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Pseudomonas in Meat Processing Environments
Chloe Calhoun1, Ifigenia Geornaras1, Peipei Zhang1
1Department of Animal Sciences, Colorado State University, Fort Collins, CO 80523, USA.
Abstract:
Pseudomonas is often predominant and/or prevalent among the residential microbiota in food processing facilities and has the potential to enhance the survival of pathogenic bacteria in these environments. This review aims to discuss our current understanding of this bacterial genus in meat processing environments. We specifically focus on the predominant species of Pseudomonas in meat and meat processing plants, their biofilm-forming abilities and affecting factors, and the interaction between Pseudomonas and foodborne pathogens in biofilms. Published accounts indicate Pseudomonas has more diversity within and between meat plants compared to that in meat products. Despite the competition between Pseudomonas and other bacteria, including pathogens, this genus can increase the survival of pathogenic bacteria in food processing-related environments by increasing the resistance of pathogens to antimicrobials when present in biofilms. Our understanding of the ecology of Pseudomonas in meat processing environments needs further exploration. Future studies should consider biofilms formed under dynamic conditions simulating meat plant operations, using species/strains that are more representative of the Pseudomonas populations found in meat processing environments, and with growth media that closely resemble the nutrients found on meat processing surfaces.
Insights
Pseudomonas bacteria are common in meat plants and can help pathogens survive by increasing their resistance to antimicrobials in biofilms. More research is needed on Pseudomonas ecology in these environments.
Area of Science:
- Microbiology
- Food Safety
- Environmental Science
Background:
- Pseudomonas species are predominant in food processing facilities, potentially enhancing pathogen survival.
- Understanding Pseudomonas in meat processing environments is crucial for food safety.
Purpose of the Study:
- To review the current knowledge of Pseudomonas in meat processing environments.
- To focus on predominant species, biofilm formation, and interactions with foodborne pathogens.
Main Methods:
- Literature review of published accounts on Pseudomonas in meat processing.
- Analysis of Pseudomonas diversity, biofilm dynamics, and pathogen interactions.
Main Results:
- Pseudomonas exhibits greater diversity within and between meat plants than on meat products.
- Pseudomonas in biofilms enhances pathogen survival by increasing antimicrobial resistance.
Conclusions:
- Pseudomonas plays a significant role in the ecology of meat processing environments.
- Further research should investigate biofilms under dynamic conditions and use representative strains and media.
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