Comparative Analysis of Extended-Spectrum-β-Lactamase CTX-M-65-Producing Salmonella enterica Serovar Infantis Isolates from Humans, Food Animals, and Retail Chickens in the United States

Author:

Tate Heather1,Folster Jason P.2,Hsu Chih-Hao1,Chen Jessica23,Hoffmann Maria4,Li Cong1,Morales Cesar5,Tyson Gregory H.1,Mukherjee Sampa1,Brown Allison C.2,Green Alice5,Wilson Wanda5,Dessai Uday5,Abbott Jason1,Joseph Lavin2,Haro Jovita5,Ayers Sherry1,McDermott Patrick F.1,Zhao Shaohua1

Affiliation:

1. Center for Veterinary Medicine, U.S. Food and Drug Administration, Silver Spring, Maryland, USA

2. National Center for Emerging and Zoonotic Infectious Diseases, Centers for Disease Control and Prevention, Atlanta, Georgia, USA

3. IHRC, Inc., Atlanta, Georgia, USA

4. Center for Food Safety and Applied Nutrition, U.S. Food and Drug Administration, Silver Spring, Maryland, USA

5. Food Safety Inspection Service, U.S. Department of Agriculture, Washington, DC, USA

Abstract

ABSTRACT We sequenced the genomes of 10 Salmonella enterica serovar Infantis isolates containing bla CTX-M-65 obtained from chicken, cattle, and human sources collected between 2012 and 2015 in the United States through routine National Antimicrobial Resistance Monitoring System (NARMS) surveillance and product sampling programs. We also completely assembled the plasmids from four of the isolates. All isolates had a D87Y mutation in the gyrA gene and harbored between 7 and 10 resistance genes [ aph(4)-Ia , aac(3)-IVa , aph(3)-Ic , bla CTX-M-65 , fosA3 , floR , dfrA14 , sul1 , tetA , aadA1 ] located in two distinct sites of a megaplasmid (∼316 to 323 kb) similar to that described in a bla CTX-M-65 -positive S . Infantis isolate from a patient in Italy. High-quality single nucleotide polymorphism (hqSNP) analysis revealed that all U.S. isolates were closely related, separated by only 1 to 38 pairwise high-quality SNPs, indicating a high likelihood that strains from humans, chickens, and cattle recently evolved from a common ancestor. The U.S. isolates were genetically similar to the bla CTX-M-65 -positive S . Infantis isolate from Italy, with a separation of 34 to 47 SNPs. This is the first report of the bla CTX-M-65 gene and the pESI (plasmid for emerging S . Infantis)-like megaplasmid from S . Infantis in the United States, and it illustrates the importance of applying a global One Health human and animal perspective to combat antimicrobial resistance.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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