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Updated: May 23, 2025

Author Spotlight: Investigating Bacteriophage-Induced Immune Responses in Gnotobiotic Mice
Published on: January 26, 2024
Distinct effects of mucin on phage-host interactions in model systems of beneficial and pathogenic bacteria
Jaka Jakin Lazar1, Katarina Šimunović1, Iztok Dogša1
1Department of Microbiology, Biotechnical Faculty, University of Ljubljana, Ljubljana, Slovenia.
Abstract:
Phage-host interactions that occur in host-associated microbiomes are influenced by a plethora of environmental factors. Mucins are glycoproteins that represent the main component of mucus, which is found in the animal digestive tract and on the surface of certain organs, serving as the first line of defense against toxins and pathogens. Previous studies have shown that lytic phages have an important influence on the microbial composition in mucosal areas. Our study expands this knowledge to interactions between previously untested lytic phages targeting probiotic and pathogenic bacteria, as well as temperate phages targeting probiotic bacteria. These interactions could be important in shaping microbial communities and affecting the well-being of their host. This study demonstrates that mucins enhance the adherence of Vibrio anguillarum lytic phages and Bacillus subtilis lytic and temperate phages, as well as B. subtilis and V. anguillarum cells, to solid surfaces. Our results also show that mucins positively affect the attachment of B. subtilis cells even in the presence of phages. This positive effect was not observed in the case of V. anguillarum. This suggests that mucin may shield certain bacteria from phage infections. We also found that mucin influenced the metabolic activity of the two tested bacterial species differently, with strong positive effects on V. anguillarum but not on B. subtilis. This work supports previous findings that phages adhere efficiently to mucus and extends these studies to include other beneficial and pathogenic bacterial species. It also reveals that mucins have different effects on phage-host interactions in different phage-host systems, which may have implications for phage therapies or probiotic treatment strategies.
Insights
Mucins enhance phage and bacterial adherence to surfaces, potentially shielding bacteria from infection. This impacts microbial communities and has implications for phage therapy and probiotics.
Area of Science:
- Microbiology
- Environmental Science
- Biotechnology
Background:
- Mucins, key components of mucus, are crucial in host defense against pathogens.
- Lytic phages significantly influence microbial composition in mucosal environments.
- Previous research highlights phage impact on mucosal microbiomes.
Purpose of the Study:
- To investigate mucin's effect on phage-host interactions involving probiotic and pathogenic bacteria.
- To explore how mucins influence the adherence and metabolic activity of bacteria and phages.
- To understand the implications for phage therapy and probiotic strategies.
Main Methods:
- Testing lytic and temperate phages targeting Vibrio anguillarum and Bacillus subtilis.
- Assessing phage and bacterial adherence to surfaces in the presence and absence of mucins.
- Evaluating the impact of mucins on bacterial metabolic activity.
Main Results:
- Mucins enhanced the adherence of both phages and bacterial cells (V. anguillarum, B. subtilis) to surfaces.
- Mucins promoted B. subtilis attachment even with phages present, unlike V. anguillarum.
- Mucins differentially affected the metabolic activity of V. anguillarum and B. subtilis.
Conclusions:
- Mucins can influence phage-host dynamics, potentially shielding bacteria from phage predation.
- The effect of mucins varies across different phage-host systems.
- Findings suggest mucin's role in shaping microbial communities and potential applications in therapeutic strategies.
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