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October 2, 2025Frontiers in Insect Science3 citationsOpen Access

Ascosphaera apis as a target for the antifungal activity of symbiotic Bifidobacteria in honey bees

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MIMassimo IorizzoSGSonia GanassiBTBruno Testa

Key Points

  • Bifidobacterium asteroides demonstrated significant antifungal activity against ascosphaera apis, suggesting a protective role for honey bees.
  • Enzymatic capabilities of Bifidobacterium support digestion and metabolism, with VOCs like propanoic acid identified as key antifungal agents.
  • Assessment focused on nine Bifidobacterium strains isolated from honey bee intestines, revealing critical interactions within the gut microbiota.
  • Findings highlight the potential for Bifidobacterium to mitigate chalkbrood disease, emphasizing its importance in maintaining honey bee colonies.

Abstract

Introduction The genus Bifidobacterium is a key component of the honey bee gut microbiota, playing a fundamental role in maintaining host health and colony well-being. Alongside other core genera such as Bombilactobacillus , Gilliamella , Lactobacillus , and Snodgrassella , Bifidobacterium contributes to essential functions including nutrient digestion, immune modulation, and protection against pathogens. Among threats to honey bee health, Chalkbrood disease, caused by fungus Ascosphaera apis , remains a major concern due to detrimental effects on colony strength and honey yield. Materials and methods We characterized enzymatic activity and carbohydrate assimilation of nine Bifidobacterium strains isolated from the honey bee intestinal tract. In parallel, we assessed antifungal potential against A. apis strains, focusing on volatile organic compounds (VOCs). Results and discussion Notably, Bifidobacterium asteroides 3CP-2B exhibited enzymatic capabilities supporting digestive functions and metabolism of sugars potentially harmful to honey bees. This strain showed marked antifungal activity against A. apis , mediated by volatile and non-volatile bioactive metabolites. Among VOCs identified, propanoic acid, ethanol, acetic acid, ethyl propionate, and 1-propanol were the most prominent compounds associated with the antifungal effect.

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Cite This Study

Iorizzo et al. (2025) studied this question.

synapsesocial.com/papers/68de6f3183cbc991d0a21f48https://doi.org/10.3389/finsc.2025.1669013
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Also Consider

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