Scinovex
article Open AccessTop 1% cited

Comparative Genomics of Multidrug Resistance in Acinetobacter baumannii

PLoS Genetics · 2006 · Vol. 2(1) · pp. e7–e7
Pierre‐Edouard FournierDavid VallenetValérie BarbeStéphane AudicHiroyuki OgataLaurent PoirelHervé RichetCatherine RobertSophie MangenotChantal AbergelPatrice NordmannJean WeissenbachDidier RaoultJean‐Michel Claverie

Abstract

Acinetobacter baumannii is a species of nonfermentative gram-negative bacteria commonly found in water and soil. This organism was susceptible to most antibiotics in the 1970s. It has now become a major cause of hospital-acquired infections worldwide due to its remarkable propensity to rapidly acquire resistance determinants to a wide range of antibacterial agents. Here we use a comparative genomic approach to identify the complete repertoire of resistance genes exhibited by the multidrug-resistant A. baumannii strain AYE, which is epidemic in France, as well as to investigate the mechanisms of their acquisition by comparison with the fully susceptible A. baumannii strain SDF, which is associated with human body lice. The assembly of the whole shotgun genome sequences of the strains AYE and SDF gave an estimated size of 3.9 and 3.2 Mb, respectively. A. baumannii strain AYE exhibits an 86-kb genomic region termed a resistance island--the largest identified to date--in which 45 resistance genes are clustered. At the homologous location, the SDF strain exhibits a 20 kb-genomic island flanked by transposases but devoid of resistance markers. Such a switching genomic structure might be a hotspot that could explain the rapid acquisition of resistance markers under antimicrobial pressure. Sequence similarity and phylogenetic analyses confirm that most of the resistance genes found in the A. baumannii strain AYE have been recently acquired from bacteria of the genera Pseudomonas, Salmonella, or Escherichia. This study also resulted in the discovery of 19 new putative resistance genes. Whole-genome sequencing appears to be a fast and efficient approach to the exhaustive identification of resistance genes in epidemic infectious agents of clinical significance.

Antibiotic Resistance in BacteriaGenomics and Phylogenetic StudiesBacterial Genetics and BiotechnologyBiologyAcinetobacter baumanniiGeneticsComparative genomicsAntibiotic resistanceGenomic islandMicrobiologyMultiple drug resistanceGenomeShotgun sequencing

MeSH terms

Acinetobacter InfectionsAnimalsChromosome MappingGenes, BacterialGenetic TechniquesHumansModels, GeneticPhylogenyOpen Reading FramesGenomicsDrug Resistance, Multiple, BacterialAcinetobacter baumannii

Funding

  • American Association of Bovine Practitioners
  • Centre National de la Recherche Scientifique
Citations
803
FWCI
15.17
field-weighted impact
References
73
Percentile
99%
vs. same field & year
Citations per year
Cited by
Global Challenge of Multidrug-Resistant<i>Acinetobacter baumannii</i>
Antimicrobial Agents and Chemotherapy · 2007 · 1,128 citations
<i>Acinetobacter baumannii</i> : Emergence of a Successful Pathogen
Clinical Microbiology Reviews · 2008 · 3,228 citations
Shifting the genomic gold standard for the prokaryotic species definition
Proceedings of the National Academy of Sciences · 2009 · 6,211 citations
The Challenge of Efflux-Mediated Antibiotic Resistance in Gram-Negative Bacteria
Clinical Microbiology Reviews · 2015 · 1,520 citations
Efflux-Mediated Drug Resistance in Bacteria
Drugs · 2009 · 924 citations
An increasing threat in hospitals: multidrug-resistant Acinetobacter baumannii
Nature Reviews Microbiology · 2007 · 1,791 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.