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November 15, 2025Insects0 citationsOpen Access

Host Immunity Mechanisms Against Bacterial and Viral Infections in Bombyx mori

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SASadaf AyazWKWei-Wei KongJWJie Wang

Key Points

  • The aim is to summarize host immunity mechanisms of Bombyx mori against bacterial and viral infections.
  • Reviewed the innate immune response of Bombyx mori against pathogens.
  • Explored humoral and cellular immune responses involving antimicrobial peptides and pattern recognition receptors.
  • Discussed molecular mechanisms including RNA interference and apoptosis in response to viral infections.
  • Identified key immune mechanisms such as Toll and STING signaling pathways.
  • Highlighted the role of antimicrobial peptides in bacterial defense.
  • Outlined the potential of CRISPR-Cas gene editing for enhancing disease resistance in silkworms.

Abstract

The domesticated silkworm, Bombyx mori, is a highly valued biodiversity and economic asset, acclaimed for its silk production, besides making important contributions to various scientific disciplines. However, the sericulture industry faces ongoing threats from bacterial and viral infections, which severely impact silkworm health and silk yield. This review provides a comprehensive overview of the innate immune response of B. mori against bacterial and viral pathogens, emphasizing the fundamental molecular and cellular defense mechanisms. We explore the humoral and cellular immune response using antimicrobial peptides (AMPs), pattern recognition receptors (PRRs) like peptidoglycan recognition protein (PGRP), and glucan recognition protein (GRP), which activate canonical signaling pathways. The review further highlights the molecular mechanisms underlying the silkworm’s defense against viruses, incorporating RNA interference (RNAi), apoptosis, and distinct signaling pathways such as Toll and Imd, JAK/STAT, and STING. We also discussed the viral suppression strategies and modulation of host metabolism during infection. Furthermore, the review explores the recent use of CRISPR-Cas gene editing to enhance disease resistance, presenting a promising avenue for mitigating pathogen-induced losses in sericulture. By elucidating these mechanisms, the work provides a synthesis that is critical in terms of developing particular interventions and developing more resistant silkworm strains to ensure that the industry of sericulture becomes viable and productive.

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Cite This Study

Ayaz et al. (2025) studied this question.

synapsesocial.com/papers/69251994c0ce034ddc353771https://doi.org/10.3390/insects16111167
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