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Draft Genome Sequences of Three Antibiotic-Producing Soil Bacteria, Staphylococcus pasteuri WAM01, Peribacillus butanolivorans WAM04, and Micrococcus yunnanensis WAM06, with Growth-Inhibiting Effects against Commensal Neisseria Strains

We report the isolation, identification, and assemblies of three antibiotic-producing soil bacteria (Staphylococcus pasteuri, Peribacillus butanolivorans, and Micrococcus yunnanensis) that inhibit the growth of Neisseria commensals in coculture. With pathogenic Neisseria strains becoming increasingl...

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Autores principales: Reilly, Emily, Alfaro, Juan A., Borzelleri, Alexis R., Branco, Emma G., Conklin, Declan C., Held, Emmaly S., Kulee, Fio Z., Kuzma, Amelia J., Langdon, Nic, Lasko, Alyssa M., Neri, Sean T., Nichols, Jasmine A., Olawuyi, Temitope R., Park, Eunice, Rugullies, Kadrian, Wilkie, Carter D., Krebs, Laura R., Carter, Dawn, Hudson, André O., Wadsworth, Crista B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9583798/
https://www.ncbi.nlm.nih.gov/pubmed/36094179
http://dx.doi.org/10.1128/mra.00627-22
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author Reilly, Emily
Alfaro, Juan A.
Borzelleri, Alexis R.
Branco, Emma G.
Conklin, Declan C.
Held, Emmaly S.
Kulee, Fio Z.
Kuzma, Amelia J.
Langdon, Nic
Lasko, Alyssa M.
Neri, Sean T.
Nichols, Jasmine A.
Olawuyi, Temitope R.
Park, Eunice
Rugullies, Kadrian
Wilkie, Carter D.
Krebs, Laura R.
Carter, Dawn
Hudson, André O.
Wadsworth, Crista B.
author_facet Reilly, Emily
Alfaro, Juan A.
Borzelleri, Alexis R.
Branco, Emma G.
Conklin, Declan C.
Held, Emmaly S.
Kulee, Fio Z.
Kuzma, Amelia J.
Langdon, Nic
Lasko, Alyssa M.
Neri, Sean T.
Nichols, Jasmine A.
Olawuyi, Temitope R.
Park, Eunice
Rugullies, Kadrian
Wilkie, Carter D.
Krebs, Laura R.
Carter, Dawn
Hudson, André O.
Wadsworth, Crista B.
author_sort Reilly, Emily
collection PubMed
description We report the isolation, identification, and assemblies of three antibiotic-producing soil bacteria (Staphylococcus pasteuri, Peribacillus butanolivorans, and Micrococcus yunnanensis) that inhibit the growth of Neisseria commensals in coculture. With pathogenic Neisseria strains becoming increasingly resistant to antibiotics, bioprospecting for novel antimicrobials using commensal relatives may facilitate discovery of clinically useful drugs.
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spelling pubmed-95837982022-10-21 Draft Genome Sequences of Three Antibiotic-Producing Soil Bacteria, Staphylococcus pasteuri WAM01, Peribacillus butanolivorans WAM04, and Micrococcus yunnanensis WAM06, with Growth-Inhibiting Effects against Commensal Neisseria Strains Reilly, Emily Alfaro, Juan A. Borzelleri, Alexis R. Branco, Emma G. Conklin, Declan C. Held, Emmaly S. Kulee, Fio Z. Kuzma, Amelia J. Langdon, Nic Lasko, Alyssa M. Neri, Sean T. Nichols, Jasmine A. Olawuyi, Temitope R. Park, Eunice Rugullies, Kadrian Wilkie, Carter D. Krebs, Laura R. Carter, Dawn Hudson, André O. Wadsworth, Crista B. Microbiol Resour Announc Genome Sequences We report the isolation, identification, and assemblies of three antibiotic-producing soil bacteria (Staphylococcus pasteuri, Peribacillus butanolivorans, and Micrococcus yunnanensis) that inhibit the growth of Neisseria commensals in coculture. With pathogenic Neisseria strains becoming increasingly resistant to antibiotics, bioprospecting for novel antimicrobials using commensal relatives may facilitate discovery of clinically useful drugs. American Society for Microbiology 2022-09-12 /pmc/articles/PMC9583798/ /pubmed/36094179 http://dx.doi.org/10.1128/mra.00627-22 Text en Copyright © 2022 Reilly et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Genome Sequences
Reilly, Emily
Alfaro, Juan A.
Borzelleri, Alexis R.
Branco, Emma G.
Conklin, Declan C.
Held, Emmaly S.
Kulee, Fio Z.
Kuzma, Amelia J.
Langdon, Nic
Lasko, Alyssa M.
Neri, Sean T.
Nichols, Jasmine A.
Olawuyi, Temitope R.
Park, Eunice
Rugullies, Kadrian
Wilkie, Carter D.
Krebs, Laura R.
Carter, Dawn
Hudson, André O.
Wadsworth, Crista B.
Draft Genome Sequences of Three Antibiotic-Producing Soil Bacteria, Staphylococcus pasteuri WAM01, Peribacillus butanolivorans WAM04, and Micrococcus yunnanensis WAM06, with Growth-Inhibiting Effects against Commensal Neisseria Strains
title Draft Genome Sequences of Three Antibiotic-Producing Soil Bacteria, Staphylococcus pasteuri WAM01, Peribacillus butanolivorans WAM04, and Micrococcus yunnanensis WAM06, with Growth-Inhibiting Effects against Commensal Neisseria Strains
title_full Draft Genome Sequences of Three Antibiotic-Producing Soil Bacteria, Staphylococcus pasteuri WAM01, Peribacillus butanolivorans WAM04, and Micrococcus yunnanensis WAM06, with Growth-Inhibiting Effects against Commensal Neisseria Strains
title_fullStr Draft Genome Sequences of Three Antibiotic-Producing Soil Bacteria, Staphylococcus pasteuri WAM01, Peribacillus butanolivorans WAM04, and Micrococcus yunnanensis WAM06, with Growth-Inhibiting Effects against Commensal Neisseria Strains
title_full_unstemmed Draft Genome Sequences of Three Antibiotic-Producing Soil Bacteria, Staphylococcus pasteuri WAM01, Peribacillus butanolivorans WAM04, and Micrococcus yunnanensis WAM06, with Growth-Inhibiting Effects against Commensal Neisseria Strains
title_short Draft Genome Sequences of Three Antibiotic-Producing Soil Bacteria, Staphylococcus pasteuri WAM01, Peribacillus butanolivorans WAM04, and Micrococcus yunnanensis WAM06, with Growth-Inhibiting Effects against Commensal Neisseria Strains
title_sort draft genome sequences of three antibiotic-producing soil bacteria, staphylococcus pasteuri wam01, peribacillus butanolivorans wam04, and micrococcus yunnanensis wam06, with growth-inhibiting effects against commensal neisseria strains
topic Genome Sequences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9583798/
https://www.ncbi.nlm.nih.gov/pubmed/36094179
http://dx.doi.org/10.1128/mra.00627-22
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