Flies and Ants from Domestic Kitchens as Sources of Clinically Important Bacteria and Antimicrobial Resistance

Foods can be contaminated by a wide range of microorganisms, originating from multiple sources within domestic kitchens. However, the role of flies and ants as carriers of bacteria in these environments remains poorly understood, and data on the antimicrobial susceptibility profiles of insect-associated bacteria remain scarce. Therefore, this study aimed to identify Enterobacterales and Staphylococcus spp. recovered from flies and ants collected in domestic kitchens and to characterize the antimicrobial susceptibility profiles of the isolates. Additionally, selected virulence genes were investigated in Staphylococcus aureus and Escherichia coli, two recognized foodborne pathogens. A total of 240 insects (113 flies and 127 ants) were collected from 58 domestic kitchens. Twenty-six Enterobacterales isolates belonging to nine species were recovered from 17 kitchens, including a single multidrug-resistant (MDR) isolate identified as Enterobacter hormaechei. In addition, 45 staphylococcal isolates representing nine species were recovered from 25 kitchens, originating from 36 flies and 9 ants. Among these, 13 isolates exhibited an MDR phenotype, including S. aureus and several non-aureus Staphylococcus species. None of the E. coli isolates carried the eae or stx1/stx2 genes, whereas none of the S. aureus isolates harbored the sea, seb, sec, see, or mecA genes. To the best of our knowledge, this is the first study to report the simultaneous recovery of MDR bacteria from flies and ants collected in domestic kitchens. These findings provide new evidence that household insects may act as carriers of antimicrobial-resistant bacteria, highlighting their potential role in the dissemination of clinically relevant bacterial species, including MDR strains, within domestic environments. Effective insect control and good household food hygiene practices may help reduce the spread of antimicrobial-resistant bacteria and mitigate the risk of difficult-to-treat foodborne infections.

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Publication Details

Journal
Microorganisms
Published
2026-09-01
DOI
https://doi.org/10.3390/microorganisms14091928
Primary Topic
Insect Utilization and Effects
Type
article
Field-Weighted Citation Impact
0.00

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article

Flies and Ants from Domestic Kitchens as Sources of Clinically Important Bacteria and Antimicrobial Resistance

Ricardo Pinto Schuenck, Alessandra Figueiredo de Castro Nassar, L. P. S. de Oliveira, Carolina Magri Ferraz et al.
Microorganisms
Insect Utilization and Effects
article

Flies and Ants from Domestic Kitchens as Sources of Clinically Important Bacteria and Antimicrobial Resistance

Ricardo Pinto Schuenck, Alessandra Figueiredo de Castro Nassar, L. P. S. de Oliveira, Carolina Magri Ferraz, G. Paris, Marita Vedovelli Cardozo, João Pedro Rueda Furlan, Juliano Gonçalves Pereira, Heloisa Cristina Brugnera, Gustavo Guimarães Fernandes Viana, Gabriel Augusto Marques Rossi, Valéria Modolo Peterle, Vanessa Castro, Júlia Silva Santana, Enzo Bernardes Rocha Fávaro, Matheus Zorzal Bernardes Rangel, Sarah Bernardes Simões
article en

Abstract

Foods can be contaminated by a wide range of microorganisms, originating from multiple sources within domestic kitchens. However, the role of flies and ants as carriers of bacteria in these environments remains poorly understood, and data on the antimicrobial susceptibility profiles of insect-associated bacteria remain scarce. Therefore, this study aimed to identify Enterobacterales and Staphylococcus spp. recovered from flies and ants collected in domestic kitchens and to characterize the antimicrobial susceptibility profiles of the isolates. Additionally, selected virulence genes were investigated in Staphylococcus aureus and Escherichia coli, two recognized foodborne pathogens. A total of 240 insects (113 flies and 127 ants) were collected from 58 domestic kitchens. Twenty-six Enterobacterales isolates belonging to nine species were recovered from 17 kitchens, including a single multidrug-resistant (MDR) isolate identified as Enterobacter hormaechei. In addition, 45 staphylococcal isolates representing nine species were recovered from 25 kitchens, originating from 36 flies and 9 ants. Among these, 13 isolates exhibited an MDR phenotype, including S. aureus and several non-aureus Staphylococcus species. None of the E. coli isolates carried the eae or stx1/stx2 genes, whereas none of the S. aureus isolates harbored the sea, seb, sec, see, or mecA genes. To the best of our knowledge, this is the first study to report the simultaneous recovery of MDR bacteria from flies and ants collected in domestic kitchens. These findings provide new evidence that household insects may act as carriers of antimicrobial-resistant bacteria, highlighting their potential role in the dissemination of clinically relevant bacterial species, including MDR strains, within domestic environments. Effective insect control and good household food hygiene practices may help reduce the spread of antimicrobial-resistant bacteria and mitigate the risk of difficult-to-treat foodborne infections.

MicroorganismsVol. 14(9)
Instituto Biológico (BR), Universidade Federal da Paraíba (BR), Universidade Vila Velha (BR), Universidade Federal do Espírito Santo (BR), Universidade Estadual Paulista (Unesp) (BR)
Fundação de Amparo à Pesquisa e Inovação do Espírito Santo
Openalex Percentile: Top 11%
Insect Utilization and Effects
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