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The Tree of Life and a New Classification of Bony Fishes

The tree of life of fishes is in a state of flux because we still lack a comprehensive phylogeny that includes all major groups. The situation is most critical for a large clade of spiny-finned fishes, traditionally referred to as percomorphs, whose uncertain relationships have plagued ichthyologist...

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Autores principales: Betancur-R., Ricardo, Broughton, Richard E., Wiley, Edward O., Carpenter, Kent, López, J. Andrés, Li, Chenhong, Holcroft, Nancy I., Arcila, Dahiana, Sanciangco, Millicent, Cureton II, James C, Zhang, Feifei, Buser, Thaddaeus, Campbell, Matthew A., Ballesteros, Jesus A, Roa-Varon, Adela, Willis, Stuart, Borden, W. Calvin, Rowley, Thaine, Reneau, Paulette C., Hough, Daniel J., Lu, Guoqing, Grande, Terry, Arratia, Gloria, Ortí, Guillermo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3644299/
https://www.ncbi.nlm.nih.gov/pubmed/23653398
http://dx.doi.org/10.1371/currents.tol.53ba26640df0ccaee75bb165c8c26288
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author Betancur-R., Ricardo
Broughton, Richard E.
Wiley, Edward O.
Carpenter, Kent
López, J. Andrés
Li, Chenhong
Holcroft, Nancy I.
Arcila, Dahiana
Sanciangco, Millicent
Cureton II, James C
Zhang, Feifei
Buser, Thaddaeus
Campbell, Matthew A.
Ballesteros, Jesus A
Roa-Varon, Adela
Willis, Stuart
Borden, W. Calvin
Rowley, Thaine
Reneau, Paulette C.
Hough, Daniel J.
Lu, Guoqing
Grande, Terry
Arratia, Gloria
Ortí, Guillermo
author_facet Betancur-R., Ricardo
Broughton, Richard E.
Wiley, Edward O.
Carpenter, Kent
López, J. Andrés
Li, Chenhong
Holcroft, Nancy I.
Arcila, Dahiana
Sanciangco, Millicent
Cureton II, James C
Zhang, Feifei
Buser, Thaddaeus
Campbell, Matthew A.
Ballesteros, Jesus A
Roa-Varon, Adela
Willis, Stuart
Borden, W. Calvin
Rowley, Thaine
Reneau, Paulette C.
Hough, Daniel J.
Lu, Guoqing
Grande, Terry
Arratia, Gloria
Ortí, Guillermo
author_sort Betancur-R., Ricardo
collection PubMed
description The tree of life of fishes is in a state of flux because we still lack a comprehensive phylogeny that includes all major groups. The situation is most critical for a large clade of spiny-finned fishes, traditionally referred to as percomorphs, whose uncertain relationships have plagued ichthyologists for over a century. Most of what we know about the higher-level relationships among fish lineages has been based on morphology, but rapid influx of molecular studies is changing many established systematic concepts. We report a comprehensive molecular phylogeny for bony fishes that includes representatives of all major lineages. DNA sequence data for 21 molecular markers (one mitochondrial and 20 nuclear genes) were collected for 1410 bony fish taxa, plus four tetrapod species and two chondrichthyan outgroups (total 1416 terminals). Bony fish diversity is represented by 1093 genera, 369 families, and all traditionally recognized orders. The maximum likelihood tree provides unprecedented resolution and high bootstrap support for most backbone nodes, defining for the first time a global phylogeny of fishes. The general structure of the tree is in agreement with expectations from previous morphological and molecular studies, but significant new clades arise. Most interestingly, the high degree of uncertainty among percomorphs is now resolved into nine well-supported supraordinal groups. The order Perciformes, considered by many a polyphyletic taxonomic waste basket, is defined for the first time as a monophyletic group in the global phylogeny. A new classification that reflects our phylogenetic hypothesis is proposed to facilitate communication about the newly found structure of the tree of life of fishes. Finally, the molecular phylogeny is calibrated using 60 fossil constraints to produce a comprehensive time tree. The new time-calibrated phylogeny will provide the basis for and stimulate new comparative studies to better understand the evolution of the amazing diversity of fishes.
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spelling pubmed-36442992013-05-06 The Tree of Life and a New Classification of Bony Fishes Betancur-R., Ricardo Broughton, Richard E. Wiley, Edward O. Carpenter, Kent López, J. Andrés Li, Chenhong Holcroft, Nancy I. Arcila, Dahiana Sanciangco, Millicent Cureton II, James C Zhang, Feifei Buser, Thaddaeus Campbell, Matthew A. Ballesteros, Jesus A Roa-Varon, Adela Willis, Stuart Borden, W. Calvin Rowley, Thaine Reneau, Paulette C. Hough, Daniel J. Lu, Guoqing Grande, Terry Arratia, Gloria Ortí, Guillermo PLoS Curr Tree of Life The tree of life of fishes is in a state of flux because we still lack a comprehensive phylogeny that includes all major groups. The situation is most critical for a large clade of spiny-finned fishes, traditionally referred to as percomorphs, whose uncertain relationships have plagued ichthyologists for over a century. Most of what we know about the higher-level relationships among fish lineages has been based on morphology, but rapid influx of molecular studies is changing many established systematic concepts. We report a comprehensive molecular phylogeny for bony fishes that includes representatives of all major lineages. DNA sequence data for 21 molecular markers (one mitochondrial and 20 nuclear genes) were collected for 1410 bony fish taxa, plus four tetrapod species and two chondrichthyan outgroups (total 1416 terminals). Bony fish diversity is represented by 1093 genera, 369 families, and all traditionally recognized orders. The maximum likelihood tree provides unprecedented resolution and high bootstrap support for most backbone nodes, defining for the first time a global phylogeny of fishes. The general structure of the tree is in agreement with expectations from previous morphological and molecular studies, but significant new clades arise. Most interestingly, the high degree of uncertainty among percomorphs is now resolved into nine well-supported supraordinal groups. The order Perciformes, considered by many a polyphyletic taxonomic waste basket, is defined for the first time as a monophyletic group in the global phylogeny. A new classification that reflects our phylogenetic hypothesis is proposed to facilitate communication about the newly found structure of the tree of life of fishes. Finally, the molecular phylogeny is calibrated using 60 fossil constraints to produce a comprehensive time tree. The new time-calibrated phylogeny will provide the basis for and stimulate new comparative studies to better understand the evolution of the amazing diversity of fishes. Public Library of Science 2013-04-18 /pmc/articles/PMC3644299/ /pubmed/23653398 http://dx.doi.org/10.1371/currents.tol.53ba26640df0ccaee75bb165c8c26288 Text en http://creativecommons.org/licenses/by/4.0/ 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 author and source are properly credited.
spellingShingle Tree of Life
Betancur-R., Ricardo
Broughton, Richard E.
Wiley, Edward O.
Carpenter, Kent
López, J. Andrés
Li, Chenhong
Holcroft, Nancy I.
Arcila, Dahiana
Sanciangco, Millicent
Cureton II, James C
Zhang, Feifei
Buser, Thaddaeus
Campbell, Matthew A.
Ballesteros, Jesus A
Roa-Varon, Adela
Willis, Stuart
Borden, W. Calvin
Rowley, Thaine
Reneau, Paulette C.
Hough, Daniel J.
Lu, Guoqing
Grande, Terry
Arratia, Gloria
Ortí, Guillermo
The Tree of Life and a New Classification of Bony Fishes
title The Tree of Life and a New Classification of Bony Fishes
title_full The Tree of Life and a New Classification of Bony Fishes
title_fullStr The Tree of Life and a New Classification of Bony Fishes
title_full_unstemmed The Tree of Life and a New Classification of Bony Fishes
title_short The Tree of Life and a New Classification of Bony Fishes
title_sort tree of life and a new classification of bony fishes
topic Tree of Life
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3644299/
https://www.ncbi.nlm.nih.gov/pubmed/23653398
http://dx.doi.org/10.1371/currents.tol.53ba26640df0ccaee75bb165c8c26288
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