New Insights into Dissemination and Variation of the Health Care-Associated Pathogen Acinetobacter baumannii from Genomic Analysis

Author:

Wright Meredith S.1,Haft Daniel H.2,Harkins Derek M.2,Perez Federico3,Hujer Kristine M.34,Bajaksouzian Saralee5,Benard Michael F.6,Jacobs Michael R.57,Bonomo Robert A.348,Adams Mark D.1

Affiliation:

1. J. Craig Venter Institute, San Diego, California, USA

2. J. Craig Venter Institute, Rockville, Maryland, USA

3. Louis Stokes Cleveland Veterans Affairs Medical Center, Cleveland, Ohio, USA

4. Department of Medicine, Case Western Reserve University, Cleveland, Ohio, USA

5. Department of Pathology, University Hospitals Case Medical Center, Cleveland, Ohio, USA

6. Department of Biology, Case Western Reserve University, Cleveland, Ohio, USA

7. Department of Pathology, Case Western Reserve University, Cleveland, Ohio, USA

8. Departments of Pharmacology, Molecular Biology and Microbiology and Center for Proteomics, Case Western Reserve University, Cleveland, Ohio, USA

Abstract

ABSTRACT Acinetobacter baumannii is a globally important nosocomial pathogen characterized by an increasing incidence of multidrug resistance. Routes of dissemination and gene flow among health care facilities are poorly resolved and are important for understanding the epidemiology of A. baumannii , minimizing disease transmission, and improving patient outcomes. We used whole-genome sequencing to assess diversity and genome dynamics in 49 isolates from one United States hospital system during one year from 2007 to 2008. Core single-nucleotide-variant-based phylogenetic analysis revealed multiple founder strains and multiple independent strains recovered from the same patient yet was insufficient to fully resolve strain relationships, where gene content and insertion sequence patterns added additional discriminatory power. Gene content comparisons illustrated extensive and redundant antibiotic resistance gene carriage and direct evidence of gene transfer, recombination, gene loss, and mutation. Evidence of barriers to gene flow among hospital components was not found, suggesting complex mixing of strains and a large reservoir of A. baumannii strains capable of colonizing patients . IMPORTANCE Genome sequencing was used to characterize multidrug-resistant Acinetobacter baumannii strains from one United States hospital system during a 1-year period to better understand how A. baumannii strains that cause infection are related to one another. Extensive variation in gene content was found, even among strains that were very closely related phylogenetically and epidemiologically. Several mechanisms contributed to this diversity, including transfer of mobile genetic elements, mobilization of insertion sequences, insertion sequence-mediated deletions, and genome-wide homologous recombination. Variation in gene content, however, lacked clear spatial or temporal patterns, suggesting a diverse pool of circulating strains with considerable interaction between strains and hospital locations. Widespread genetic variation among strains from the same hospital and even the same patient, particularly involving antibiotic resistance genes, reinforces the need for molecular diagnostic testing and genomic analysis to determine resistance profiles, rather than a reliance primarily on strain typing and antimicrobial resistance phenotypes for epidemiological studies.

Publisher

American Society for Microbiology

Subject

Virology,Microbiology

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