Bacterial communities and prevalence of antibiotic resistance genes carried within house flies (Diptera: Muscidae) associated with beef and dairy cattle farms

Author:

Neupane Saraswoti1ORCID,Talley Justin L2,Taylor David B3ORCID,Nayduch Dana4

Affiliation:

1. Department of Entomology, Kansas State University , Manhattan, KS 66506 , USA

2. Department of Entomology and Plant Pathology, Oklahoma State University , Stillwater, OK 74078 , USA

3. USDA-ARS, Agroecosystem Management Research Unit , Lincoln, NE 68583 , USA

4. USDA-ARS, Center for Grain and Animal Health Research, Arthropod-Borne Animal Diseases Research Unit , Manhattan, KS 66502 , USA

Abstract

Abstract House flies (Musca domestica Linnaeus) are vectors of human and animal pathogens at livestock operations. Microbial communities in flies are acquired from, and correlate with, their local environment. However, variation among microbial communities carried by flies from farms in different geographical areas is not well understood. We characterized bacterial communities of female house flies collected from beef and dairy farms in Oklahoma, Kansas, and Nebraska using 16S rDNA amplicon sequencing and PCR. Bacterial community composition in house flies was affected by farm type and location. While the shared number of taxa between flies from beef or dairy farms was low, those taxa accounted >97% of the total bacterial community abundance. Bacterial species richness was 4% greater in flies collected from beef than in those collected from dairy farms and varied by farm type within states. Several potential pathogenic taxa were highly prevalent, comprising a core bacterial community in house flies from cattle farms. Prevalence of the pathogens Moraxella bovis and Moraxella bovoculi was greater in flies from beef farms relative to those collected on dairy cattle farms. House flies also carried bacteria with multiple tetracycline and florfenicol resistance genes. This study suggests that the house flies are significant reservoirs and disseminators of microbial threats to human and cattle health.

Funder

National Institute of Health

United States Department of Agriculture

Publisher

Oxford University Press (OUP)

Subject

Infectious Diseases,Insect Science,General Veterinary,Parasitology

Reference61 articles.

1. Insects in confined swine operations carry a large antibiotic resistant and potentially virulent enterococcal community;Ahmad,2011

2. Transmission of Escherichia coli O157:H7 to cattle by house flies;Ahmad,2007

3. Call of the wild: antibiotic resistance genes in natural environments;Allen,2010

4. Minor revision to V4 region SSU rRNA 806R gene primer greatly increases detection of SAR11 bacterioplankton;Apprill,2015

5. Bacterial communities associated with houseflies (Musca domestica L.) sampled within and between farms;Bahrndorff;PLoS One,2017

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