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Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera
The tremendous diversity of Hymenoptera is commonly attributed to the evolution of parasitoidism in the last common ancestor of parasitoid sawflies (Orussidae) and wasp-waisted Hymenoptera (Apocrita). However, Apocrita and Orussidae differ dramatically in their species richness, indicating that the...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455281/ https://www.ncbi.nlm.nih.gov/pubmed/32442304 http://dx.doi.org/10.1093/gbe/evaa106 |
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author | Oeyen, Jan Philip Baa-Puyoulet, Patrice Benoit, Joshua B Beukeboom, Leo W Bornberg-Bauer, Erich Buttstedt, Anja Calevro, Federica Cash, Elizabeth I Chao, Hsu Charles, Hubert Chen, Mei-Ju May Childers, Christopher Cridge, Andrew G Dearden, Peter Dinh, Huyen Doddapaneni, Harsha Vardhan Dolan, Amanda Donath, Alexander Dowling, Daniel Dugan, Shannon Duncan, Elizabeth Elpidina, Elena N Friedrich, Markus Geuverink, Elzemiek Gibson, Joshua D Grath, Sonja Grimmelikhuijzen, Cornelis J P Große-Wilde, Ewald Gudobba, Cameron Han, Yi Hansson, Bill S Hauser, Frank Hughes, Daniel S T Ioannidis, Panagiotis Jacquin-Joly, Emmanuelle Jennings, Emily C Jones, Jeffery W Klasberg, Steffen Lee, Sandra L Lesný, Peter Lovegrove, Mackenzie Martin, Sebastian Martynov, Alexander G Mayer, Christoph Montagné, Nicolas Moris, Victoria C Munoz-Torres, Monica Murali, Shwetha Canchi Muzny, Donna M Oppert, Brenda Parisot, Nicolas Pauli, Thomas Peters, Ralph S Petersen, Malte Pick, Christian Persyn, Emma Podsiadlowski, Lars Poelchau, Monica F Provataris, Panagiotis Qu, Jiaxin Reijnders, Maarten J M F von Reumont, Björn Marcus Rosendale, Andrew J Simao, Felipe A Skelly, John Sotiropoulos, Alexandros G Stahl, Aaron L Sumitani, Megumi Szuter, Elise M Tidswell, Olivia Tsitlakidis, Evangelos Vedder, Lucia Waterhouse, Robert M Werren, John H Wilbrandt, Jeanne Worley, Kim C Yamamoto, Daisuke S van de Zande, Louis Zdobnov, Evgeny M Ziesmann, Tanja Gibbs, Richard A Richards, Stephen Hatakeyama, Masatsugu Misof, Bernhard Niehuis, Oliver |
author_facet | Oeyen, Jan Philip Baa-Puyoulet, Patrice Benoit, Joshua B Beukeboom, Leo W Bornberg-Bauer, Erich Buttstedt, Anja Calevro, Federica Cash, Elizabeth I Chao, Hsu Charles, Hubert Chen, Mei-Ju May Childers, Christopher Cridge, Andrew G Dearden, Peter Dinh, Huyen Doddapaneni, Harsha Vardhan Dolan, Amanda Donath, Alexander Dowling, Daniel Dugan, Shannon Duncan, Elizabeth Elpidina, Elena N Friedrich, Markus Geuverink, Elzemiek Gibson, Joshua D Grath, Sonja Grimmelikhuijzen, Cornelis J P Große-Wilde, Ewald Gudobba, Cameron Han, Yi Hansson, Bill S Hauser, Frank Hughes, Daniel S T Ioannidis, Panagiotis Jacquin-Joly, Emmanuelle Jennings, Emily C Jones, Jeffery W Klasberg, Steffen Lee, Sandra L Lesný, Peter Lovegrove, Mackenzie Martin, Sebastian Martynov, Alexander G Mayer, Christoph Montagné, Nicolas Moris, Victoria C Munoz-Torres, Monica Murali, Shwetha Canchi Muzny, Donna M Oppert, Brenda Parisot, Nicolas Pauli, Thomas Peters, Ralph S Petersen, Malte Pick, Christian Persyn, Emma Podsiadlowski, Lars Poelchau, Monica F Provataris, Panagiotis Qu, Jiaxin Reijnders, Maarten J M F von Reumont, Björn Marcus Rosendale, Andrew J Simao, Felipe A Skelly, John Sotiropoulos, Alexandros G Stahl, Aaron L Sumitani, Megumi Szuter, Elise M Tidswell, Olivia Tsitlakidis, Evangelos Vedder, Lucia Waterhouse, Robert M Werren, John H Wilbrandt, Jeanne Worley, Kim C Yamamoto, Daisuke S van de Zande, Louis Zdobnov, Evgeny M Ziesmann, Tanja Gibbs, Richard A Richards, Stephen Hatakeyama, Masatsugu Misof, Bernhard Niehuis, Oliver |
author_sort | Oeyen, Jan Philip |
collection | PubMed |
description | The tremendous diversity of Hymenoptera is commonly attributed to the evolution of parasitoidism in the last common ancestor of parasitoid sawflies (Orussidae) and wasp-waisted Hymenoptera (Apocrita). However, Apocrita and Orussidae differ dramatically in their species richness, indicating that the diversification of Apocrita was promoted by additional traits. These traits have remained elusive due to a paucity of sawfly genome sequences, in particular those of parasitoid sawflies. Here, we present comparative analyses of draft genomes of the primarily phytophagous sawfly Athalia rosae and the parasitoid sawfly Orussus abietinus. Our analyses revealed that the ancestral hymenopteran genome exhibited traits that were previously considered unique to eusocial Apocrita (e.g., low transposable element content and activity) and a wider gene repertoire than previously thought (e.g., genes for CO(2) detection). Moreover, we discovered that Apocrita evolved a significantly larger array of odorant receptors than sawflies, which could be relevant to the remarkable diversification of Apocrita by enabling efficient detection and reliable identification of hosts. |
format | Online Article Text |
id | pubmed-7455281 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-74552812020-09-02 Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera Oeyen, Jan Philip Baa-Puyoulet, Patrice Benoit, Joshua B Beukeboom, Leo W Bornberg-Bauer, Erich Buttstedt, Anja Calevro, Federica Cash, Elizabeth I Chao, Hsu Charles, Hubert Chen, Mei-Ju May Childers, Christopher Cridge, Andrew G Dearden, Peter Dinh, Huyen Doddapaneni, Harsha Vardhan Dolan, Amanda Donath, Alexander Dowling, Daniel Dugan, Shannon Duncan, Elizabeth Elpidina, Elena N Friedrich, Markus Geuverink, Elzemiek Gibson, Joshua D Grath, Sonja Grimmelikhuijzen, Cornelis J P Große-Wilde, Ewald Gudobba, Cameron Han, Yi Hansson, Bill S Hauser, Frank Hughes, Daniel S T Ioannidis, Panagiotis Jacquin-Joly, Emmanuelle Jennings, Emily C Jones, Jeffery W Klasberg, Steffen Lee, Sandra L Lesný, Peter Lovegrove, Mackenzie Martin, Sebastian Martynov, Alexander G Mayer, Christoph Montagné, Nicolas Moris, Victoria C Munoz-Torres, Monica Murali, Shwetha Canchi Muzny, Donna M Oppert, Brenda Parisot, Nicolas Pauli, Thomas Peters, Ralph S Petersen, Malte Pick, Christian Persyn, Emma Podsiadlowski, Lars Poelchau, Monica F Provataris, Panagiotis Qu, Jiaxin Reijnders, Maarten J M F von Reumont, Björn Marcus Rosendale, Andrew J Simao, Felipe A Skelly, John Sotiropoulos, Alexandros G Stahl, Aaron L Sumitani, Megumi Szuter, Elise M Tidswell, Olivia Tsitlakidis, Evangelos Vedder, Lucia Waterhouse, Robert M Werren, John H Wilbrandt, Jeanne Worley, Kim C Yamamoto, Daisuke S van de Zande, Louis Zdobnov, Evgeny M Ziesmann, Tanja Gibbs, Richard A Richards, Stephen Hatakeyama, Masatsugu Misof, Bernhard Niehuis, Oliver Genome Biol Evol Research Article The tremendous diversity of Hymenoptera is commonly attributed to the evolution of parasitoidism in the last common ancestor of parasitoid sawflies (Orussidae) and wasp-waisted Hymenoptera (Apocrita). However, Apocrita and Orussidae differ dramatically in their species richness, indicating that the diversification of Apocrita was promoted by additional traits. These traits have remained elusive due to a paucity of sawfly genome sequences, in particular those of parasitoid sawflies. Here, we present comparative analyses of draft genomes of the primarily phytophagous sawfly Athalia rosae and the parasitoid sawfly Orussus abietinus. Our analyses revealed that the ancestral hymenopteran genome exhibited traits that were previously considered unique to eusocial Apocrita (e.g., low transposable element content and activity) and a wider gene repertoire than previously thought (e.g., genes for CO(2) detection). Moreover, we discovered that Apocrita evolved a significantly larger array of odorant receptors than sawflies, which could be relevant to the remarkable diversification of Apocrita by enabling efficient detection and reliable identification of hosts. Oxford University Press 2020-05-22 /pmc/articles/PMC7455281/ /pubmed/32442304 http://dx.doi.org/10.1093/gbe/evaa106 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com |
spellingShingle | Research Article Oeyen, Jan Philip Baa-Puyoulet, Patrice Benoit, Joshua B Beukeboom, Leo W Bornberg-Bauer, Erich Buttstedt, Anja Calevro, Federica Cash, Elizabeth I Chao, Hsu Charles, Hubert Chen, Mei-Ju May Childers, Christopher Cridge, Andrew G Dearden, Peter Dinh, Huyen Doddapaneni, Harsha Vardhan Dolan, Amanda Donath, Alexander Dowling, Daniel Dugan, Shannon Duncan, Elizabeth Elpidina, Elena N Friedrich, Markus Geuverink, Elzemiek Gibson, Joshua D Grath, Sonja Grimmelikhuijzen, Cornelis J P Große-Wilde, Ewald Gudobba, Cameron Han, Yi Hansson, Bill S Hauser, Frank Hughes, Daniel S T Ioannidis, Panagiotis Jacquin-Joly, Emmanuelle Jennings, Emily C Jones, Jeffery W Klasberg, Steffen Lee, Sandra L Lesný, Peter Lovegrove, Mackenzie Martin, Sebastian Martynov, Alexander G Mayer, Christoph Montagné, Nicolas Moris, Victoria C Munoz-Torres, Monica Murali, Shwetha Canchi Muzny, Donna M Oppert, Brenda Parisot, Nicolas Pauli, Thomas Peters, Ralph S Petersen, Malte Pick, Christian Persyn, Emma Podsiadlowski, Lars Poelchau, Monica F Provataris, Panagiotis Qu, Jiaxin Reijnders, Maarten J M F von Reumont, Björn Marcus Rosendale, Andrew J Simao, Felipe A Skelly, John Sotiropoulos, Alexandros G Stahl, Aaron L Sumitani, Megumi Szuter, Elise M Tidswell, Olivia Tsitlakidis, Evangelos Vedder, Lucia Waterhouse, Robert M Werren, John H Wilbrandt, Jeanne Worley, Kim C Yamamoto, Daisuke S van de Zande, Louis Zdobnov, Evgeny M Ziesmann, Tanja Gibbs, Richard A Richards, Stephen Hatakeyama, Masatsugu Misof, Bernhard Niehuis, Oliver Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera |
title | Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera |
title_full | Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera |
title_fullStr | Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera |
title_full_unstemmed | Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera |
title_short | Sawfly Genomes Reveal Evolutionary Acquisitions That Fostered the Mega-Radiation of Parasitoid and Eusocial Hymenoptera |
title_sort | sawfly genomes reveal evolutionary acquisitions that fostered the mega-radiation of parasitoid and eusocial hymenoptera |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455281/ https://www.ncbi.nlm.nih.gov/pubmed/32442304 http://dx.doi.org/10.1093/gbe/evaa106 |
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