Discovery of a Gene Conferring Multiple-Aminoglycoside Resistance in Escherichia coli

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Published inAntimicrobial Agents and Chemotherapy Vol. 54; no. 6; pp. 2666 - 2669
Main Authors Davis, Margaret A., Baker, Katherine N. K., Orfe, Lisa H., Shah, Devendra H., Besser, Thomas E., Call, Douglas R.
Format Journal Article
LanguageEnglish
Published United States American Society for Microbiology 01.06.2010
American Society for Microbiology (ASM)
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Abstract Classifications Services AAC Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley Reddit StumbleUpon Twitter current issue AAC About AAC Subscribers Authors Reviewers Advertisers Inquiries from the Press Permissions & Commercial Reprints ASM Journals Public Access Policy AAC RSS Feeds 1752 N Street N.W. • Washington DC 20036 202.737.3600 • 202.942.9355 fax • journals@asmusa.org Print ISSN: 0066-4804 Online ISSN: 1098-6596 Copyright © 2014 by the American Society for Microbiology.   For an alternate route to AAC .asm.org, visit: AAC       
AbstractList Bovine-origin Escherichia coli isolates were tested for resistance phenotypes using a disk diffusion assay and for resistance genotypes using a DNA microarray. An isolate with gentamicin and amikacin resistance but with no corresponding genes detected yielded a 1,056-bp DNA sequence with the closest homologues for its inferred protein sequence among a family of 16S rRNA methyltransferase enzymes. These enzymes confer high-level aminoglycoside resistance and have only recently been described in Gram-negative bacteria.Bovine-origin Escherichia coli isolates were tested for resistance phenotypes using a disk diffusion assay and for resistance genotypes using a DNA microarray. An isolate with gentamicin and amikacin resistance but with no corresponding genes detected yielded a 1,056-bp DNA sequence with the closest homologues for its inferred protein sequence among a family of 16S rRNA methyltransferase enzymes. These enzymes confer high-level aminoglycoside resistance and have only recently been described in Gram-negative bacteria.
Bovine-origin Escherichia coli isolates were tested for resistance phenotypes using a disk diffusion assay and for resistance genotypes using a DNA microarray. An isolate with gentamicin and amikacin resistance but with no corresponding genes detected yielded a 1,056-bp DNA sequence with the closest homologues for its inferred protein sequence among a family of 16S rRNA methyltransferase enzymes. These enzymes confer high-level aminoglycoside resistance and have only recently been described in Gram-negative bacteria.
Classifications Services AAC Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley Reddit StumbleUpon Twitter current issue AAC About AAC Subscribers Authors Reviewers Advertisers Inquiries from the Press Permissions & Commercial Reprints ASM Journals Public Access Policy AAC RSS Feeds 1752 N Street N.W. • Washington DC 20036 202.737.3600 • 202.942.9355 fax • journals@asmusa.org Print ISSN: 0066-4804 Online ISSN: 1098-6596 Copyright © 2014 by the American Society for Microbiology.   For an alternate route to AAC .asm.org, visit: AAC       
Bovine-origin Escherichia coli isolates were tested for resistance phenotypes using a disk diffusion assay and for resistance genotypes using a DNA microarray. An isolate with gentamicin and amikacin resistance but with no corresponding genes detected yielded a 1,056-bp DNA sequence with the closest homologues for its inferred protein sequence among a family of 16S rRNA methyltransferase enzymes. These enzymes confer high-level aminoglycoside resistance and have only recently been described in Gram-negative bacteria.
Author Katherine N. K. Baker
Thomas E. Besser
Douglas R. Call
Devendra H. Shah
Lisa H. Orfe
Margaret A. Davis
AuthorAffiliation Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, Washington 99164-7040
AuthorAffiliation_xml – name: Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, Washington 99164-7040
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  surname: Davis
  fullname: Davis, Margaret A.
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– sequence: 3
  givenname: Lisa H.
  surname: Orfe
  fullname: Orfe, Lisa H.
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– sequence: 4
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Bovine-origin Escherichia coli isolates were tested for resistance phenotypes using a disk diffusion assay and for resistance genotypes using a DNA microarray....
Bovine-origin Escherichia coli isolates were tested for resistance phenotypes using a disk diffusion assay and for resistance genotypes using a DNA microarray....
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SubjectTerms Animals
Base Sequence
Cattle
DNA Primers - genetics
DNA, Bacterial - genetics
Drug Resistance, Multiple, Bacterial
Drug Resistance, Multiple, Bacterial - genetics
Escherichia coli
Escherichia coli - drug effects
Escherichia coli - genetics
Escherichia coli - isolation & purification
Escherichia coli - metabolism
Genes, Bacterial
In Vitro Techniques
Mechanisms of Resistance
Methyltransferases - classification
Methyltransferases - genetics
Oligonucleotide Array Sequence Analysis
Phylogeny
RNA, Bacterial - metabolism
RNA, Ribosomal, 16S - metabolism
Title Discovery of a Gene Conferring Multiple-Aminoglycoside Resistance in Escherichia coli
URI http://aac.asm.org/content/54/6/2666.abstract
https://www.ncbi.nlm.nih.gov/pubmed/20368404
https://journals.asm.org/doi/10.1128/AAC.01743-09
https://www.proquest.com/docview/733148521
https://www.proquest.com/docview/746072134
https://pubmed.ncbi.nlm.nih.gov/PMC2876372
Volume 54
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