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September 10, 2025Insects5 citationsOpen Access

Functional Analysis of BmHemolin in the Immune Defense of Silkworms

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LHLong HeLLLijing LiuHLHuawei Liu

Key Points

  • BmHemolin significantly upregulates in silkworms fed artificial diets, enhancing immune function and resistance.
  • In vitro studies show BmHemolin inhibits Escherichia coli growth, indicating its potential antibacterial properties.
  • CRISPR/Cas9 knockout of BmHemolin reduced antimicrobial peptide expression, limiting the silkworm's immune response.
  • Research highlights BmHemolin's crucial role in humoral and cellular immunity against pathogen invasion.

Abstract

Hemolin has been identified as a crucial immune gene in insect immune defense. The silkworm is susceptible to infections by pathogenic microorganisms when reared on artificial diets. In this study, through comparative analysis of the expression patterns of BmHemolin in silkworms fed on mulberry leaves and artificial diets, we found that the expression of BmHemolin was significantly upregulated in silkworms reared on artificial diets, and this upregulation was highly likely induced by pathogenic microorganisms. Further interaction analysis revealed that BmHemolin could bind to pathogenic microorganisms and form aggregates. Meanwhile, BmHemolin enhanced the melanization and aggregation of hemocytes. Subsequent in vitro antibacterial experiments showed that BmHemolin had the ability to inhibit the growth of Escherichia coli. In vivo clearance experiments demonstrated that BmHemolin facilitated the clearance of pathogens in the body. Moreover, CRISPR/Cas9-mediated knockout of the BmHemolin gene led to the downregulation of antimicrobial peptides and phagocytosis-related factors, while an excess of BmHemolin could enhance the expression of these genes, thereby improving the silkworm’s immune resistance to Enterococcus mundtii and increasing survival rates. In summary, our research demonstrates that BmHemolin played a pivotal role in both humoral and cellular immunity in the silkworm, thereby defending against pathogen invasion.

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Cite This Study

He et al. (2025) studied this question.

synapsesocial.com/papers/68c1ae6654b1d3bfb60e62fdhttps://doi.org/10.3390/insects16080778
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