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tRNADB-CE 2011: tRNA gene database curated manually by experts

We updated the tRNADB-CE by analyzing 939 complete and 1301 draft genomes of prokaryotes and eukaryotes, 171 complete virus genomes, 121 complete chloroplast genomes and approximately 230 million sequences obtained by metagenome analyses of 210 environmental samples. The 287 102 tRNA genes in total,...

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Autores principales: Abe, Takashi, Ikemura, Toshimichi, Sugahara, Junichi, Kanai, Akio, Ohara, Yasuo, Uehara, Hiroshi, Kinouchi, Makoto, Kanaya, Shigehiko, Yamada, Yuko, Muto, Akira, Inokuchi, Hachiro
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3013639/
https://www.ncbi.nlm.nih.gov/pubmed/21071414
http://dx.doi.org/10.1093/nar/gkq1007
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author Abe, Takashi
Ikemura, Toshimichi
Sugahara, Junichi
Kanai, Akio
Ohara, Yasuo
Uehara, Hiroshi
Kinouchi, Makoto
Kanaya, Shigehiko
Yamada, Yuko
Muto, Akira
Inokuchi, Hachiro
author_facet Abe, Takashi
Ikemura, Toshimichi
Sugahara, Junichi
Kanai, Akio
Ohara, Yasuo
Uehara, Hiroshi
Kinouchi, Makoto
Kanaya, Shigehiko
Yamada, Yuko
Muto, Akira
Inokuchi, Hachiro
author_sort Abe, Takashi
collection PubMed
description We updated the tRNADB-CE by analyzing 939 complete and 1301 draft genomes of prokaryotes and eukaryotes, 171 complete virus genomes, 121 complete chloroplast genomes and approximately 230 million sequences obtained by metagenome analyses of 210 environmental samples. The 287 102 tRNA genes in total, and thus two times of the tRNA genes compiled previously, are compiled, in which sequence information, clover-leaf structure and results of sequence similarity and oligonucleotide-pattern search can be browsed. In order to pool collective knowledge with help from any experts in the tRNA research field, we included a column to which comments can be added on each tRNA gene. By compiling tRNAs of known prokaryotes with identical sequences, we found high phylogenetic preservation of tRNA sequences, especially at a phylum level. Furthermore, a large number of tRNAs obtained by metagenome analyses of environmental samples had sequences identical to those found in known prokaryotes. The identical sequence group, therefore, can be used as phylogenetic markers to clarify the microbial community structure of an ecosystem. The updated tRNADB-CE provided functions, with which users can obtain the phylotype-specific markers (e.g. genus-specific markers) by themselves and clarify microbial community structures of ecosystems in detail. tRNADB-CE can be accessed freely at http://trna.nagahama-i-bio.ac.jp.
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spelling pubmed-30136392011-01-03 tRNADB-CE 2011: tRNA gene database curated manually by experts Abe, Takashi Ikemura, Toshimichi Sugahara, Junichi Kanai, Akio Ohara, Yasuo Uehara, Hiroshi Kinouchi, Makoto Kanaya, Shigehiko Yamada, Yuko Muto, Akira Inokuchi, Hachiro Nucleic Acids Res Articles We updated the tRNADB-CE by analyzing 939 complete and 1301 draft genomes of prokaryotes and eukaryotes, 171 complete virus genomes, 121 complete chloroplast genomes and approximately 230 million sequences obtained by metagenome analyses of 210 environmental samples. The 287 102 tRNA genes in total, and thus two times of the tRNA genes compiled previously, are compiled, in which sequence information, clover-leaf structure and results of sequence similarity and oligonucleotide-pattern search can be browsed. In order to pool collective knowledge with help from any experts in the tRNA research field, we included a column to which comments can be added on each tRNA gene. By compiling tRNAs of known prokaryotes with identical sequences, we found high phylogenetic preservation of tRNA sequences, especially at a phylum level. Furthermore, a large number of tRNAs obtained by metagenome analyses of environmental samples had sequences identical to those found in known prokaryotes. The identical sequence group, therefore, can be used as phylogenetic markers to clarify the microbial community structure of an ecosystem. The updated tRNADB-CE provided functions, with which users can obtain the phylotype-specific markers (e.g. genus-specific markers) by themselves and clarify microbial community structures of ecosystems in detail. tRNADB-CE can be accessed freely at http://trna.nagahama-i-bio.ac.jp. Oxford University Press 2011-01 2010-11-11 /pmc/articles/PMC3013639/ /pubmed/21071414 http://dx.doi.org/10.1093/nar/gkq1007 Text en © The Author(s) 2010. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Abe, Takashi
Ikemura, Toshimichi
Sugahara, Junichi
Kanai, Akio
Ohara, Yasuo
Uehara, Hiroshi
Kinouchi, Makoto
Kanaya, Shigehiko
Yamada, Yuko
Muto, Akira
Inokuchi, Hachiro
tRNADB-CE 2011: tRNA gene database curated manually by experts
title tRNADB-CE 2011: tRNA gene database curated manually by experts
title_full tRNADB-CE 2011: tRNA gene database curated manually by experts
title_fullStr tRNADB-CE 2011: tRNA gene database curated manually by experts
title_full_unstemmed tRNADB-CE 2011: tRNA gene database curated manually by experts
title_short tRNADB-CE 2011: tRNA gene database curated manually by experts
title_sort trnadb-ce 2011: trna gene database curated manually by experts
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3013639/
https://www.ncbi.nlm.nih.gov/pubmed/21071414
http://dx.doi.org/10.1093/nar/gkq1007
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