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The house spider genome reveals an ancient whole-genome duplication during arachnid evolution

BACKGROUND: The duplication of genes can occur through various mechanisms and is thought to make a major contribution to the evolutionary diversification of organisms. There is increasing evidence for a large-scale duplication of genes in some chelicerate lineages including two rounds of whole genom...

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Autores principales: Schwager, Evelyn E., Sharma, Prashant P., Clarke, Thomas, Leite, Daniel J., Wierschin, Torsten, Pechmann, Matthias, Akiyama-Oda, Yasuko, Esposito, Lauren, Bechsgaard, Jesper, Bilde, Trine, Buffry, Alexandra D., Chao, Hsu, Dinh, Huyen, Doddapaneni, HarshaVardhan, Dugan, Shannon, Eibner, Cornelius, Extavour, Cassandra G., Funch, Peter, Garb, Jessica, Gonzalez, Luis B., Gonzalez, Vanessa L., Griffiths-Jones, Sam, Han, Yi, Hayashi, Cheryl, Hilbrant, Maarten, Hughes, Daniel S. T., Janssen, Ralf, Lee, Sandra L., Maeso, Ignacio, Murali, Shwetha C., Muzny, Donna M., Nunes da Fonseca, Rodrigo, Paese, Christian L. B., Qu, Jiaxin, Ronshaugen, Matthew, Schomburg, Christoph, Schönauer, Anna, Stollewerk, Angelika, Torres-Oliva, Montserrat, Turetzek, Natascha, Vanthournout, Bram, Werren, John H., Wolff, Carsten, Worley, Kim C., Bucher, Gregor, Gibbs, Richard A., Coddington, Jonathan, Oda, Hiroki, Stanke, Mario, Ayoub, Nadia A., Prpic, Nikola-Michael, Flot, Jean-François, Posnien, Nico, Richards, Stephen, McGregor, Alistair P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5535294/
https://www.ncbi.nlm.nih.gov/pubmed/28756775
http://dx.doi.org/10.1186/s12915-017-0399-x
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author Schwager, Evelyn E.
Sharma, Prashant P.
Clarke, Thomas
Leite, Daniel J.
Wierschin, Torsten
Pechmann, Matthias
Akiyama-Oda, Yasuko
Esposito, Lauren
Bechsgaard, Jesper
Bilde, Trine
Buffry, Alexandra D.
Chao, Hsu
Dinh, Huyen
Doddapaneni, HarshaVardhan
Dugan, Shannon
Eibner, Cornelius
Extavour, Cassandra G.
Funch, Peter
Garb, Jessica
Gonzalez, Luis B.
Gonzalez, Vanessa L.
Griffiths-Jones, Sam
Han, Yi
Hayashi, Cheryl
Hilbrant, Maarten
Hughes, Daniel S. T.
Janssen, Ralf
Lee, Sandra L.
Maeso, Ignacio
Murali, Shwetha C.
Muzny, Donna M.
Nunes da Fonseca, Rodrigo
Paese, Christian L. B.
Qu, Jiaxin
Ronshaugen, Matthew
Schomburg, Christoph
Schönauer, Anna
Stollewerk, Angelika
Torres-Oliva, Montserrat
Turetzek, Natascha
Vanthournout, Bram
Werren, John H.
Wolff, Carsten
Worley, Kim C.
Bucher, Gregor
Gibbs, Richard A.
Coddington, Jonathan
Oda, Hiroki
Stanke, Mario
Ayoub, Nadia A.
Prpic, Nikola-Michael
Flot, Jean-François
Posnien, Nico
Richards, Stephen
McGregor, Alistair P.
author_facet Schwager, Evelyn E.
Sharma, Prashant P.
Clarke, Thomas
Leite, Daniel J.
Wierschin, Torsten
Pechmann, Matthias
Akiyama-Oda, Yasuko
Esposito, Lauren
Bechsgaard, Jesper
Bilde, Trine
Buffry, Alexandra D.
Chao, Hsu
Dinh, Huyen
Doddapaneni, HarshaVardhan
Dugan, Shannon
Eibner, Cornelius
Extavour, Cassandra G.
Funch, Peter
Garb, Jessica
Gonzalez, Luis B.
Gonzalez, Vanessa L.
Griffiths-Jones, Sam
Han, Yi
Hayashi, Cheryl
Hilbrant, Maarten
Hughes, Daniel S. T.
Janssen, Ralf
Lee, Sandra L.
Maeso, Ignacio
Murali, Shwetha C.
Muzny, Donna M.
Nunes da Fonseca, Rodrigo
Paese, Christian L. B.
Qu, Jiaxin
Ronshaugen, Matthew
Schomburg, Christoph
Schönauer, Anna
Stollewerk, Angelika
Torres-Oliva, Montserrat
Turetzek, Natascha
Vanthournout, Bram
Werren, John H.
Wolff, Carsten
Worley, Kim C.
Bucher, Gregor
Gibbs, Richard A.
Coddington, Jonathan
Oda, Hiroki
Stanke, Mario
Ayoub, Nadia A.
Prpic, Nikola-Michael
Flot, Jean-François
Posnien, Nico
Richards, Stephen
McGregor, Alistair P.
author_sort Schwager, Evelyn E.
collection PubMed
description BACKGROUND: The duplication of genes can occur through various mechanisms and is thought to make a major contribution to the evolutionary diversification of organisms. There is increasing evidence for a large-scale duplication of genes in some chelicerate lineages including two rounds of whole genome duplication (WGD) in horseshoe crabs. To investigate this further, we sequenced and analyzed the genome of the common house spider Parasteatoda tepidariorum. RESULTS: We found pervasive duplication of both coding and non-coding genes in this spider, including two clusters of Hox genes. Analysis of synteny conservation across the P. tepidariorum genome suggests that there has been an ancient WGD in spiders. Comparison with the genomes of other chelicerates, including that of the newly sequenced bark scorpion Centruroides sculpturatus, suggests that this event occurred in the common ancestor of spiders and scorpions, and is probably independent of the WGDs in horseshoe crabs. Furthermore, characterization of the sequence and expression of the Hox paralogs in P. tepidariorum suggests that many have been subject to neo-functionalization and/or sub-functionalization since their duplication. CONCLUSIONS: Our results reveal that spiders and scorpions are likely the descendants of a polyploid ancestor that lived more than 450 MYA. Given the extensive morphological diversity and ecological adaptations found among these animals, rivaling those of vertebrates, our study of the ancient WGD event in Arachnopulmonata provides a new comparative platform to explore common and divergent evolutionary outcomes of polyploidization events across eukaryotes. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12915-017-0399-x) contains supplementary material, which is available to authorized users.
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spelling pubmed-55352942017-08-04 The house spider genome reveals an ancient whole-genome duplication during arachnid evolution Schwager, Evelyn E. Sharma, Prashant P. Clarke, Thomas Leite, Daniel J. Wierschin, Torsten Pechmann, Matthias Akiyama-Oda, Yasuko Esposito, Lauren Bechsgaard, Jesper Bilde, Trine Buffry, Alexandra D. Chao, Hsu Dinh, Huyen Doddapaneni, HarshaVardhan Dugan, Shannon Eibner, Cornelius Extavour, Cassandra G. Funch, Peter Garb, Jessica Gonzalez, Luis B. Gonzalez, Vanessa L. Griffiths-Jones, Sam Han, Yi Hayashi, Cheryl Hilbrant, Maarten Hughes, Daniel S. T. Janssen, Ralf Lee, Sandra L. Maeso, Ignacio Murali, Shwetha C. Muzny, Donna M. Nunes da Fonseca, Rodrigo Paese, Christian L. B. Qu, Jiaxin Ronshaugen, Matthew Schomburg, Christoph Schönauer, Anna Stollewerk, Angelika Torres-Oliva, Montserrat Turetzek, Natascha Vanthournout, Bram Werren, John H. Wolff, Carsten Worley, Kim C. Bucher, Gregor Gibbs, Richard A. Coddington, Jonathan Oda, Hiroki Stanke, Mario Ayoub, Nadia A. Prpic, Nikola-Michael Flot, Jean-François Posnien, Nico Richards, Stephen McGregor, Alistair P. BMC Biol Research Article BACKGROUND: The duplication of genes can occur through various mechanisms and is thought to make a major contribution to the evolutionary diversification of organisms. There is increasing evidence for a large-scale duplication of genes in some chelicerate lineages including two rounds of whole genome duplication (WGD) in horseshoe crabs. To investigate this further, we sequenced and analyzed the genome of the common house spider Parasteatoda tepidariorum. RESULTS: We found pervasive duplication of both coding and non-coding genes in this spider, including two clusters of Hox genes. Analysis of synteny conservation across the P. tepidariorum genome suggests that there has been an ancient WGD in spiders. Comparison with the genomes of other chelicerates, including that of the newly sequenced bark scorpion Centruroides sculpturatus, suggests that this event occurred in the common ancestor of spiders and scorpions, and is probably independent of the WGDs in horseshoe crabs. Furthermore, characterization of the sequence and expression of the Hox paralogs in P. tepidariorum suggests that many have been subject to neo-functionalization and/or sub-functionalization since their duplication. CONCLUSIONS: Our results reveal that spiders and scorpions are likely the descendants of a polyploid ancestor that lived more than 450 MYA. Given the extensive morphological diversity and ecological adaptations found among these animals, rivaling those of vertebrates, our study of the ancient WGD event in Arachnopulmonata provides a new comparative platform to explore common and divergent evolutionary outcomes of polyploidization events across eukaryotes. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12915-017-0399-x) contains supplementary material, which is available to authorized users. BioMed Central 2017-07-31 /pmc/articles/PMC5535294/ /pubmed/28756775 http://dx.doi.org/10.1186/s12915-017-0399-x Text en © McGregor et al. 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Schwager, Evelyn E.
Sharma, Prashant P.
Clarke, Thomas
Leite, Daniel J.
Wierschin, Torsten
Pechmann, Matthias
Akiyama-Oda, Yasuko
Esposito, Lauren
Bechsgaard, Jesper
Bilde, Trine
Buffry, Alexandra D.
Chao, Hsu
Dinh, Huyen
Doddapaneni, HarshaVardhan
Dugan, Shannon
Eibner, Cornelius
Extavour, Cassandra G.
Funch, Peter
Garb, Jessica
Gonzalez, Luis B.
Gonzalez, Vanessa L.
Griffiths-Jones, Sam
Han, Yi
Hayashi, Cheryl
Hilbrant, Maarten
Hughes, Daniel S. T.
Janssen, Ralf
Lee, Sandra L.
Maeso, Ignacio
Murali, Shwetha C.
Muzny, Donna M.
Nunes da Fonseca, Rodrigo
Paese, Christian L. B.
Qu, Jiaxin
Ronshaugen, Matthew
Schomburg, Christoph
Schönauer, Anna
Stollewerk, Angelika
Torres-Oliva, Montserrat
Turetzek, Natascha
Vanthournout, Bram
Werren, John H.
Wolff, Carsten
Worley, Kim C.
Bucher, Gregor
Gibbs, Richard A.
Coddington, Jonathan
Oda, Hiroki
Stanke, Mario
Ayoub, Nadia A.
Prpic, Nikola-Michael
Flot, Jean-François
Posnien, Nico
Richards, Stephen
McGregor, Alistair P.
The house spider genome reveals an ancient whole-genome duplication during arachnid evolution
title The house spider genome reveals an ancient whole-genome duplication during arachnid evolution
title_full The house spider genome reveals an ancient whole-genome duplication during arachnid evolution
title_fullStr The house spider genome reveals an ancient whole-genome duplication during arachnid evolution
title_full_unstemmed The house spider genome reveals an ancient whole-genome duplication during arachnid evolution
title_short The house spider genome reveals an ancient whole-genome duplication during arachnid evolution
title_sort house spider genome reveals an ancient whole-genome duplication during arachnid evolution
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5535294/
https://www.ncbi.nlm.nih.gov/pubmed/28756775
http://dx.doi.org/10.1186/s12915-017-0399-x
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