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Thermus oshimai JL-2 and T. thermophilus JL-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling

The complete genomes of Thermus oshimai JL-2 and T. thermophilus JL-18 each consist of a circular chromosome, 2.07 Mb and 1.9 Mb, respectively, and two plasmids ranging from 0.27 Mb to 57.2 kb. Comparison of the T. thermophilus JL-18 chromosome with those from other strains of T. thermophilus reveal...

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Autores principales: Murugapiran, Senthil K., Huntemann, Marcel, Wei, Chia-Lin, Han, James, Detter, J. C., Han, Cliff, Erkkila, Tracy H., Teshima, Hazuki, Chen, Amy, Kyrpides, Nikos, Mavrommatis, Konstantinos, Markowitz, Victor, Szeto, Ernest, Ivanova, Natalia, Pagani, Ioanna, Pati, Amrita, Goodwin, Lynne, Peters, Lin, Pitluck, Sam, Lam, Jenny, McDonald, Austin I., Dodsworth, Jeremy A., Woyke, Tanja, Hedlund, Brian P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Michigan State University 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3764938/
https://www.ncbi.nlm.nih.gov/pubmed/24019992
http://dx.doi.org/10.4056/sigs.3667269
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author Murugapiran, Senthil K.
Huntemann, Marcel
Wei, Chia-Lin
Han, James
Detter, J. C.
Han, Cliff
Erkkila, Tracy H.
Teshima, Hazuki
Chen, Amy
Kyrpides, Nikos
Mavrommatis, Konstantinos
Markowitz, Victor
Szeto, Ernest
Ivanova, Natalia
Pagani, Ioanna
Pati, Amrita
Goodwin, Lynne
Peters, Lin
Pitluck, Sam
Lam, Jenny
McDonald, Austin I.
Dodsworth, Jeremy A.
Woyke, Tanja
Hedlund, Brian P.
author_facet Murugapiran, Senthil K.
Huntemann, Marcel
Wei, Chia-Lin
Han, James
Detter, J. C.
Han, Cliff
Erkkila, Tracy H.
Teshima, Hazuki
Chen, Amy
Kyrpides, Nikos
Mavrommatis, Konstantinos
Markowitz, Victor
Szeto, Ernest
Ivanova, Natalia
Pagani, Ioanna
Pati, Amrita
Goodwin, Lynne
Peters, Lin
Pitluck, Sam
Lam, Jenny
McDonald, Austin I.
Dodsworth, Jeremy A.
Woyke, Tanja
Hedlund, Brian P.
author_sort Murugapiran, Senthil K.
collection PubMed
description The complete genomes of Thermus oshimai JL-2 and T. thermophilus JL-18 each consist of a circular chromosome, 2.07 Mb and 1.9 Mb, respectively, and two plasmids ranging from 0.27 Mb to 57.2 kb. Comparison of the T. thermophilus JL-18 chromosome with those from other strains of T. thermophilus revealed a high degree of synteny, whereas the megaplasmids from the same strains were highly plastic. The T. oshimai JL-2 chromosome and megaplasmids shared little or no synteny with other sequenced Thermus strains. Phylogenomic analyses using a concatenated set of conserved proteins confirmed the phylogenetic and taxonomic assignments based on 16S rRNA phylogenetics. Both chromosomes encode a complete glycolysis, tricarboxylic acid (TCA) cycle, and pentose phosphate pathway plus glucosidases, glycosidases, proteases, and peptidases, highlighting highly versatile heterotrophic capabilities. Megaplasmids of both strains contained a gene cluster encoding enzymes predicted to catalyze the sequential reduction of nitrate to nitrous oxide; however, the nitrous oxide reductase required for the terminal step in denitrification was absent, consistent with their incomplete denitrification phenotypes. A sox gene cluster was identified in both chromosomes, suggesting a mode of chemolithotrophy. In addition, nrf and psr gene clusters in T. oshmai JL-2 suggest respiratory nitrite ammonification and polysulfide reduction as possible modes of anaerobic respiration.
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spelling pubmed-37649382013-09-09 Thermus oshimai JL-2 and T. thermophilus JL-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling Murugapiran, Senthil K. Huntemann, Marcel Wei, Chia-Lin Han, James Detter, J. C. Han, Cliff Erkkila, Tracy H. Teshima, Hazuki Chen, Amy Kyrpides, Nikos Mavrommatis, Konstantinos Markowitz, Victor Szeto, Ernest Ivanova, Natalia Pagani, Ioanna Pati, Amrita Goodwin, Lynne Peters, Lin Pitluck, Sam Lam, Jenny McDonald, Austin I. Dodsworth, Jeremy A. Woyke, Tanja Hedlund, Brian P. Stand Genomic Sci Short Genome Reports The complete genomes of Thermus oshimai JL-2 and T. thermophilus JL-18 each consist of a circular chromosome, 2.07 Mb and 1.9 Mb, respectively, and two plasmids ranging from 0.27 Mb to 57.2 kb. Comparison of the T. thermophilus JL-18 chromosome with those from other strains of T. thermophilus revealed a high degree of synteny, whereas the megaplasmids from the same strains were highly plastic. The T. oshimai JL-2 chromosome and megaplasmids shared little or no synteny with other sequenced Thermus strains. Phylogenomic analyses using a concatenated set of conserved proteins confirmed the phylogenetic and taxonomic assignments based on 16S rRNA phylogenetics. Both chromosomes encode a complete glycolysis, tricarboxylic acid (TCA) cycle, and pentose phosphate pathway plus glucosidases, glycosidases, proteases, and peptidases, highlighting highly versatile heterotrophic capabilities. Megaplasmids of both strains contained a gene cluster encoding enzymes predicted to catalyze the sequential reduction of nitrate to nitrous oxide; however, the nitrous oxide reductase required for the terminal step in denitrification was absent, consistent with their incomplete denitrification phenotypes. A sox gene cluster was identified in both chromosomes, suggesting a mode of chemolithotrophy. In addition, nrf and psr gene clusters in T. oshmai JL-2 suggest respiratory nitrite ammonification and polysulfide reduction as possible modes of anaerobic respiration. Michigan State University 2013-02-25 /pmc/articles/PMC3764938/ /pubmed/24019992 http://dx.doi.org/10.4056/sigs.3667269 Text en Copyright © retained by original authors http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Genome Reports
Murugapiran, Senthil K.
Huntemann, Marcel
Wei, Chia-Lin
Han, James
Detter, J. C.
Han, Cliff
Erkkila, Tracy H.
Teshima, Hazuki
Chen, Amy
Kyrpides, Nikos
Mavrommatis, Konstantinos
Markowitz, Victor
Szeto, Ernest
Ivanova, Natalia
Pagani, Ioanna
Pati, Amrita
Goodwin, Lynne
Peters, Lin
Pitluck, Sam
Lam, Jenny
McDonald, Austin I.
Dodsworth, Jeremy A.
Woyke, Tanja
Hedlund, Brian P.
Thermus oshimai JL-2 and T. thermophilus JL-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling
title Thermus oshimai JL-2 and T. thermophilus JL-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling
title_full Thermus oshimai JL-2 and T. thermophilus JL-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling
title_fullStr Thermus oshimai JL-2 and T. thermophilus JL-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling
title_full_unstemmed Thermus oshimai JL-2 and T. thermophilus JL-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling
title_short Thermus oshimai JL-2 and T. thermophilus JL-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling
title_sort thermus oshimai jl-2 and t. thermophilus jl-18 genome analysis illuminates pathways for carbon, nitrogen, and sulfur cycling
topic Short Genome Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3764938/
https://www.ncbi.nlm.nih.gov/pubmed/24019992
http://dx.doi.org/10.4056/sigs.3667269
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