Poultry farms are hotspots for the development and spread of antibiotic resistance genes (ARGs), due to high stocking densities and extensive use of antibiotics, posing a threat of spread and contagion to workers and the external environment. Here, we applied shotgun metagenome sequencing to characterize the gut microbiome and resistome of poultry, workers and their households - also including microbiomes from the internal and external farm environment – in three different farms in Italy during a complete rearing cycle. Our results highlighted a relevant overlap among the microbiomes of poultry, workers, and their families (gut and skin), with clinically relevant ARGs and associated mobile elements shared in both poultry and human samples. On a finer scale, the reconstruction of species-level genome bins (SGBs) allowed us to delineate the dynamics of microorganism and ARGs dispersion from farm systems. We found the associations with worker microbiomes representing the main route of ARGs dispersion from poultry to human populations. Collectively, our findings clearly demonstrate the urgent need to implement more effective procedures to counteract ARGs dispersion from poultry food systems and the relevance of metagenomics-based metacommunity approaches to monitor the ARGs dispersion process for the safety of the working environment on farms.

Routes of dispersion of antibiotic resistance genes from the poultry farm system / Daniel Scicchitano, Giulia Babbi, Giorgia Palladino, Silvia Turroni, Yitagele Terefe Mekonnen, Cédric Laczny, Paul Wilmes, Pimlapas Leekitcharoenphon, Andrea Castagnetti, Federica D'Amico, Patrizia Brigidi, Castrense Savojardo, Gerardo Manfreda, Pierluigi Martelli, Alessandra De Cesare, Frank Møller Aarestrup, Marco Candela, Simone Rampelli. - In: SCIENCE OF THE TOTAL ENVIRONMENT. - ISSN 0048-9697. - ELETTRONICO. - 912:(2024), pp. 169086.1-169086.12. [10.1016/j.scitotenv.2023.169086]

Routes of dispersion of antibiotic resistance genes from the poultry farm system

Daniel Scicchitano
Primo
;
Giulia Babbi
Secondo
;
Giorgia Palladino;Silvia Turroni;Yitagele Terefe Mekonnen;Andrea Castagnetti;Federica D'Amico;Patrizia Brigidi;Castrense Savojardo;Gerardo Manfreda;Pierluigi Martelli;Alessandra De Cesare;Marco Candela
;
Simone Rampelli
Ultimo
2024

Abstract

Poultry farms are hotspots for the development and spread of antibiotic resistance genes (ARGs), due to high stocking densities and extensive use of antibiotics, posing a threat of spread and contagion to workers and the external environment. Here, we applied shotgun metagenome sequencing to characterize the gut microbiome and resistome of poultry, workers and their households - also including microbiomes from the internal and external farm environment – in three different farms in Italy during a complete rearing cycle. Our results highlighted a relevant overlap among the microbiomes of poultry, workers, and their families (gut and skin), with clinically relevant ARGs and associated mobile elements shared in both poultry and human samples. On a finer scale, the reconstruction of species-level genome bins (SGBs) allowed us to delineate the dynamics of microorganism and ARGs dispersion from farm systems. We found the associations with worker microbiomes representing the main route of ARGs dispersion from poultry to human populations. Collectively, our findings clearly demonstrate the urgent need to implement more effective procedures to counteract ARGs dispersion from poultry food systems and the relevance of metagenomics-based metacommunity approaches to monitor the ARGs dispersion process for the safety of the working environment on farms.
2024
Routes of dispersion of antibiotic resistance genes from the poultry farm system / Daniel Scicchitano, Giulia Babbi, Giorgia Palladino, Silvia Turroni, Yitagele Terefe Mekonnen, Cédric Laczny, Paul Wilmes, Pimlapas Leekitcharoenphon, Andrea Castagnetti, Federica D'Amico, Patrizia Brigidi, Castrense Savojardo, Gerardo Manfreda, Pierluigi Martelli, Alessandra De Cesare, Frank Møller Aarestrup, Marco Candela, Simone Rampelli. - In: SCIENCE OF THE TOTAL ENVIRONMENT. - ISSN 0048-9697. - ELETTRONICO. - 912:(2024), pp. 169086.1-169086.12. [10.1016/j.scitotenv.2023.169086]
Daniel Scicchitano, Giulia Babbi, Giorgia Palladino, Silvia Turroni, Yitagele Terefe Mekonnen, Cédric Laczny, Paul Wilmes, Pimlapas Leekitcharoenphon, Andrea Castagnetti, Federica D'Amico, Patrizia Brigidi, Castrense Savojardo, Gerardo Manfreda, Pierluigi Martelli, Alessandra De Cesare, Frank Møller Aarestrup, Marco Candela, Simone Rampelli
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/951411
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