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Annotation of Secretariat and Hydrus, two DJ cluster phages isolated on Gordonia rubripertincta

Secretariat and Hydrus are phages grouped into the DJ cluster that were isolated on Gordonia rubripertincta NRRL B-16540. The phages have 75% nucleotide identity and share 73% gene content. Secretariat has a genome with 84 predicted genes, while Hydrus has 91 predicted genes and can also infect Gord...

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Autores principales: Bland, Jackson, Miller, Sydney, Algarin-Martinez, Elijah D., Biggs, Abbigail M., Cavasini, Maria E. D., Chase, Michael A., Coleman, Caitlyn, Correa, Victoria, Danielson, Don F., Dean, Wynter R., French, Joseph L., Horne, Mae E., Macumber, Breanna M., Martini, Francesca Kristal, Mazzei, Sydney G., McGarrah, Coen E. E., Odegaard, Oslow, Parameswaran, Indu S., Quarterman, Corrisa, Rand, Taylor M., Ruiz-Houston, Kira M., Sciacchitano, Ava R., Seidensticker, Nina S., Soltys, Anna, Terron-Osorio, Adrian E., Todd, Allyson L., Wood, Audrey R., Ungrey, Maxwell D., Pollenz, Richard S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10586112/
https://www.ncbi.nlm.nih.gov/pubmed/37750725
http://dx.doi.org/10.1128/MRA.00623-23
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author Bland, Jackson
Miller, Sydney
Algarin-Martinez, Elijah D.
Biggs, Abbigail M.
Cavasini, Maria E. D.
Chase, Michael A.
Coleman, Caitlyn
Correa, Victoria
Danielson, Don F.
Dean, Wynter R.
French, Joseph L.
Horne, Mae E.
Macumber, Breanna M.
Martini, Francesca Kristal
Mazzei, Sydney G.
McGarrah, Coen E. E.
Odegaard, Oslow
Parameswaran, Indu S.
Quarterman, Corrisa
Rand, Taylor M.
Ruiz-Houston, Kira M.
Sciacchitano, Ava R.
Seidensticker, Nina S.
Soltys, Anna
Terron-Osorio, Adrian E.
Todd, Allyson L.
Wood, Audrey R.
Ungrey, Maxwell D.
Pollenz, Richard S.
author_facet Bland, Jackson
Miller, Sydney
Algarin-Martinez, Elijah D.
Biggs, Abbigail M.
Cavasini, Maria E. D.
Chase, Michael A.
Coleman, Caitlyn
Correa, Victoria
Danielson, Don F.
Dean, Wynter R.
French, Joseph L.
Horne, Mae E.
Macumber, Breanna M.
Martini, Francesca Kristal
Mazzei, Sydney G.
McGarrah, Coen E. E.
Odegaard, Oslow
Parameswaran, Indu S.
Quarterman, Corrisa
Rand, Taylor M.
Ruiz-Houston, Kira M.
Sciacchitano, Ava R.
Seidensticker, Nina S.
Soltys, Anna
Terron-Osorio, Adrian E.
Todd, Allyson L.
Wood, Audrey R.
Ungrey, Maxwell D.
Pollenz, Richard S.
author_sort Bland, Jackson
collection PubMed
description Secretariat and Hydrus are phages grouped into the DJ cluster that were isolated on Gordonia rubripertincta NRRL B-16540. The phages have 75% nucleotide identity and share 73% gene content. Secretariat has a genome with 84 predicted genes, while Hydrus has 91 predicted genes and can also infect Gordonia terrae 3612.
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spelling pubmed-105861122023-10-20 Annotation of Secretariat and Hydrus, two DJ cluster phages isolated on Gordonia rubripertincta Bland, Jackson Miller, Sydney Algarin-Martinez, Elijah D. Biggs, Abbigail M. Cavasini, Maria E. D. Chase, Michael A. Coleman, Caitlyn Correa, Victoria Danielson, Don F. Dean, Wynter R. French, Joseph L. Horne, Mae E. Macumber, Breanna M. Martini, Francesca Kristal Mazzei, Sydney G. McGarrah, Coen E. E. Odegaard, Oslow Parameswaran, Indu S. Quarterman, Corrisa Rand, Taylor M. Ruiz-Houston, Kira M. Sciacchitano, Ava R. Seidensticker, Nina S. Soltys, Anna Terron-Osorio, Adrian E. Todd, Allyson L. Wood, Audrey R. Ungrey, Maxwell D. Pollenz, Richard S. Microbiol Resour Announc Genome Sequences Secretariat and Hydrus are phages grouped into the DJ cluster that were isolated on Gordonia rubripertincta NRRL B-16540. The phages have 75% nucleotide identity and share 73% gene content. Secretariat has a genome with 84 predicted genes, while Hydrus has 91 predicted genes and can also infect Gordonia terrae 3612. American Society for Microbiology 2023-09-26 /pmc/articles/PMC10586112/ /pubmed/37750725 http://dx.doi.org/10.1128/MRA.00623-23 Text en Copyright © 2023 Bland 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
Bland, Jackson
Miller, Sydney
Algarin-Martinez, Elijah D.
Biggs, Abbigail M.
Cavasini, Maria E. D.
Chase, Michael A.
Coleman, Caitlyn
Correa, Victoria
Danielson, Don F.
Dean, Wynter R.
French, Joseph L.
Horne, Mae E.
Macumber, Breanna M.
Martini, Francesca Kristal
Mazzei, Sydney G.
McGarrah, Coen E. E.
Odegaard, Oslow
Parameswaran, Indu S.
Quarterman, Corrisa
Rand, Taylor M.
Ruiz-Houston, Kira M.
Sciacchitano, Ava R.
Seidensticker, Nina S.
Soltys, Anna
Terron-Osorio, Adrian E.
Todd, Allyson L.
Wood, Audrey R.
Ungrey, Maxwell D.
Pollenz, Richard S.
Annotation of Secretariat and Hydrus, two DJ cluster phages isolated on Gordonia rubripertincta
title Annotation of Secretariat and Hydrus, two DJ cluster phages isolated on Gordonia rubripertincta
title_full Annotation of Secretariat and Hydrus, two DJ cluster phages isolated on Gordonia rubripertincta
title_fullStr Annotation of Secretariat and Hydrus, two DJ cluster phages isolated on Gordonia rubripertincta
title_full_unstemmed Annotation of Secretariat and Hydrus, two DJ cluster phages isolated on Gordonia rubripertincta
title_short Annotation of Secretariat and Hydrus, two DJ cluster phages isolated on Gordonia rubripertincta
title_sort annotation of secretariat and hydrus, two dj cluster phages isolated on gordonia rubripertincta
topic Genome Sequences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10586112/
https://www.ncbi.nlm.nih.gov/pubmed/37750725
http://dx.doi.org/10.1128/MRA.00623-23
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