Genomic Analysis Points to Multiple Genetic Mechanisms for Non-Transformable Campylobacter jejuni ST-50

Author:

Parker Craig T.1ORCID,Villafuerte David A.2ORCID,Miller William G.1,Huynh Steven1,Chapman Mary H.1,Hanafy Zahra2ORCID,Jackson James H.2,Miller Morgan A.2,Kathariou Sophia2

Affiliation:

1. Produce Safety and Microbiology Research Unit, Agricultural Research Service, United States Department of Agriculture, Albany, CA 94710, USA

2. Department of Food, Nutrition and Bioprocessing Sciences, North Carolina State University, Raleigh, NC 27695, USA

Abstract

Campylobacter jejuni and Campylobacter coli are well known for their natural competence, i.e., their capacity for the uptake of naked DNA with subsequent transformation. This study identifies non-transformable C. jejuni and C. coli strains from domestic animals and employs genomic analysis to investigate the strain genotypes and their associated genetic mechanisms. The results reveal genetic associations leading to a non-transformable state, including functional DNase genes from bacteriophages and mutations within the cts-encoded DNA-uptake system, which impact the initial steps of the DNA uptake during natural transformation. Interestingly, all 38 tested C. jejuni ST-50 strains from the United States exhibit a high prevalence of non-transformability, and the strains harbor a variety of these genetic markers. This research emphasizes the role of these genetic markers in hindering the transfer of antimicrobial resistance (AMR) determinants, providing valuable insights into the genetic diversity of Campylobacter. As ST-50 is a major clone of C. jejuni globally, we additionally we determined the prevalence of the genetic markers for non-transformability among C. jejuni ST-50 from different regions of the world, revealing distinct patterns of evolution and a strong selective pressure on the loss of competence in ST-50 strains, particularly in the agricultural environment in the United States. Our findings contribute to a comprehensive understanding of genetic exchange mechanisms within Campylobacter strains, and their implications for antimicrobial resistance dissemination and evolutionary pathways within specific lineages.

Funder

National Institute of Food and Agriculture

USDA-ARS CRIS project

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference32 articles.

1. The clinical importance of emerging Campylobacter species;Man;Nat. Rev. Gastroenterol. Hepatol.,2011

2. Foodborne illness acquired in the United States—Major pathogens;Scallan;Emerg. Infect. Dis.,2011

3. Campylobacter species and Guillain-Barré syndrome;Nachamkin;Clin. Microbiol. Rev.,1998

4. Incidence of Campylobacter-Associated Guillain- Barré syndrome estimated from health insurance data;Crim;Foodborne Pathog. Dis.,2020

5. (2024, January 02). Antibiotic resistance threats in the United States, Available online: https://stacks.cdc.gov/view/cdc/82532.

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