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The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species
BACKGROUND: The Mediterranean fruit fly (medfly), Ceratitis capitata, is a major destructive insect pest due to its broad host range, which includes hundreds of fruits and vegetables. It exhibits a unique ability to invade and adapt to ecological niches throughout tropical and subtropical regions of...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5034548/ https://www.ncbi.nlm.nih.gov/pubmed/27659211 http://dx.doi.org/10.1186/s13059-016-1049-2 |
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author | Papanicolaou, Alexie Schetelig, Marc F. Arensburger, Peter Atkinson, Peter W. Benoit, Joshua B. Bourtzis, Kostas Castañera, Pedro Cavanaugh, John P. Chao, Hsu Childers, Christopher Curril, Ingrid Dinh, Huyen Doddapaneni, HarshaVardhan Dolan, Amanda Dugan, Shannon Friedrich, Markus Gasperi, Giuliano Geib, Scott Georgakilas, Georgios Gibbs, Richard A. Giers, Sarah D. Gomulski, Ludvik M. González-Guzmán, Miguel Guillem-Amat, Ana Han, Yi Hatzigeorgiou, Artemis G. Hernández-Crespo, Pedro Hughes, Daniel S. T. Jones, Jeffery W. Karagkouni, Dimitra Koskinioti, Panagiota Lee, Sandra L. Malacrida, Anna R. Manni, Mosè Mathiopoulos, Kostas Meccariello, Angela Murali, Shwetha C. Murphy, Terence D. Muzny, Donna M. Oberhofer, Georg Ortego, Félix Paraskevopoulou, Maria D. Poelchau, Monica Qu, Jiaxin Reczko, Martin Robertson, Hugh M. Rosendale, Andrew J. Rosselot, Andrew E. Saccone, Giuseppe Salvemini, Marco Savini, Grazia Schreiner, Patrick Scolari, Francesca Siciliano, Paolo Sim, Sheina B. Tsiamis, George Ureña, Enric Vlachos, Ioannis S. Werren, John H. Wimmer, Ernst A. Worley, Kim C. Zacharopoulou, Antigone Richards, Stephen Handler, Alfred M. |
author_facet | Papanicolaou, Alexie Schetelig, Marc F. Arensburger, Peter Atkinson, Peter W. Benoit, Joshua B. Bourtzis, Kostas Castañera, Pedro Cavanaugh, John P. Chao, Hsu Childers, Christopher Curril, Ingrid Dinh, Huyen Doddapaneni, HarshaVardhan Dolan, Amanda Dugan, Shannon Friedrich, Markus Gasperi, Giuliano Geib, Scott Georgakilas, Georgios Gibbs, Richard A. Giers, Sarah D. Gomulski, Ludvik M. González-Guzmán, Miguel Guillem-Amat, Ana Han, Yi Hatzigeorgiou, Artemis G. Hernández-Crespo, Pedro Hughes, Daniel S. T. Jones, Jeffery W. Karagkouni, Dimitra Koskinioti, Panagiota Lee, Sandra L. Malacrida, Anna R. Manni, Mosè Mathiopoulos, Kostas Meccariello, Angela Murali, Shwetha C. Murphy, Terence D. Muzny, Donna M. Oberhofer, Georg Ortego, Félix Paraskevopoulou, Maria D. Poelchau, Monica Qu, Jiaxin Reczko, Martin Robertson, Hugh M. Rosendale, Andrew J. Rosselot, Andrew E. Saccone, Giuseppe Salvemini, Marco Savini, Grazia Schreiner, Patrick Scolari, Francesca Siciliano, Paolo Sim, Sheina B. Tsiamis, George Ureña, Enric Vlachos, Ioannis S. Werren, John H. Wimmer, Ernst A. Worley, Kim C. Zacharopoulou, Antigone Richards, Stephen Handler, Alfred M. |
author_sort | Papanicolaou, Alexie |
collection | PubMed |
description | BACKGROUND: The Mediterranean fruit fly (medfly), Ceratitis capitata, is a major destructive insect pest due to its broad host range, which includes hundreds of fruits and vegetables. It exhibits a unique ability to invade and adapt to ecological niches throughout tropical and subtropical regions of the world, though medfly infestations have been prevented and controlled by the sterile insect technique (SIT) as part of integrated pest management programs (IPMs). The genetic analysis and manipulation of medfly has been subject to intensive study in an effort to improve SIT efficacy and other aspects of IPM control. RESULTS: The 479 Mb medfly genome is sequenced from adult flies from lines inbred for 20 generations. A high-quality assembly is achieved having a contig N50 of 45.7 kb and scaffold N50 of 4.06 Mb. In-depth curation of more than 1800 messenger RNAs shows specific gene expansions that can be related to invasiveness and host adaptation, including gene families for chemoreception, toxin and insecticide metabolism, cuticle proteins, opsins, and aquaporins. We identify genes relevant to IPM control, including those required to improve SIT. CONCLUSIONS: The medfly genome sequence provides critical insights into the biology of one of the most serious and widespread agricultural pests. This knowledge should significantly advance the means of controlling the size and invasive potential of medfly populations. Its close relationship to Drosophila, and other insect species important to agriculture and human health, will further comparative functional and structural studies of insect genomes that should broaden our understanding of gene family evolution. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13059-016-1049-2) contains supplementary material, which is available to authorized users. |
format | Online Article Text |
id | pubmed-5034548 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-50345482016-09-29 The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species Papanicolaou, Alexie Schetelig, Marc F. Arensburger, Peter Atkinson, Peter W. Benoit, Joshua B. Bourtzis, Kostas Castañera, Pedro Cavanaugh, John P. Chao, Hsu Childers, Christopher Curril, Ingrid Dinh, Huyen Doddapaneni, HarshaVardhan Dolan, Amanda Dugan, Shannon Friedrich, Markus Gasperi, Giuliano Geib, Scott Georgakilas, Georgios Gibbs, Richard A. Giers, Sarah D. Gomulski, Ludvik M. González-Guzmán, Miguel Guillem-Amat, Ana Han, Yi Hatzigeorgiou, Artemis G. Hernández-Crespo, Pedro Hughes, Daniel S. T. Jones, Jeffery W. Karagkouni, Dimitra Koskinioti, Panagiota Lee, Sandra L. Malacrida, Anna R. Manni, Mosè Mathiopoulos, Kostas Meccariello, Angela Murali, Shwetha C. Murphy, Terence D. Muzny, Donna M. Oberhofer, Georg Ortego, Félix Paraskevopoulou, Maria D. Poelchau, Monica Qu, Jiaxin Reczko, Martin Robertson, Hugh M. Rosendale, Andrew J. Rosselot, Andrew E. Saccone, Giuseppe Salvemini, Marco Savini, Grazia Schreiner, Patrick Scolari, Francesca Siciliano, Paolo Sim, Sheina B. Tsiamis, George Ureña, Enric Vlachos, Ioannis S. Werren, John H. Wimmer, Ernst A. Worley, Kim C. Zacharopoulou, Antigone Richards, Stephen Handler, Alfred M. Genome Biol Research BACKGROUND: The Mediterranean fruit fly (medfly), Ceratitis capitata, is a major destructive insect pest due to its broad host range, which includes hundreds of fruits and vegetables. It exhibits a unique ability to invade and adapt to ecological niches throughout tropical and subtropical regions of the world, though medfly infestations have been prevented and controlled by the sterile insect technique (SIT) as part of integrated pest management programs (IPMs). The genetic analysis and manipulation of medfly has been subject to intensive study in an effort to improve SIT efficacy and other aspects of IPM control. RESULTS: The 479 Mb medfly genome is sequenced from adult flies from lines inbred for 20 generations. A high-quality assembly is achieved having a contig N50 of 45.7 kb and scaffold N50 of 4.06 Mb. In-depth curation of more than 1800 messenger RNAs shows specific gene expansions that can be related to invasiveness and host adaptation, including gene families for chemoreception, toxin and insecticide metabolism, cuticle proteins, opsins, and aquaporins. We identify genes relevant to IPM control, including those required to improve SIT. CONCLUSIONS: The medfly genome sequence provides critical insights into the biology of one of the most serious and widespread agricultural pests. This knowledge should significantly advance the means of controlling the size and invasive potential of medfly populations. Its close relationship to Drosophila, and other insect species important to agriculture and human health, will further comparative functional and structural studies of insect genomes that should broaden our understanding of gene family evolution. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13059-016-1049-2) contains supplementary material, which is available to authorized users. BioMed Central 2016-09-22 /pmc/articles/PMC5034548/ /pubmed/27659211 http://dx.doi.org/10.1186/s13059-016-1049-2 Text en © The Author(s). 2016 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 Papanicolaou, Alexie Schetelig, Marc F. Arensburger, Peter Atkinson, Peter W. Benoit, Joshua B. Bourtzis, Kostas Castañera, Pedro Cavanaugh, John P. Chao, Hsu Childers, Christopher Curril, Ingrid Dinh, Huyen Doddapaneni, HarshaVardhan Dolan, Amanda Dugan, Shannon Friedrich, Markus Gasperi, Giuliano Geib, Scott Georgakilas, Georgios Gibbs, Richard A. Giers, Sarah D. Gomulski, Ludvik M. González-Guzmán, Miguel Guillem-Amat, Ana Han, Yi Hatzigeorgiou, Artemis G. Hernández-Crespo, Pedro Hughes, Daniel S. T. Jones, Jeffery W. Karagkouni, Dimitra Koskinioti, Panagiota Lee, Sandra L. Malacrida, Anna R. Manni, Mosè Mathiopoulos, Kostas Meccariello, Angela Murali, Shwetha C. Murphy, Terence D. Muzny, Donna M. Oberhofer, Georg Ortego, Félix Paraskevopoulou, Maria D. Poelchau, Monica Qu, Jiaxin Reczko, Martin Robertson, Hugh M. Rosendale, Andrew J. Rosselot, Andrew E. Saccone, Giuseppe Salvemini, Marco Savini, Grazia Schreiner, Patrick Scolari, Francesca Siciliano, Paolo Sim, Sheina B. Tsiamis, George Ureña, Enric Vlachos, Ioannis S. Werren, John H. Wimmer, Ernst A. Worley, Kim C. Zacharopoulou, Antigone Richards, Stephen Handler, Alfred M. The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species |
title | The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species |
title_full | The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species |
title_fullStr | The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species |
title_full_unstemmed | The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species |
title_short | The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species |
title_sort | whole genome sequence of the mediterranean fruit fly, ceratitis capitata (wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5034548/ https://www.ncbi.nlm.nih.gov/pubmed/27659211 http://dx.doi.org/10.1186/s13059-016-1049-2 |
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wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT meccarielloangela wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT muralishwethac wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT murphyterenced wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT muznydonnam wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT oberhofergeorg wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT ortegofelix wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT paraskevopouloumariad wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT poelchaumonica wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT qujiaxin wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT reczkomartin wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT robertsonhughm wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT rosendaleandrewj wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT rosselotandrewe wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT sacconegiuseppe wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT salveminimarco wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT savinigrazia wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT schreinerpatrick wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT scolarifrancesca wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT sicilianopaolo wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT simsheinab wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT tsiamisgeorge wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT urenaenric wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT vlachosioanniss wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT werrenjohnh wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT wimmerernsta wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT worleykimc wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT zacharopoulouantigone wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT richardsstephen wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies AT handleralfredm wholegenomesequenceofthemediterraneanfruitflyceratitiscapitatawiedemannrevealsinsightsintothebiologyandadaptiveevolutionofahighlyinvasivepestspecies |