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DNA barcoding of the National Museum of Natural History reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age

Natural history collections are essential to a wide variety of studies in biology because they maintain large collections of specimens and associated data, including genetic material (e.g., tissues) for DNA sequence data, yet they are currently under-funded and collection staff have high workloads....

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Autores principales: Mulcahy, Daniel G., Ibáñez, Roberto, Jaramillo, Cesar A., Crawford, Andrew J., Ray, Julie M., Gotte, Steve W., Jacobs, Jeremy F., Wynn, Addison H., Gonzalez-Porter, Gracia P., McDiarmid, Roy W., Crombie, Ronald I., Zug, George R., de Queiroz, Kevin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896674/
https://www.ncbi.nlm.nih.gov/pubmed/35245325
http://dx.doi.org/10.1371/journal.pone.0264930
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author Mulcahy, Daniel G.
Ibáñez, Roberto
Jaramillo, Cesar A.
Crawford, Andrew J.
Ray, Julie M.
Gotte, Steve W.
Jacobs, Jeremy F.
Wynn, Addison H.
Gonzalez-Porter, Gracia P.
McDiarmid, Roy W.
Crombie, Ronald I.
Zug, George R.
de Queiroz, Kevin
author_facet Mulcahy, Daniel G.
Ibáñez, Roberto
Jaramillo, Cesar A.
Crawford, Andrew J.
Ray, Julie M.
Gotte, Steve W.
Jacobs, Jeremy F.
Wynn, Addison H.
Gonzalez-Porter, Gracia P.
McDiarmid, Roy W.
Crombie, Ronald I.
Zug, George R.
de Queiroz, Kevin
author_sort Mulcahy, Daniel G.
collection PubMed
description Natural history collections are essential to a wide variety of studies in biology because they maintain large collections of specimens and associated data, including genetic material (e.g., tissues) for DNA sequence data, yet they are currently under-funded and collection staff have high workloads. With the advent of aggregate databases and advances in sequencing technologies, there is an increased demand on collection staff for access to tissue samples and associated data. Scientists are rapidly developing large DNA barcode libraries, DNA sequences of specific genes for species across the tree of life, in order to document and conserve biodiversity. In doing so, mistakes are made. For instance, inconsistent taxonomic information is commonly taken from different lending institutions and deposited in data repositories, such as the Barcode of Life Database (BOLD) and GenBank, despite explicit disclaimers regarding the need for taxonomic verification by the lending institutions. Such errors can have profound effects on subsequent research based on these mis-labelled sequences in data repositories. Here, we present the production of a large DNA barcode library of reptiles from the National Museum of Natural History tissue holdings. The library contains 2,758 sequences (2,205 COI and 553 16S) from 2260 specimens (four crocodilians, 37 turtles, and 2,219 lizards, including snakes), representing 583 named species, from 52 countries. In generating this library, we noticed several common mistakes made by scientists depositing DNA barcode data in public repositories (e.g., BOLD and GenBank). Our goal is to raise awareness of these concerns and offer advice to avoid such mistakes in the future to maintain accurate DNA barcode libraries to properly document Earth’s biodiversity.
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spelling pubmed-88966742022-03-05 DNA barcoding of the National Museum of Natural History reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age Mulcahy, Daniel G. Ibáñez, Roberto Jaramillo, Cesar A. Crawford, Andrew J. Ray, Julie M. Gotte, Steve W. Jacobs, Jeremy F. Wynn, Addison H. Gonzalez-Porter, Gracia P. McDiarmid, Roy W. Crombie, Ronald I. Zug, George R. de Queiroz, Kevin PLoS One Research Article Natural history collections are essential to a wide variety of studies in biology because they maintain large collections of specimens and associated data, including genetic material (e.g., tissues) for DNA sequence data, yet they are currently under-funded and collection staff have high workloads. With the advent of aggregate databases and advances in sequencing technologies, there is an increased demand on collection staff for access to tissue samples and associated data. Scientists are rapidly developing large DNA barcode libraries, DNA sequences of specific genes for species across the tree of life, in order to document and conserve biodiversity. In doing so, mistakes are made. For instance, inconsistent taxonomic information is commonly taken from different lending institutions and deposited in data repositories, such as the Barcode of Life Database (BOLD) and GenBank, despite explicit disclaimers regarding the need for taxonomic verification by the lending institutions. Such errors can have profound effects on subsequent research based on these mis-labelled sequences in data repositories. Here, we present the production of a large DNA barcode library of reptiles from the National Museum of Natural History tissue holdings. The library contains 2,758 sequences (2,205 COI and 553 16S) from 2260 specimens (four crocodilians, 37 turtles, and 2,219 lizards, including snakes), representing 583 named species, from 52 countries. In generating this library, we noticed several common mistakes made by scientists depositing DNA barcode data in public repositories (e.g., BOLD and GenBank). Our goal is to raise awareness of these concerns and offer advice to avoid such mistakes in the future to maintain accurate DNA barcode libraries to properly document Earth’s biodiversity. Public Library of Science 2022-03-04 /pmc/articles/PMC8896674/ /pubmed/35245325 http://dx.doi.org/10.1371/journal.pone.0264930 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Mulcahy, Daniel G.
Ibáñez, Roberto
Jaramillo, Cesar A.
Crawford, Andrew J.
Ray, Julie M.
Gotte, Steve W.
Jacobs, Jeremy F.
Wynn, Addison H.
Gonzalez-Porter, Gracia P.
McDiarmid, Roy W.
Crombie, Ronald I.
Zug, George R.
de Queiroz, Kevin
DNA barcoding of the National Museum of Natural History reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age
title DNA barcoding of the National Museum of Natural History reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age
title_full DNA barcoding of the National Museum of Natural History reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age
title_fullStr DNA barcoding of the National Museum of Natural History reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age
title_full_unstemmed DNA barcoding of the National Museum of Natural History reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age
title_short DNA barcoding of the National Museum of Natural History reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age
title_sort dna barcoding of the national museum of natural history reptile tissue holdings raises concerns about the use of natural history collections and the responsibilities of scientists in the molecular age
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896674/
https://www.ncbi.nlm.nih.gov/pubmed/35245325
http://dx.doi.org/10.1371/journal.pone.0264930
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