibits viral amplification.
Conclusions:
- BmTA exhibits significant anti-BmNPV activity in Bombyx mori.
- BmTA is a promising target for developing virus-resistant silkworm strains.
- This research expands understanding of silkworm antiviral mechanisms and breeding strategies.

