Antimicrobial Resistance Genes in Respiratory Bacteria from Weaned Dairy Heifers

Author:

Depenbrock Sarah1ORCID,Schlesener Cory2ORCID,Aly Sharif3ORCID,Williams Deniece3ORCID,ElAshmawy Wagdy34ORCID,McArthur Gary5,Clothier Kristin6,Wenz John7ORCID,Fritz Heather6,Chigerwe Munashe1ORCID,Weimer Bart2ORCID

Affiliation:

1. Department of Veterinary Medicine and Epidemiology, School of Veterinary Medicine, University of California Davis, Davis, CA 95616, USA

2. Department of Population Health and Reproduction, 100K Pathogen Genome Project, School of Veterinary Medicine, University of California Davis, Davis, CA 95616, USA

3. Veterinary Medicine Teaching and Research Center, School of Veterinary Medicine, University of California Davis, Tulare, CA 93274, USA

4. Department of Internal Medicine and Infectious Diseases, Faculty of Veterinary Medicine, Cairo University, Giza 12613, Egypt

5. Swinging Udders Veterinarian Services, Galt, CA 95632, USA

6. California Animal Health and Food Safety Laboratory, School of Veterinary Medicine, University of California Davis, Davis, CA 95616, USA

7. Field Disease Investigation Unit, Department of Veterinary Clinical Sciences, College of Veterinary Medicine, Washington State University, Pullman, WA 99163, USA

Abstract

Bovine respiratory disease (BRD) is the leading cause of mortality and antimicrobial drug (AMD) use in weaned dairy heifers. Limited information is available regarding antimicrobial resistance (AMR) in respiratory bacteria in this population. This study determined AMR gene presence in 326 respiratory isolates (Pasteurella multocida, Mannheimia haemolytica, and Histophilus somni) from weaned dairy heifers using whole genome sequencing. Concordance between AMR genotype and phenotype was determined. Twenty-six AMR genes for 8 broad classes of AMD were identified. The most prevalent, medically important AMD classes used in calf rearing, to which these genes predict AMR among study isolates were tetracycline (95%), aminoglycoside (94%), sulfonamide (94%), beta-lactam (77%), phenicol (50%), and macrolide (44%). The co-occurrence of AMR genes within an isolate was common; the largest cluster of gene co-occurrence encodes AMR to phenicol, macrolide, elfamycin, β-lactam (cephalosporin, penam cephamycin), aminoglycoside, tetracycline, and sulfonamide class AMD. Concordance between genotype and phenotype varied (Matthew’s Correlation Coefficient ranged from −0.57 to 1) by bacterial species, gene, and AMD tested, and was particularly poor for fluoroquinolones (no AMR genes detected) and ceftiofur (no phenotypic AMR classified while AMR genes present). These findings suggest a high genetic potential for AMR in weaned dairy heifers; preventing BRD and decreasing AMD reliance may be important in this population.

Funder

California Department of Food and Agriculture

Publisher

MDPI AG

Reference73 articles.

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2. United States Department of Agriculture, Animal and Plant Inspection Service, Veterinary Services, and National Animal Health Monitoring System (2010). Dairy 2007. Heifer Calf Health and Management Practices on U.S. Operations, 2007. USDA APHIS VS CEAH Fort Collins CO.

3. Depenbrock, S., Aly, S., Wenz, J., Williams, D., ElAshmawy, W., Clothier, K., and Chigerwe, M. (2021). In-vitro antibiotic resistance phenotypes of respiratory and enteric bacterial isolates from weaned dairy heifers in California. PLoS ONE, 16.

4. Understanding weaning distress;Weary;Appl. Anim. Behav. Sci.,2008

5. Control, management, and prevention of bovine respiratory disease in dairy calves and cows;Gorden;Vet. Clin. Food Anim. Pract.,2010

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