Oxytetracycline-resistant Paenibacillus larvae identified in commercial beekeeping operations in Saskatchewan using pooled honey sampling

Author:

Obshta Oleksii1ORCID,Zabrodski Michael W.2,Soomro Tayab1ORCID,Wilson Geoff3,Masood Fatima4,Thebeau Jenna1,Silva Marina C. B.1,Biganski Sarah1ORCID,Kozii Ivanna V.2,Koziy Roman V.1,Raza M. Fahim1,Jose Midhun S.1,Simko Elemir1,Wood Sarah C.1

Affiliation:

1. Departments of Veterinary Pathology, University of Saskatchewan, SK, Canada

2. Prairie Diagnostic Services, Saskatoon, SK, Canada

3. Crops and Irrigation Branch, Ministry of Agriculture, Government of Saskatchewan, Prince Albert, Saskatchewan, Canada

4. Veterinary Microbiology, University of Saskatchewan, SK, Canada

Abstract

American foulbrood (AFB) is an infectious disease of honey bee brood caused by the endospore-forming bacterium Paenibacillus larvae. P. larvae spores are resilient in the environment, thus colonies with clinical signs of AFB are often destroyed by burning to eradicate the causative agent. To prevent outbreaks of AFB, oxytetracycline metaphylaxis is widely used in North America, resulting in sustained selective pressure for oxytetracycline resistance in P. larvae. To determine if antimicrobial resistance (AMR) is present among P. larvae isolates from commercial beekeeping operations in Saskatchewan, Canada, we performed antimicrobial susceptibility testing of 718 P. larvae samples cultured from pooled, extracted honey collected from 52 beekeepers over a 2-y period, 2019 and 2020. We found that 65 of 718 (9%) P. larvae samples collected from 8 beekeepers were resistant to oxytetracycline with minimum inhibitory concentration (MIC) values of 64–256 µg/mL. Eight of 718 (1%) samples from 4 beekeepers had intermediate resistance to oxytetracycline (MIC: 4–8 µg/mL). Susceptibility testing for tylosin and lincomycin indicated that P. larvae in Saskatchewan continue to be susceptible to these antimicrobials (tylosin MIC: <1 µg/mL, lincomycin MIC: ≤2 µg/mL). Most oxytetracycline-resistant P. larvae samples were identified in northeastern Saskatchewan. Whole-genome sequence analysis identified the P. larvae–specific plasmid pMA67 with tetracycline-resistance gene tet(L) in 9 of 11 oxytetracycline-resistant P. larvae isolates sequenced. Our results highlight the advantage of using pooled, extracted honey as a surveillance tool for monitoring AMR in P. larvae.

Funder

Mitacs Accelerate

Saskatchewan Agriculture Development Fund

Publisher

SAGE Publications

Subject

General Veterinary

Reference49 articles.

1. Agriculture and Forestry, Government of Alberta. Potential economic impact of European and American foulbrood on Alberta’s beekeeping industry, Nov 2020. [cited 2022 Oct 7]. https://open.alberta.ca/publications/potential-economic-impact-european-american-foulbrood-on-albertas-beekeeping-industry

2. CARD 2023: expanded curation, support for machine learning, and resistome prediction at the Comprehensive Antibiotic Resistance Database

3. Evidence for plasmid-mediated tetracycline resistance in Paenibacillus larvae, the causal agent of American Foulbrood (AFB) disease in honeybees

4. Requirements for In Vitro Germination of Paenibacillus larvae Spores

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