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Pyruvic Oxime Nitrification and Copper and Nickel Resistance by a Cupriavidus pauculus, an Active Heterotrophic Nitrifier-Denitrifier

Heterotrophic nitrifiers synthesize nitrogenous gasses when nitrifying ammonium ion. A Cupriavidus pauculus, previously thought an Alcaligenes sp. and noted as an active heterotrophic nitrifier-denitrifier, was examined for its ability to produce nitrogen gas (N(2)) and nitrous oxide (N(2)O) while h...

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Autores principales: Ramirez, Miguel, Obrzydowski, Jennifer, Ayers, Mary, Virparia, Sonia, Wang, Meijing, Stefan, Kurtis, Linchangco, Richard, Castignetti, Domenic
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4279423/
https://www.ncbi.nlm.nih.gov/pubmed/25580463
http://dx.doi.org/10.1155/2014/901702
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author Ramirez, Miguel
Obrzydowski, Jennifer
Ayers, Mary
Virparia, Sonia
Wang, Meijing
Stefan, Kurtis
Linchangco, Richard
Castignetti, Domenic
author_facet Ramirez, Miguel
Obrzydowski, Jennifer
Ayers, Mary
Virparia, Sonia
Wang, Meijing
Stefan, Kurtis
Linchangco, Richard
Castignetti, Domenic
author_sort Ramirez, Miguel
collection PubMed
description Heterotrophic nitrifiers synthesize nitrogenous gasses when nitrifying ammonium ion. A Cupriavidus pauculus, previously thought an Alcaligenes sp. and noted as an active heterotrophic nitrifier-denitrifier, was examined for its ability to produce nitrogen gas (N(2)) and nitrous oxide (N(2)O) while heterotrophically nitrifying the organic substrate pyruvic oxime [CH(3)–C(NOH)–COOH]. Neither N(2) nor N(2)O were produced. Nucleotide and phylogenetic analyses indicated that the organism is a member of a genus (Cupriavidus) known for its resistance to metals and its metabolism of xenobiotics. The microbe (a Cupriavidus pauculus designated as C. pauculus strain UM1) was examined for its ability to perform heterotrophic nitrification in the presence of Cu(2+) and Ni(2+) and to metabolize the xenobiotic phenol. The bacterium heterotrophically nitrified well when either 1 mM Cu(2+) or 0.5 mM Ni(2+) was present in either enriched or minimal medium. The organism also used phenol as a sole carbon source in either the presence or absence of 1 mM Cu(2+) or 0.5 mM Ni(2+). The ability of this isolate to perform a number of different metabolisms, its noteworthy resistance to copper and nickel, and its potential use as a bioremediation agent are discussed.
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spelling pubmed-42794232015-01-11 Pyruvic Oxime Nitrification and Copper and Nickel Resistance by a Cupriavidus pauculus, an Active Heterotrophic Nitrifier-Denitrifier Ramirez, Miguel Obrzydowski, Jennifer Ayers, Mary Virparia, Sonia Wang, Meijing Stefan, Kurtis Linchangco, Richard Castignetti, Domenic ScientificWorldJournal Research Article Heterotrophic nitrifiers synthesize nitrogenous gasses when nitrifying ammonium ion. A Cupriavidus pauculus, previously thought an Alcaligenes sp. and noted as an active heterotrophic nitrifier-denitrifier, was examined for its ability to produce nitrogen gas (N(2)) and nitrous oxide (N(2)O) while heterotrophically nitrifying the organic substrate pyruvic oxime [CH(3)–C(NOH)–COOH]. Neither N(2) nor N(2)O were produced. Nucleotide and phylogenetic analyses indicated that the organism is a member of a genus (Cupriavidus) known for its resistance to metals and its metabolism of xenobiotics. The microbe (a Cupriavidus pauculus designated as C. pauculus strain UM1) was examined for its ability to perform heterotrophic nitrification in the presence of Cu(2+) and Ni(2+) and to metabolize the xenobiotic phenol. The bacterium heterotrophically nitrified well when either 1 mM Cu(2+) or 0.5 mM Ni(2+) was present in either enriched or minimal medium. The organism also used phenol as a sole carbon source in either the presence or absence of 1 mM Cu(2+) or 0.5 mM Ni(2+). The ability of this isolate to perform a number of different metabolisms, its noteworthy resistance to copper and nickel, and its potential use as a bioremediation agent are discussed. Hindawi Publishing Corporation 2014 2014-12-15 /pmc/articles/PMC4279423/ /pubmed/25580463 http://dx.doi.org/10.1155/2014/901702 Text en Copyright © 2014 Miguel Ramirez et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ramirez, Miguel
Obrzydowski, Jennifer
Ayers, Mary
Virparia, Sonia
Wang, Meijing
Stefan, Kurtis
Linchangco, Richard
Castignetti, Domenic
Pyruvic Oxime Nitrification and Copper and Nickel Resistance by a Cupriavidus pauculus, an Active Heterotrophic Nitrifier-Denitrifier
title Pyruvic Oxime Nitrification and Copper and Nickel Resistance by a Cupriavidus pauculus, an Active Heterotrophic Nitrifier-Denitrifier
title_full Pyruvic Oxime Nitrification and Copper and Nickel Resistance by a Cupriavidus pauculus, an Active Heterotrophic Nitrifier-Denitrifier
title_fullStr Pyruvic Oxime Nitrification and Copper and Nickel Resistance by a Cupriavidus pauculus, an Active Heterotrophic Nitrifier-Denitrifier
title_full_unstemmed Pyruvic Oxime Nitrification and Copper and Nickel Resistance by a Cupriavidus pauculus, an Active Heterotrophic Nitrifier-Denitrifier
title_short Pyruvic Oxime Nitrification and Copper and Nickel Resistance by a Cupriavidus pauculus, an Active Heterotrophic Nitrifier-Denitrifier
title_sort pyruvic oxime nitrification and copper and nickel resistance by a cupriavidus pauculus, an active heterotrophic nitrifier-denitrifier
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4279423/
https://www.ncbi.nlm.nih.gov/pubmed/25580463
http://dx.doi.org/10.1155/2014/901702
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