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Characterization of Newly Isolated Rosenblumvirus Phage Infecting Staphylococcus aureus from Different Sources
Paloma Cavalcante Cunha1, Pedro Samuel de Souza2, Ana Julia Dill Rosseto2
1Department of Microbiology, Federal University of Viçosa, Avenida Peter Henry Rolfs, s/n, Viçosa 36570-900, Minas Gerais, Brazil.
Abstract:
Staphylococcus aureus is a globally significant pathogen associated with severe infections, foodborne illnesses, and animal diseases. Its control has become increasingly challenging due to the spread of antibiotic-resistant strains, highlighting the urgent need for effective alternatives. In this context, bacteriophages have emerged as promising biocontrol agents. This study aimed to characterize the newly isolated Staphylococcus phage CapO46 and evaluate its efficacy in reducing S. aureus in milk. Identified as a new species within the Rosenblumvirus genus, CapO46 exhibited a podovirus-like structure and a small linear dsDNA genome (17,107 bp), with no lysogeny-related, antimicrobial resistance, or virulence genes. Host range assays demonstrated its ability to infect all 31 S. aureus isolates from two different countries and in diverse environmental contexts, achieving high efficiency of plating (EOP > 0.5) in 64.5% of cases. Kinetic analyses revealed rapid adsorption and a short latent period, with a burst size of approximately 30 PFU/cell. In UHT whole-fat milk, CapO46 achieved a maximum reduction of 7.2 log10 CFU/mL in bacterial load after 12 h, maintaining significant suppression (1.6 log10 CFU/mL) after 48 h. Due to its genetic safety, high infectivity across multiple isolates, and antimicrobial activity in milk, CapO46 can be considered a promising candidate for S. aureus biocontrol applications.
Insights
A novel bacteriophage, CapO46, effectively reduces Staphylococcus aureus in milk. This phage shows broad infectivity and genetic safety, making it a promising biocontrol agent against this significant pathogen.
Area of Science:
- Microbiology
- Virology
- Food Safety
Background:
- Staphylococcus aureus is a major pathogen causing severe infections and antibiotic resistance.
- Bacteriophages are explored as alternatives to antibiotics for controlling S. aureus.
- There is an urgent need for novel biocontrol agents against S. aureus.
Purpose of the Study:
- To characterize the newly isolated Staphylococcus phage CapO46.
- To evaluate CapO46's efficacy in reducing S. aureus in milk.
- To assess the genetic safety of CapO46.
Main Methods:
- Phage isolation and characterization (structure, genome sequencing).
- Host range determination and efficiency of plating assays.
- Bactericidal activity assessment in UHT whole-fat milk.
Main Results:
- CapO46 is a new species in the Rosenblumvirus genus with a podovirus-like structure and a dsDNA genome.
- CapO46 infected all tested S. aureus isolates with high efficiency.
- CapO46 reduced S. aureus load by up to 7.2 log10 CFU/mL in milk within 12 hours.
Conclusions:
- CapO46 demonstrates broad infectivity and rapid lytic activity against S. aureus.
- The phage possesses a safe genetic profile, lacking virulence or resistance genes.
- CapO46 is a promising candidate for S. aureus biocontrol in food products like milk.
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