Scinovex
article Open AccessTop 1% cited

The Comprehensive Antibiotic Resistance Database

Antimicrobial Agents and Chemotherapy · 2013 · Vol. 57(7) · pp. 3348–3357
Andrew G. McArthurNicholas WaglechnerFazmin NizamAustin YanMarisa Ann AzadAlison J. BaylayKirandeep BhullarMarc J. CanovaGianfranco De PascaleLinda EjimLindsay KalanAndrew KingKalinka KotevaMariya MorarMichael R. MulveyJ O’BrienA PawłowskiLaura J. V. PiddockPeter SpanogiannopoulosArlene D. SutherlandIrene TangPatricia L. TaylorMaulik ThakerWenliang WangMarie YanTennison YuGerard D. Wright

Abstract

The field of antibiotic drug discovery and the monitoring of new antibiotic resistance elements have yet to fully exploit the power of the genome revolution. Despite the fact that the first genomes sequenced of free living organisms were those of bacteria, there have been few specialized bioinformatic tools developed to mine the growing amount of genomic data associated with pathogens. In particular, there are few tools to study the genetics and genomics of antibiotic resistance and how it impacts bacterial populations, ecology, and the clinic. We have initiated development of such tools in the form of the Comprehensive Antibiotic Research Database (CARD; http://arpcard.mcmaster.ca). The CARD integrates disparate molecular and sequence data, provides a unique organizing principle in the form of the Antibiotic Resistance Ontology (ARO), and can quickly identify putative antibiotic resistance genes in new unannotated genome sequences. This unique platform provides an informatic tool that bridges antibiotic resistance concerns in health care, agriculture, and the environment.

Antibiotic Resistance in BacteriaGenomics and Phylogenetic StudiesPharmaceutical and Antibiotic Environmental ImpactsAntibiotic resistanceGenomeBiologyGenomicsAntibioticsComputational biologyBacterial genome sizeGeneticsDatabaseGene

MeSH terms

Anti-Infective AgentsBase SequenceDrug Resistance, MicrobialGenes, BacterialUser-Computer InterfaceGenome, BacterialComputational BiologyInternetDatabases, Genetic

Funding

  • Aeronautics Research and Development Board
Citations
2,238
FWCI
27.53
field-weighted impact
References
27
Percentile
100%
vs. same field & year
Citations per year
Related articles
The role of antibiotics and antibiotic resistance in nature
Environmental Microbiology · 2009 · 676 citations
Citation Network

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