SH402532.07FU
UNITE provides a unified way for delimiting, identifying, communicating, and working with DNA-based Species Hypotheses (SH). All fungal ITS sequences in the international nucleotide sequence databases are clustered to approximately the species level by applying a set of dynamic distance values (
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creator | Kõljalg, Urmas Abarenkov, Kessy Nilsson, R. Henrik Larsson, Karl-Henrik Aas, Anders Bjørnsgard Adams, Rachel Alves, Artur Ammirati, Joseph F. Arnold, A. Elizabeth Bahram, Mohammad Bengtsson-Palme, Johan Berlin, Anna Botnen, Synnøve Bourlat, Sarah Cheeke, Tanya Dima, Bálint Drenkhan, Rein Duarte, Camila Dueñas, Margarita Eberhardt, Ursula Friberg, Hanna Frøslev, Tobias G. Garnica, Sigisfredo Geml, József Ghobad-Nejhad, Masoomeh Grebenc, Tine Griffith, Gareth W. Hampe, Felix Kennedy, Peter Khomich, Maryia Kohout, Petr Kollom, Anu Larsson, Ellen Laszlo, Irinyi Leavitt, Steven Liimatainen, Kare Lindahl, Björn Lodge, Deborah J. Lumbsch, Helge Thorsten Martín Esteban, María Paz Meyer, Wieland Miettinen, Otto Nguyen, Nhu Niskanen, Tuula Oono, Ryoko Öpik, Maarja Ordynets, Alexander Pawłowska, Julia Peintner, Ursula Pereira, Olinto Liparini Pinho, Danilo Batista Põldmaa, Kadri Runnel, Kadri Ryberg, Martin Saar, Irja Sanli, Kemal Scott, James Spirin, Viacheslav Suija, Ave Svantesson, Sten Tadych, Mariusz Takamatsu, Susumu Tamm, Heidi Taylor, AFS Tedersoo, Leho Telleria, M.T. Udayanga, Dhanushka Unterseher, Martin Volobuev, Sergey Weiss, Michael Wurzbacher, Christian |
description | UNITE provides a unified way for delimiting, identifying, communicating, and working with DNA-based Species Hypotheses (SH). All fungal ITS sequences in the international nucleotide sequence databases are clustered to approximately the species level by applying a set of dynamic distance values ( |
doi_str_mv | 10.15156/bio/sh402532.07fu |
format | Dataset |
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Elizabeth ; Bahram, Mohammad ; Bengtsson-Palme, Johan ; Berlin, Anna ; Botnen, Synnøve ; Bourlat, Sarah ; Cheeke, Tanya ; Dima, Bálint ; Drenkhan, Rein ; Duarte, Camila ; Dueñas, Margarita ; Eberhardt, Ursula ; Friberg, Hanna ; Frøslev, Tobias G. ; Garnica, Sigisfredo ; Geml, József ; Ghobad-Nejhad, Masoomeh ; Grebenc, Tine ; Griffith, Gareth W. ; Hampe, Felix ; Kennedy, Peter ; Khomich, Maryia ; Kohout, Petr ; Kollom, Anu ; Larsson, Ellen ; Laszlo, Irinyi ; Leavitt, Steven ; Liimatainen, Kare ; Lindahl, Björn ; Lodge, Deborah J. ; Lumbsch, Helge Thorsten ; Martín Esteban, María Paz ; Meyer, Wieland ; Miettinen, Otto ; Nguyen, Nhu ; Niskanen, Tuula ; Oono, Ryoko ; Öpik, Maarja ; Ordynets, Alexander ; Pawłowska, Julia ; Peintner, Ursula ; Pereira, Olinto Liparini ; Pinho, Danilo Batista ; Põldmaa, Kadri ; Runnel, Kadri ; Ryberg, Martin ; Saar, Irja ; Sanli, Kemal ; Scott, James ; Spirin, Viacheslav ; Suija, Ave ; Svantesson, Sten ; Tadych, Mariusz ; Takamatsu, Susumu ; Tamm, Heidi ; Taylor, AFS ; Tedersoo, Leho ; Telleria, M.T. ; Udayanga, Dhanushka ; Unterseher, Martin ; Volobuev, Sergey ; Weiss, Michael ; Wurzbacher, Christian</creator><creatorcontrib>Kõljalg, Urmas ; Abarenkov, Kessy ; Nilsson, R. 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Elizabeth ; Bahram, Mohammad ; Bengtsson-Palme, Johan ; Berlin, Anna ; Botnen, Synnøve ; Bourlat, Sarah ; Cheeke, Tanya ; Dima, Bálint ; Drenkhan, Rein ; Duarte, Camila ; Dueñas, Margarita ; Eberhardt, Ursula ; Friberg, Hanna ; Frøslev, Tobias G. ; Garnica, Sigisfredo ; Geml, József ; Ghobad-Nejhad, Masoomeh ; Grebenc, Tine ; Griffith, Gareth W. ; Hampe, Felix ; Kennedy, Peter ; Khomich, Maryia ; Kohout, Petr ; Kollom, Anu ; Larsson, Ellen ; Laszlo, Irinyi ; Leavitt, Steven ; Liimatainen, Kare ; Lindahl, Björn ; Lodge, Deborah J. ; Lumbsch, Helge Thorsten ; Martín Esteban, María Paz ; Meyer, Wieland ; Miettinen, Otto ; Nguyen, Nhu ; Niskanen, Tuula ; Oono, Ryoko ; Öpik, Maarja ; Ordynets, Alexander ; Pawłowska, Julia ; Peintner, Ursula ; Pereira, Olinto Liparini ; Pinho, Danilo Batista ; Põldmaa, Kadri ; Runnel, Kadri ; Ryberg, Martin ; Saar, Irja ; Sanli, Kemal ; Scott, James ; Spirin, Viacheslav ; Suija, Ave ; Svantesson, Sten ; Tadych, Mariusz ; Takamatsu, Susumu ; Tamm, Heidi ; Taylor, AFS ; Tedersoo, Leho ; Telleria, M.T. ; Udayanga, Dhanushka ; Unterseher, Martin ; Volobuev, Sergey ; Weiss, Michael ; Wurzbacher, Christian</creatorcontrib><description>UNITE provides a unified way for delimiting, identifying, communicating, and working with DNA-based Species Hypotheses (SH). 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All fungal ITS sequences in the international nucleotide sequence databases are clustered to approximately the species level by applying a set of dynamic distance values (<0.5 - 3.0%). All species hypotheses are given a unique, stable name in the form of a DOI, and their taxonomic and ecological annotations are verified through distributed, web-based third-party annotation efforts. SHs are connected to a taxon name and its classification as far as possible (phylum, class, order, etc.) by taking into account identifications for all sequences in the SH. An automatically or manually designated sequence is chosen to represent each such SH. These sequences are released (https://unite.ut.ee/repository.php) for use by the scientific community in, for example, local sequence similarity searches and next-generation sequencing analysis pipelines. 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All fungal ITS sequences in the international nucleotide sequence databases are clustered to approximately the species level by applying a set of dynamic distance values (<0.5 - 3.0%). All species hypotheses are given a unique, stable name in the form of a DOI, and their taxonomic and ecological annotations are verified through distributed, web-based third-party annotation efforts. SHs are connected to a taxon name and its classification as far as possible (phylum, class, order, etc.) by taking into account identifications for all sequences in the SH. An automatically or manually designated sequence is chosen to represent each such SH. These sequences are released (https://unite.ut.ee/repository.php) for use by the scientific community in, for example, local sequence similarity searches and next-generation sequencing analysis pipelines. The system and the data are updated automatically as the number of public fungal ITS sequences grows.</abstract><pub>UNITE Community</pub><doi>10.15156/bio/sh402532.07fu</doi><oa>free_for_read</oa></addata></record> |
fulltext | fulltext_linktorsrc |
identifier | DOI: 10.15156/bio/sh402532.07fu |
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language | eng |
recordid | cdi_datacite_primary_10_15156_bio_sh402532_07fu |
source | DataCite |
title | SH402532.07FU |
url | https://sfx.bib-bvb.de/sfx_tum?ctx_ver=Z39.88-2004&ctx_enc=info:ofi/enc:UTF-8&ctx_tim=2025-02-12T01%3A23%3A46IST&url_ver=Z39.88-2004&url_ctx_fmt=infofi/fmt:kev:mtx:ctx&rfr_id=info:sid/primo.exlibrisgroup.com:primo3-Article-datacite_PQ8&rft_val_fmt=info:ofi/fmt:kev:mtx:book&rft.genre=unknown&rft.au=K%C3%B5ljalg,%20Urmas&rft.date=2014-10-05&rft_id=info:doi/10.15156/bio/sh402532.07fu&rft_dat=%3Cdatacite_PQ8%3E10_15156_bio_sh402532_07fu%3C/datacite_PQ8%3E%3Curl%3E%3C/url%3E&disable_directlink=true&sfx.directlink=off&sfx.report_link=0&rft_id=info:oai/&rft_id=info:pmid/&rfr_iscdi=true |