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Draft Whole-Genome Sequences of Ciprofloxacin-Resistant Derivatives of a Bacillus anthracis ΔANR Strain Lacking pXO1 and pXO2 Plasmids

Mutants of an attenuated Bacillus anthracis (ΔANR) strain conferring increasing levels of ciprofloxacin resistance have been described. Here, we report the draft genome sequences of the parent strain (ΔANR pXO1(−), pXO2(−)) and its derivatives conferring low (step 1; 0.5 μg/ml), medium (step 2; 8 to...

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Autores principales: Biggs, Tracey D., Karavis, Mark A., Harris, Jacquelyn V., Hill, Jessica M., Bernhards, Robert C., Price, Lance B., Keim, Paul, Goodwin, Bruce G., Sozhamannan, Shanmuga
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7380533/
https://www.ncbi.nlm.nih.gov/pubmed/32273351
http://dx.doi.org/10.1128/MRA.00056-20
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author Biggs, Tracey D.
Karavis, Mark A.
Harris, Jacquelyn V.
Hill, Jessica M.
Bernhards, Robert C.
Price, Lance B.
Keim, Paul
Goodwin, Bruce G.
Sozhamannan, Shanmuga
author_facet Biggs, Tracey D.
Karavis, Mark A.
Harris, Jacquelyn V.
Hill, Jessica M.
Bernhards, Robert C.
Price, Lance B.
Keim, Paul
Goodwin, Bruce G.
Sozhamannan, Shanmuga
author_sort Biggs, Tracey D.
collection PubMed
description Mutants of an attenuated Bacillus anthracis (ΔANR) strain conferring increasing levels of ciprofloxacin resistance have been described. Here, we report the draft genome sequences of the parent strain (ΔANR pXO1(−), pXO2(−)) and its derivatives conferring low (step 1; 0.5 μg/ml), medium (step 2; 8 to 16 μg/ml), and high (step 3; 32 to 64 μg/ml) levels of ciprofloxacin resistance.
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spelling pubmed-73805332020-07-24 Draft Whole-Genome Sequences of Ciprofloxacin-Resistant Derivatives of a Bacillus anthracis ΔANR Strain Lacking pXO1 and pXO2 Plasmids Biggs, Tracey D. Karavis, Mark A. Harris, Jacquelyn V. Hill, Jessica M. Bernhards, Robert C. Price, Lance B. Keim, Paul Goodwin, Bruce G. Sozhamannan, Shanmuga Microbiol Resour Announc Genome Sequences Mutants of an attenuated Bacillus anthracis (ΔANR) strain conferring increasing levels of ciprofloxacin resistance have been described. Here, we report the draft genome sequences of the parent strain (ΔANR pXO1(−), pXO2(−)) and its derivatives conferring low (step 1; 0.5 μg/ml), medium (step 2; 8 to 16 μg/ml), and high (step 3; 32 to 64 μg/ml) levels of ciprofloxacin resistance. American Society for Microbiology 2020-04-09 /pmc/articles/PMC7380533/ /pubmed/32273351 http://dx.doi.org/10.1128/MRA.00056-20 Text en https://doi.org/10.1128/AuthorWarrantyLicense.v1 This is a work of the U.S. Government and is not subject to copyright protection in the United States. Foreign copyrights may apply.
spellingShingle Genome Sequences
Biggs, Tracey D.
Karavis, Mark A.
Harris, Jacquelyn V.
Hill, Jessica M.
Bernhards, Robert C.
Price, Lance B.
Keim, Paul
Goodwin, Bruce G.
Sozhamannan, Shanmuga
Draft Whole-Genome Sequences of Ciprofloxacin-Resistant Derivatives of a Bacillus anthracis ΔANR Strain Lacking pXO1 and pXO2 Plasmids
title Draft Whole-Genome Sequences of Ciprofloxacin-Resistant Derivatives of a Bacillus anthracis ΔANR Strain Lacking pXO1 and pXO2 Plasmids
title_full Draft Whole-Genome Sequences of Ciprofloxacin-Resistant Derivatives of a Bacillus anthracis ΔANR Strain Lacking pXO1 and pXO2 Plasmids
title_fullStr Draft Whole-Genome Sequences of Ciprofloxacin-Resistant Derivatives of a Bacillus anthracis ΔANR Strain Lacking pXO1 and pXO2 Plasmids
title_full_unstemmed Draft Whole-Genome Sequences of Ciprofloxacin-Resistant Derivatives of a Bacillus anthracis ΔANR Strain Lacking pXO1 and pXO2 Plasmids
title_short Draft Whole-Genome Sequences of Ciprofloxacin-Resistant Derivatives of a Bacillus anthracis ΔANR Strain Lacking pXO1 and pXO2 Plasmids
title_sort draft whole-genome sequences of ciprofloxacin-resistant derivatives of a bacillus anthracis δanr strain lacking pxo1 and pxo2 plasmids
topic Genome Sequences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7380533/
https://www.ncbi.nlm.nih.gov/pubmed/32273351
http://dx.doi.org/10.1128/MRA.00056-20
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