The overuse of antimicrobials in livestock farming has led to the development of resistant bacteria and the spread of antibiotic-resistant genes (ARGs) among animals. When manure containing these antibiotics is applied to agricultural fields, it creates a selective pressure that promotes the acquisition of ARGs by bacteria, primarily through horizontal gene transfer. Most research on ARGs focuses on their role in clinical antibiotic resistance and their transfer from environmental sources to bacteria associated with humans, such as Escherichia coli. . The study investigates the spread of antibiotic-resistant genes (ARGs) through class 1 integrons in 27 Escherichia coli strains from pig manure. It focuses on six common ARGs (ermB, erm B, cml A, flo R, qnr S, tet A, and TEM) and the class 1 integron gene, assessing their prevalence in manure samples from three pig farms. The study found correlations and anticorrelations among these genes, indicating a predisposition of the integron in spreading certain ARGs. Specifically, cmlA A and tetA A genes were positively correlated with each other and negatively with int1, suggesting they are not transferred via Int 1. Farm B had the highest int1 counts and a higher abundance of the TEM gene, but lower levels of cmlA A and tetA A genes. The results underscore the complexity of predicting ARG spread in agricultural environments and the associated health risks to humans through the food chain. The study's results offer valuable insights into the antibiotic-resistant genes (ARGs) profile in swine livestock, potentially aiding in the development of methods to trace ARGs in the environment.

Checcucci A., Buscaroli E., Modesto M., Luise D., Blasioli S., Scarafile D., et al. (2024). The swine waste resistome: Spreading and transfer of antibiotic resistance genes in Escherichia coli strains and the associated microbial communities. ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 283(15 September 2024), 1-8 [10.1016/j.ecoenv.2024.116774].

The swine waste resistome: Spreading and transfer of antibiotic resistance genes in Escherichia coli strains and the associated microbial communities

Checcucci A.;Buscaroli E.
;
Modesto M.
;
Luise D.;Blasioli S.;Scarafile D.;Trevisi P.;Braschi I.;Mattarelli P.
2024

Abstract

The overuse of antimicrobials in livestock farming has led to the development of resistant bacteria and the spread of antibiotic-resistant genes (ARGs) among animals. When manure containing these antibiotics is applied to agricultural fields, it creates a selective pressure that promotes the acquisition of ARGs by bacteria, primarily through horizontal gene transfer. Most research on ARGs focuses on their role in clinical antibiotic resistance and their transfer from environmental sources to bacteria associated with humans, such as Escherichia coli. . The study investigates the spread of antibiotic-resistant genes (ARGs) through class 1 integrons in 27 Escherichia coli strains from pig manure. It focuses on six common ARGs (ermB, erm B, cml A, flo R, qnr S, tet A, and TEM) and the class 1 integron gene, assessing their prevalence in manure samples from three pig farms. The study found correlations and anticorrelations among these genes, indicating a predisposition of the integron in spreading certain ARGs. Specifically, cmlA A and tetA A genes were positively correlated with each other and negatively with int1, suggesting they are not transferred via Int 1. Farm B had the highest int1 counts and a higher abundance of the TEM gene, but lower levels of cmlA A and tetA A genes. The results underscore the complexity of predicting ARG spread in agricultural environments and the associated health risks to humans through the food chain. The study's results offer valuable insights into the antibiotic-resistant genes (ARGs) profile in swine livestock, potentially aiding in the development of methods to trace ARGs in the environment.
2024
Checcucci A., Buscaroli E., Modesto M., Luise D., Blasioli S., Scarafile D., et al. (2024). The swine waste resistome: Spreading and transfer of antibiotic resistance genes in Escherichia coli strains and the associated microbial communities. ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 283(15 September 2024), 1-8 [10.1016/j.ecoenv.2024.116774].
Checcucci A.; Buscaroli E.; Modesto M.; Luise D.; Blasioli S.; Scarafile D.; Di Vito M.; Bugli F.; Trevisi P.; Braschi I.; Mattarelli P.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/981854
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