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Gibbon genome and the fast karyotype evolution of small apes

Gibbons are small arboreal apes that display an accelerated rate of evolutionary chromosomal rearrangement and occupy a key node in the primate phylogeny between Old World monkeys and great apes. Here we present the assembly and analysis of a northern white-cheeked gibbon (Nomascus leucogenys) genom...

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Autores principales: Carbone, Lucia, Alan Harris, R., Gnerre, Sante, Veeramah, Krishna R., Lorente-Galdos, Belen, Huddleston, John, Meyer, Thomas J., Herrero, Javier, Roos, Christian, Aken, Bronwen, Anaclerio, Fabio, Archidiacono, Nicoletta, Baker, Carl, Barrell, Daniel, Batzer, Mark A., Beal, Kathryn, Blancher, Antoine, Bohrson, Craig L., Brameier, Markus, Campbell, Michael S., Capozzi, Oronzo, Casola, Claudio, Chiatante, Giorgia, Cree, Andrew, Damert, Annette, de Jong, Pieter J., Dumas, Laura, Fernandez-Callejo, Marcos, Flicek, Paul, Fuchs, Nina V., Gut, Ivo, Gut, Marta, Hahn, Matthew W., Hernandez-Rodriguez, Jessica, Hillier, LaDeana W., Hubley, Robert, Ianc, Bianca, Izsvák, Zsuzsanna, Jablonski, Nina G., Johnstone, Laurel M., Karimpour-Fard, Anis, Konkel, Miriam K., Kostka, Dennis, Lazar, Nathan H., Lee, Sandra L., Lewis, Lora R., Liu, Yue, Locke, Devin P., Mallick, Swapan, Mendez, Fernando L., Muffato, Matthieu, Nazareth, Lynne V., Nevonen, Kimberly A., O’Bleness, Majesta, Ochis, Cornelia, Odom, Duncan T., Pollard, Katherine S., Quilez, Javier, Reich, David, Rocchi, Mariano, Schumann, Gerald G., Searle, Stephen, Sikela, James M., Skollar, Gabriella, Smit, Arian, Sonmez, Kemal, Hallers, Boudewijn ten, Terhune, Elizabeth, Thomas, Gregg W. C., Ullmer, Brygg, Ventura, Mario, Walker, Jerilyn A., Wall, Jeffrey D., Walter, Lutz, Ward, Michelle C., Wheelan, Sarah J., Whelan, Christopher W., White, Simon, Wilhelm, Larry J., Woerner, August E., Yandell, Mark, Zhu, Baoli, Hammer, Michael F., Marques-Bonet, Tomas, Eichler, Evan E., Fulton, Lucinda, Fronick, Catrina, Muzny, Donna M., Warren, Wesley C., Worley, Kim C., Rogers, Jeffrey, Wilson, Richard K., Gibbs, Richard A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4249732/
https://www.ncbi.nlm.nih.gov/pubmed/25209798
http://dx.doi.org/10.1038/nature13679
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author Carbone, Lucia
Alan Harris, R.
Gnerre, Sante
Veeramah, Krishna R.
Lorente-Galdos, Belen
Huddleston, John
Meyer, Thomas J.
Herrero, Javier
Roos, Christian
Aken, Bronwen
Anaclerio, Fabio
Archidiacono, Nicoletta
Baker, Carl
Barrell, Daniel
Batzer, Mark A.
Beal, Kathryn
Blancher, Antoine
Bohrson, Craig L.
Brameier, Markus
Campbell, Michael S.
Capozzi, Oronzo
Casola, Claudio
Chiatante, Giorgia
Cree, Andrew
Damert, Annette
de Jong, Pieter J.
Dumas, Laura
Fernandez-Callejo, Marcos
Flicek, Paul
Fuchs, Nina V.
Gut, Ivo
Gut, Marta
Hahn, Matthew W.
Hernandez-Rodriguez, Jessica
Hillier, LaDeana W.
Hubley, Robert
Ianc, Bianca
Izsvák, Zsuzsanna
Jablonski, Nina G.
Johnstone, Laurel M.
Karimpour-Fard, Anis
Konkel, Miriam K.
Kostka, Dennis
Lazar, Nathan H.
Lee, Sandra L.
Lewis, Lora R.
Liu, Yue
Locke, Devin P.
Mallick, Swapan
Mendez, Fernando L.
Muffato, Matthieu
Nazareth, Lynne V.
Nevonen, Kimberly A.
O’Bleness, Majesta
Ochis, Cornelia
Odom, Duncan T.
Pollard, Katherine S.
Quilez, Javier
Reich, David
Rocchi, Mariano
Schumann, Gerald G.
Searle, Stephen
Sikela, James M.
Skollar, Gabriella
Smit, Arian
Sonmez, Kemal
Hallers, Boudewijn ten
Terhune, Elizabeth
Thomas, Gregg W. C.
Ullmer, Brygg
Ventura, Mario
Walker, Jerilyn A.
Wall, Jeffrey D.
Walter, Lutz
Ward, Michelle C.
Wheelan, Sarah J.
Whelan, Christopher W.
White, Simon
Wilhelm, Larry J.
Woerner, August E.
Yandell, Mark
Zhu, Baoli
Hammer, Michael F.
Marques-Bonet, Tomas
Eichler, Evan E.
Fulton, Lucinda
Fronick, Catrina
Muzny, Donna M.
Warren, Wesley C.
Worley, Kim C.
Rogers, Jeffrey
Wilson, Richard K.
Gibbs, Richard A.
author_facet Carbone, Lucia
Alan Harris, R.
Gnerre, Sante
Veeramah, Krishna R.
Lorente-Galdos, Belen
Huddleston, John
Meyer, Thomas J.
Herrero, Javier
Roos, Christian
Aken, Bronwen
Anaclerio, Fabio
Archidiacono, Nicoletta
Baker, Carl
Barrell, Daniel
Batzer, Mark A.
Beal, Kathryn
Blancher, Antoine
Bohrson, Craig L.
Brameier, Markus
Campbell, Michael S.
Capozzi, Oronzo
Casola, Claudio
Chiatante, Giorgia
Cree, Andrew
Damert, Annette
de Jong, Pieter J.
Dumas, Laura
Fernandez-Callejo, Marcos
Flicek, Paul
Fuchs, Nina V.
Gut, Ivo
Gut, Marta
Hahn, Matthew W.
Hernandez-Rodriguez, Jessica
Hillier, LaDeana W.
Hubley, Robert
Ianc, Bianca
Izsvák, Zsuzsanna
Jablonski, Nina G.
Johnstone, Laurel M.
Karimpour-Fard, Anis
Konkel, Miriam K.
Kostka, Dennis
Lazar, Nathan H.
Lee, Sandra L.
Lewis, Lora R.
Liu, Yue
Locke, Devin P.
Mallick, Swapan
Mendez, Fernando L.
Muffato, Matthieu
Nazareth, Lynne V.
Nevonen, Kimberly A.
O’Bleness, Majesta
Ochis, Cornelia
Odom, Duncan T.
Pollard, Katherine S.
Quilez, Javier
Reich, David
Rocchi, Mariano
Schumann, Gerald G.
Searle, Stephen
Sikela, James M.
Skollar, Gabriella
Smit, Arian
Sonmez, Kemal
Hallers, Boudewijn ten
Terhune, Elizabeth
Thomas, Gregg W. C.
Ullmer, Brygg
Ventura, Mario
Walker, Jerilyn A.
Wall, Jeffrey D.
Walter, Lutz
Ward, Michelle C.
Wheelan, Sarah J.
Whelan, Christopher W.
White, Simon
Wilhelm, Larry J.
Woerner, August E.
Yandell, Mark
Zhu, Baoli
Hammer, Michael F.
Marques-Bonet, Tomas
Eichler, Evan E.
Fulton, Lucinda
Fronick, Catrina
Muzny, Donna M.
Warren, Wesley C.
Worley, Kim C.
Rogers, Jeffrey
Wilson, Richard K.
Gibbs, Richard A.
author_sort Carbone, Lucia
collection PubMed
description Gibbons are small arboreal apes that display an accelerated rate of evolutionary chromosomal rearrangement and occupy a key node in the primate phylogeny between Old World monkeys and great apes. Here we present the assembly and analysis of a northern white-cheeked gibbon (Nomascus leucogenys) genome. We describe the propensity for a gibbon-specific retrotransposon (LAVA) to insert into chromosome segregation genes and alter transcription by providing a premature termination site, suggesting a possible molecular mechanism for the genome plasticity of the gibbon lineage. We further show that the gibbon genera (Nomascus, Hylobates, Hoolock and Symphalangus) experienced a near-instantaneous radiation ∼5 million years ago, coincident with major geographical changes in southeast Asia that caused cycles of habitat compression and expansion. Finally, we identify signatures of positive selection in genes important for forelimb development (TBX5) and connective tissues (COL1A1) that may have been involved in the adaptation of gibbons to their arboreal habitat. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/nature13679) contains supplementary material, which is available to authorized users.
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spelling pubmed-42497322015-03-11 Gibbon genome and the fast karyotype evolution of small apes Carbone, Lucia Alan Harris, R. Gnerre, Sante Veeramah, Krishna R. Lorente-Galdos, Belen Huddleston, John Meyer, Thomas J. Herrero, Javier Roos, Christian Aken, Bronwen Anaclerio, Fabio Archidiacono, Nicoletta Baker, Carl Barrell, Daniel Batzer, Mark A. Beal, Kathryn Blancher, Antoine Bohrson, Craig L. Brameier, Markus Campbell, Michael S. Capozzi, Oronzo Casola, Claudio Chiatante, Giorgia Cree, Andrew Damert, Annette de Jong, Pieter J. Dumas, Laura Fernandez-Callejo, Marcos Flicek, Paul Fuchs, Nina V. Gut, Ivo Gut, Marta Hahn, Matthew W. Hernandez-Rodriguez, Jessica Hillier, LaDeana W. Hubley, Robert Ianc, Bianca Izsvák, Zsuzsanna Jablonski, Nina G. Johnstone, Laurel M. Karimpour-Fard, Anis Konkel, Miriam K. Kostka, Dennis Lazar, Nathan H. Lee, Sandra L. Lewis, Lora R. Liu, Yue Locke, Devin P. Mallick, Swapan Mendez, Fernando L. Muffato, Matthieu Nazareth, Lynne V. Nevonen, Kimberly A. O’Bleness, Majesta Ochis, Cornelia Odom, Duncan T. Pollard, Katherine S. Quilez, Javier Reich, David Rocchi, Mariano Schumann, Gerald G. Searle, Stephen Sikela, James M. Skollar, Gabriella Smit, Arian Sonmez, Kemal Hallers, Boudewijn ten Terhune, Elizabeth Thomas, Gregg W. C. Ullmer, Brygg Ventura, Mario Walker, Jerilyn A. Wall, Jeffrey D. Walter, Lutz Ward, Michelle C. Wheelan, Sarah J. Whelan, Christopher W. White, Simon Wilhelm, Larry J. Woerner, August E. Yandell, Mark Zhu, Baoli Hammer, Michael F. Marques-Bonet, Tomas Eichler, Evan E. Fulton, Lucinda Fronick, Catrina Muzny, Donna M. Warren, Wesley C. Worley, Kim C. Rogers, Jeffrey Wilson, Richard K. Gibbs, Richard A. Nature Article Gibbons are small arboreal apes that display an accelerated rate of evolutionary chromosomal rearrangement and occupy a key node in the primate phylogeny between Old World monkeys and great apes. Here we present the assembly and analysis of a northern white-cheeked gibbon (Nomascus leucogenys) genome. We describe the propensity for a gibbon-specific retrotransposon (LAVA) to insert into chromosome segregation genes and alter transcription by providing a premature termination site, suggesting a possible molecular mechanism for the genome plasticity of the gibbon lineage. We further show that the gibbon genera (Nomascus, Hylobates, Hoolock and Symphalangus) experienced a near-instantaneous radiation ∼5 million years ago, coincident with major geographical changes in southeast Asia that caused cycles of habitat compression and expansion. Finally, we identify signatures of positive selection in genes important for forelimb development (TBX5) and connective tissues (COL1A1) that may have been involved in the adaptation of gibbons to their arboreal habitat. SUPPLEMENTARY INFORMATION: The online version of this article (doi:10.1038/nature13679) contains supplementary material, which is available to authorized users. Nature Publishing Group UK 2014-09-10 2014 /pmc/articles/PMC4249732/ /pubmed/25209798 http://dx.doi.org/10.1038/nature13679 Text en © The Author(s) 2014 https://creativecommons.org/licenses/by-nc-sa/3.0/This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported licence. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons licence, users will need to obtain permission from the licence holder to reproduce the material. To view a copy of this licence, visit http://creativecommons.org/licenses/by-nc-sa/3.0/ (https://creativecommons.org/licenses/by-nc-sa/3.0/) .
spellingShingle Article
Carbone, Lucia
Alan Harris, R.
Gnerre, Sante
Veeramah, Krishna R.
Lorente-Galdos, Belen
Huddleston, John
Meyer, Thomas J.
Herrero, Javier
Roos, Christian
Aken, Bronwen
Anaclerio, Fabio
Archidiacono, Nicoletta
Baker, Carl
Barrell, Daniel
Batzer, Mark A.
Beal, Kathryn
Blancher, Antoine
Bohrson, Craig L.
Brameier, Markus
Campbell, Michael S.
Capozzi, Oronzo
Casola, Claudio
Chiatante, Giorgia
Cree, Andrew
Damert, Annette
de Jong, Pieter J.
Dumas, Laura
Fernandez-Callejo, Marcos
Flicek, Paul
Fuchs, Nina V.
Gut, Ivo
Gut, Marta
Hahn, Matthew W.
Hernandez-Rodriguez, Jessica
Hillier, LaDeana W.
Hubley, Robert
Ianc, Bianca
Izsvák, Zsuzsanna
Jablonski, Nina G.
Johnstone, Laurel M.
Karimpour-Fard, Anis
Konkel, Miriam K.
Kostka, Dennis
Lazar, Nathan H.
Lee, Sandra L.
Lewis, Lora R.
Liu, Yue
Locke, Devin P.
Mallick, Swapan
Mendez, Fernando L.
Muffato, Matthieu
Nazareth, Lynne V.
Nevonen, Kimberly A.
O’Bleness, Majesta
Ochis, Cornelia
Odom, Duncan T.
Pollard, Katherine S.
Quilez, Javier
Reich, David
Rocchi, Mariano
Schumann, Gerald G.
Searle, Stephen
Sikela, James M.
Skollar, Gabriella
Smit, Arian
Sonmez, Kemal
Hallers, Boudewijn ten
Terhune, Elizabeth
Thomas, Gregg W. C.
Ullmer, Brygg
Ventura, Mario
Walker, Jerilyn A.
Wall, Jeffrey D.
Walter, Lutz
Ward, Michelle C.
Wheelan, Sarah J.
Whelan, Christopher W.
White, Simon
Wilhelm, Larry J.
Woerner, August E.
Yandell, Mark
Zhu, Baoli
Hammer, Michael F.
Marques-Bonet, Tomas
Eichler, Evan E.
Fulton, Lucinda
Fronick, Catrina
Muzny, Donna M.
Warren, Wesley C.
Worley, Kim C.
Rogers, Jeffrey
Wilson, Richard K.
Gibbs, Richard A.
Gibbon genome and the fast karyotype evolution of small apes
title Gibbon genome and the fast karyotype evolution of small apes
title_full Gibbon genome and the fast karyotype evolution of small apes
title_fullStr Gibbon genome and the fast karyotype evolution of small apes
title_full_unstemmed Gibbon genome and the fast karyotype evolution of small apes
title_short Gibbon genome and the fast karyotype evolution of small apes
title_sort gibbon genome and the fast karyotype evolution of small apes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4249732/
https://www.ncbi.nlm.nih.gov/pubmed/25209798
http://dx.doi.org/10.1038/nature13679
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