Data on draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia)

The draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia) is presented. The complete genome assembly was of 2 713 207 bp with predicted completeness of 99.38%. Genome structural annotation revealed 2674...

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Main Authors: A.A. Korzhenkov, S.V. Toshchakov, O.A. Podosokorskaya, M.V. Patrushev, I.V. Kublanov
Format: Article
Language:English
Published: Elsevier 2020-12-01
Series:Data in Brief
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Online Access:http://www.sciencedirect.com/science/article/pii/S2352340920312294
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spelling doaj-829fe2aab6d64af9a86f76c516afb6bc2020-12-21T04:43:53ZengElsevierData in Brief2352-34092020-12-0133106336Data on draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia)A.A. Korzhenkov0S.V. Toshchakov1O.A. Podosokorskaya2M.V. Patrushev3I.V. Kublanov4National Research Center ''Kurchatov Institute'', Moscow 123182, RussiaNational Research Center ''Kurchatov Institute'', Moscow 123182, Russia; Corresponding authors.Winogradsky Institute of Microbiology of Federal Research Centre “Fundamentals of Biotechnology” of the Russian Academy of Sciences, Russia, 117312, Moscow, 60-let Oktyabrya prospect 7/2National Research Center ''Kurchatov Institute'', Moscow 123182, RussiaWinogradsky Institute of Microbiology of Federal Research Centre “Fundamentals of Biotechnology” of the Russian Academy of Sciences, Russia, 117312, Moscow, 60-let Oktyabrya prospect 7/2The draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia) is presented. The complete genome assembly was of 2 713 207 bp with predicted completeness of 99.38%. Genome structural annotation revealed 2674 protein-coding genes, 127 pseudogenes and 77 RNA genes. Pangenome analysis of 7 currently available high quality Caldanaerobacter spp. genomes including 1523vc revealed 4673 gene clusters. Of them, 1130 clusters formed a core genome of genus Caldanaerobacter. Of the rest 3543 Caldanaerobacter pangenome genes, 385 were exclusively represented in 1523vc genome. 101 of 2801 Caldanaerobacter CDS were found to be encoding carbohydrate-active enzymes (CAZymes). The majority of CAZymes were predicted to be involved in degradation of beta-linked polysaccharides as chitin, cellulose and hemicelluloses, reflecting the metabolism of strain 1523vc, isolated on cellulose. 5 of 101 CAZyme genes were found to be unique for the strain 1523vc and belonged to GH23, GT56, GH15 and two CE9 family proteins.The draft genome of strain 1523vc was deposited at DBJ/EMBL/GenBank under the accessions JABEQB000000000, PRJNA629090 and SAMN14766777 for Genome, Bioproject and Biosample, respectively.http://www.sciencedirect.com/science/article/pii/S2352340920312294ThermophilesCAZymesCaldanaerobacterGenomeExtremophiles
collection DOAJ
language English
format Article
sources DOAJ
author A.A. Korzhenkov
S.V. Toshchakov
O.A. Podosokorskaya
M.V. Patrushev
I.V. Kublanov
spellingShingle A.A. Korzhenkov
S.V. Toshchakov
O.A. Podosokorskaya
M.V. Patrushev
I.V. Kublanov
Data on draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia)
Data in Brief
Thermophiles
CAZymes
Caldanaerobacter
Genome
Extremophiles
author_facet A.A. Korzhenkov
S.V. Toshchakov
O.A. Podosokorskaya
M.V. Patrushev
I.V. Kublanov
author_sort A.A. Korzhenkov
title Data on draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia)
title_short Data on draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia)
title_full Data on draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia)
title_fullStr Data on draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia)
title_full_unstemmed Data on draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia)
title_sort data on draft genome sequence of caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of uzon caldera, (kamchatka, russia)
publisher Elsevier
series Data in Brief
issn 2352-3409
publishDate 2020-12-01
description The draft genome sequence of Caldanaerobacter sp. strain 1523vc, a thermophilic bacterium, isolated from a hot spring of Uzon Caldera, (Kamchatka, Russia) is presented. The complete genome assembly was of 2 713 207 bp with predicted completeness of 99.38%. Genome structural annotation revealed 2674 protein-coding genes, 127 pseudogenes and 77 RNA genes. Pangenome analysis of 7 currently available high quality Caldanaerobacter spp. genomes including 1523vc revealed 4673 gene clusters. Of them, 1130 clusters formed a core genome of genus Caldanaerobacter. Of the rest 3543 Caldanaerobacter pangenome genes, 385 were exclusively represented in 1523vc genome. 101 of 2801 Caldanaerobacter CDS were found to be encoding carbohydrate-active enzymes (CAZymes). The majority of CAZymes were predicted to be involved in degradation of beta-linked polysaccharides as chitin, cellulose and hemicelluloses, reflecting the metabolism of strain 1523vc, isolated on cellulose. 5 of 101 CAZyme genes were found to be unique for the strain 1523vc and belonged to GH23, GT56, GH15 and two CE9 family proteins.The draft genome of strain 1523vc was deposited at DBJ/EMBL/GenBank under the accessions JABEQB000000000, PRJNA629090 and SAMN14766777 for Genome, Bioproject and Biosample, respectively.
topic Thermophiles
CAZymes
Caldanaerobacter
Genome
Extremophiles
url http://www.sciencedirect.com/science/article/pii/S2352340920312294
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