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February 5, 2026Nature Communications0 citationsOpen Access

Gut microbiota-derived butyrate primes systemic immunity in honey bees by mediating lipid metabolic reprogramming

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KWKaichun WuYWYashuai WuZLZhenfang Li

Key Points

  • The study aims to understand how gut microbiota, specifically butyrate, regulates immune responses in honey bees.
  • Utilized honey bee gut microbiota to assess its impact on systemic immunity.
  • Identified butyrate as a crucial metabolite for immune priming.
  • Analyzed metabolic changes in the fat body related to immune responses.
  • Examined the role of specific signaling pathways and metabolites.
  • Butyrate supplementation restored immune competence in germ-free honey bees.
  • Activated glycerolipid and arachidonic acid metabolism via G-protein coupled receptor 41.
  • Inhibited histone deacetylases leading to upregulation of prostaglandin E2 biosynthesis.
  • Demonstrated that immune and metabolic systems integrate through gut-host interactions.

Abstract

Abstract The gut microbiota plays a crucial role in insect immune priming, inducing enhanced immune response that functionally resembles acquired immunity confined to vertebrates. While gut microbiota mediates systemic immune activation in insect hemolymph, the mechanisms underlying remote immunoregulation remain largely unknown. Here we use the honey bee gut microbiota as a model, we identify butyrate as a key microbial metabolite coordinating immune-metabolic crosstalk. Butyrate supplementation restores immune competence in germ-free bees, mirroring the protective effects of microbiota-colonized individuals. Butyrate orchestrates lipid metabolic reprogramming in the fat body by activating glycerolipid and arachidonic acid metabolism through activating the G-protein coupled receptor 41 while inhibiting histone deacetylases. These changes in-turn upregulate prostaglandin E 2 biosynthesis, which is essential for humoral and cellular immune activation. These findings unravel how the intricate integration of immune and metabolic systems in honey bees is driven by gut-host interactions.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/698434ebf1d9ada3c1fb3a7chttps://doi.org/10.1038/s41467-026-69073-0
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