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The spotted gar genome illuminates vertebrate evolution and facilitates human-to-teleost comparisons
To connect human biology to fish biomedical models, we sequenced the genome of spotted gar (Lepisosteus oculatus), whose lineage diverged from teleosts before the teleost genome duplication (TGD). The slowly evolving gar genome conserved in content and size many entire chromosomes from bony vertebra...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817229/ https://www.ncbi.nlm.nih.gov/pubmed/26950095 http://dx.doi.org/10.1038/ng.3526 |
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author | Braasch, Ingo Gehrke, Andrew R. Smith, Jeramiah J. Kawasaki, Kazuhiko Manousaki, Tereza Pasquier, Jeremy Amores, Angel Desvignes, Thomas Batzel, Peter Catchen, Julian Berlin, Aaron M. Campbell, Michael S. Barrell, Daniel Martin, Kyle J. Mulley, John F. Ravi, Vydianathan Lee, Alison P. Nakamura, Tetsuya Chalopin, Domitille Fan, Shaohua Wcisel, Dustin Cañestro, Cristian Sydes, Jason Beaudry, Felix E. G. Sun, Yi Hertel, Jana Beam, Michael J. Fasold, Mario Ishiyama, Mikio Johnson, Jeremy Kehr, Steffi Lara, Marcia Letaw, John H. Litman, Gary W. Litman, Ronda T. Mikami, Masato Ota, Tatsuya Saha, Nil Ratan Williams, Louise Stadler, Peter F. Wang, Han Taylor, John S. Fontenot, Quenton Ferrara, Allyse Searle, Stephen M. J. Aken, Bronwen Yandell, Mark Schneider, Igor Yoder, Jeffrey A. Volff, Jean-Nicolas Meyer, Axel Amemiya, Chris T. Venkatesh, Byrappa Holland, Peter W. H. Guiguen, Yann Bobe, Julien Shubin, Neil H. Di Palma, Federica Alföldi, Jessica Lindblad-Toh, Kerstin Postlethwait, John H. |
author_facet | Braasch, Ingo Gehrke, Andrew R. Smith, Jeramiah J. Kawasaki, Kazuhiko Manousaki, Tereza Pasquier, Jeremy Amores, Angel Desvignes, Thomas Batzel, Peter Catchen, Julian Berlin, Aaron M. Campbell, Michael S. Barrell, Daniel Martin, Kyle J. Mulley, John F. Ravi, Vydianathan Lee, Alison P. Nakamura, Tetsuya Chalopin, Domitille Fan, Shaohua Wcisel, Dustin Cañestro, Cristian Sydes, Jason Beaudry, Felix E. G. Sun, Yi Hertel, Jana Beam, Michael J. Fasold, Mario Ishiyama, Mikio Johnson, Jeremy Kehr, Steffi Lara, Marcia Letaw, John H. Litman, Gary W. Litman, Ronda T. Mikami, Masato Ota, Tatsuya Saha, Nil Ratan Williams, Louise Stadler, Peter F. Wang, Han Taylor, John S. Fontenot, Quenton Ferrara, Allyse Searle, Stephen M. J. Aken, Bronwen Yandell, Mark Schneider, Igor Yoder, Jeffrey A. Volff, Jean-Nicolas Meyer, Axel Amemiya, Chris T. Venkatesh, Byrappa Holland, Peter W. H. Guiguen, Yann Bobe, Julien Shubin, Neil H. Di Palma, Federica Alföldi, Jessica Lindblad-Toh, Kerstin Postlethwait, John H. |
author_sort | Braasch, Ingo |
collection | PubMed |
description | To connect human biology to fish biomedical models, we sequenced the genome of spotted gar (Lepisosteus oculatus), whose lineage diverged from teleosts before the teleost genome duplication (TGD). The slowly evolving gar genome conserved in content and size many entire chromosomes from bony vertebrate ancestors. Gar bridges teleosts to tetrapods by illuminating the evolution of immunity, mineralization, and development (e.g., Hox, ParaHox, and miRNA genes). Numerous conserved non-coding elements (CNEs, often cis-regulatory) undetectable in direct human-teleost comparisons become apparent using gar: functional studies uncovered conserved roles of such cryptic CNEs, facilitating annotation of sequences identified in human genome-wide association studies. Transcriptomic analyses revealed that the sum of expression domains and levels from duplicated teleost genes often approximate patterns and levels of gar genes, consistent with subfunctionalization. The gar genome provides a resource for understanding evolution after genome duplication, the origin of vertebrate genomes, and the function of human regulatory sequences. |
format | Online Article Text |
id | pubmed-4817229 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
record_format | MEDLINE/PubMed |
spelling | pubmed-48172292016-09-22 The spotted gar genome illuminates vertebrate evolution and facilitates human-to-teleost comparisons Braasch, Ingo Gehrke, Andrew R. Smith, Jeramiah J. Kawasaki, Kazuhiko Manousaki, Tereza Pasquier, Jeremy Amores, Angel Desvignes, Thomas Batzel, Peter Catchen, Julian Berlin, Aaron M. Campbell, Michael S. Barrell, Daniel Martin, Kyle J. Mulley, John F. Ravi, Vydianathan Lee, Alison P. Nakamura, Tetsuya Chalopin, Domitille Fan, Shaohua Wcisel, Dustin Cañestro, Cristian Sydes, Jason Beaudry, Felix E. G. Sun, Yi Hertel, Jana Beam, Michael J. Fasold, Mario Ishiyama, Mikio Johnson, Jeremy Kehr, Steffi Lara, Marcia Letaw, John H. Litman, Gary W. Litman, Ronda T. Mikami, Masato Ota, Tatsuya Saha, Nil Ratan Williams, Louise Stadler, Peter F. Wang, Han Taylor, John S. Fontenot, Quenton Ferrara, Allyse Searle, Stephen M. J. Aken, Bronwen Yandell, Mark Schneider, Igor Yoder, Jeffrey A. Volff, Jean-Nicolas Meyer, Axel Amemiya, Chris T. Venkatesh, Byrappa Holland, Peter W. H. Guiguen, Yann Bobe, Julien Shubin, Neil H. Di Palma, Federica Alföldi, Jessica Lindblad-Toh, Kerstin Postlethwait, John H. Nat Genet Article To connect human biology to fish biomedical models, we sequenced the genome of spotted gar (Lepisosteus oculatus), whose lineage diverged from teleosts before the teleost genome duplication (TGD). The slowly evolving gar genome conserved in content and size many entire chromosomes from bony vertebrate ancestors. Gar bridges teleosts to tetrapods by illuminating the evolution of immunity, mineralization, and development (e.g., Hox, ParaHox, and miRNA genes). Numerous conserved non-coding elements (CNEs, often cis-regulatory) undetectable in direct human-teleost comparisons become apparent using gar: functional studies uncovered conserved roles of such cryptic CNEs, facilitating annotation of sequences identified in human genome-wide association studies. Transcriptomic analyses revealed that the sum of expression domains and levels from duplicated teleost genes often approximate patterns and levels of gar genes, consistent with subfunctionalization. The gar genome provides a resource for understanding evolution after genome duplication, the origin of vertebrate genomes, and the function of human regulatory sequences. 2016-03-07 2016-04 /pmc/articles/PMC4817229/ /pubmed/26950095 http://dx.doi.org/10.1038/ng.3526 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms |
spellingShingle | Article Braasch, Ingo Gehrke, Andrew R. Smith, Jeramiah J. Kawasaki, Kazuhiko Manousaki, Tereza Pasquier, Jeremy Amores, Angel Desvignes, Thomas Batzel, Peter Catchen, Julian Berlin, Aaron M. Campbell, Michael S. Barrell, Daniel Martin, Kyle J. Mulley, John F. Ravi, Vydianathan Lee, Alison P. Nakamura, Tetsuya Chalopin, Domitille Fan, Shaohua Wcisel, Dustin Cañestro, Cristian Sydes, Jason Beaudry, Felix E. G. Sun, Yi Hertel, Jana Beam, Michael J. Fasold, Mario Ishiyama, Mikio Johnson, Jeremy Kehr, Steffi Lara, Marcia Letaw, John H. Litman, Gary W. Litman, Ronda T. Mikami, Masato Ota, Tatsuya Saha, Nil Ratan Williams, Louise Stadler, Peter F. Wang, Han Taylor, John S. Fontenot, Quenton Ferrara, Allyse Searle, Stephen M. J. Aken, Bronwen Yandell, Mark Schneider, Igor Yoder, Jeffrey A. Volff, Jean-Nicolas Meyer, Axel Amemiya, Chris T. Venkatesh, Byrappa Holland, Peter W. H. Guiguen, Yann Bobe, Julien Shubin, Neil H. Di Palma, Federica Alföldi, Jessica Lindblad-Toh, Kerstin Postlethwait, John H. The spotted gar genome illuminates vertebrate evolution and facilitates human-to-teleost comparisons |
title | The spotted gar genome illuminates vertebrate evolution and
facilitates human-to-teleost comparisons |
title_full | The spotted gar genome illuminates vertebrate evolution and
facilitates human-to-teleost comparisons |
title_fullStr | The spotted gar genome illuminates vertebrate evolution and
facilitates human-to-teleost comparisons |
title_full_unstemmed | The spotted gar genome illuminates vertebrate evolution and
facilitates human-to-teleost comparisons |
title_short | The spotted gar genome illuminates vertebrate evolution and
facilitates human-to-teleost comparisons |
title_sort | spotted gar genome illuminates vertebrate evolution and
facilitates human-to-teleost comparisons |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817229/ https://www.ncbi.nlm.nih.gov/pubmed/26950095 http://dx.doi.org/10.1038/ng.3526 |
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