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The genomes of four tapeworm species reveal adaptations to parasitism

Tapeworms cause debilitating neglected diseases that can be deadly and often require surgery due to ineffective drugs. Here we present the first analysis of tapeworm genome sequences using the human-infective species Echinococcus multilocularis, E. granulosus, Taenia solium and the laboratory model...

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Autores principales: Tsai, Isheng J., Zarowiecki, Magdalena, Holroyd, Nancy, Garciarrubio, Alejandro, Sánchez-Flores, Alejandro, Brooks, Karen L., Tracey, Alan, Bobes, Raúl J., Fragoso, Gladis, Sciutto, Edda, Aslett, Martin, Beasley, Helen, Bennett, Hayley M., Cai, Xuepeng, Camicia, Federico, Clark, Richard, Cucher, Marcela, De Silva, Nishadi, Day, Tim A, Deplazes, Peter, Estrada, Karel, Fernández, Cecilia, Holland, Peter W. H., Hou, Junling, Hu, Songnian, Huckvale, Thomas, Hung, Stacy S., Kamenetzky, Laura, Keane, Jacqueline A., Kiss, Ferenc, Koziol, Uriel, Lambert, Olivia, Liu, Kan, Luo, Xuenong, Luo, Yingfeng, Macchiaroli, Natalia, Nichol, Sarah, Paps, Jordi, Parkinson, John, Pouchkina-Stantcheva, Natasha, Riddiford, Nick, Rosenzvit, Mara, Salinas, Gustavo, Wasmuth, James D., Zamanian, Mostafa, Zheng, Yadong, Cai, Jianping, Soberón, Xavier, Olson, Peter D., Laclette, Juan P., Brehm, Klaus, Berriman, Matthew
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3964345/
https://www.ncbi.nlm.nih.gov/pubmed/23485966
http://dx.doi.org/10.1038/nature12031
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author Tsai, Isheng J.
Zarowiecki, Magdalena
Holroyd, Nancy
Garciarrubio, Alejandro
Sánchez-Flores, Alejandro
Brooks, Karen L.
Tracey, Alan
Bobes, Raúl J.
Fragoso, Gladis
Sciutto, Edda
Aslett, Martin
Beasley, Helen
Bennett, Hayley M.
Cai, Xuepeng
Camicia, Federico
Clark, Richard
Cucher, Marcela
De Silva, Nishadi
Day, Tim A
Deplazes, Peter
Estrada, Karel
Fernández, Cecilia
Holland, Peter W. H.
Hou, Junling
Hu, Songnian
Huckvale, Thomas
Hung, Stacy S.
Kamenetzky, Laura
Keane, Jacqueline A.
Kiss, Ferenc
Koziol, Uriel
Lambert, Olivia
Liu, Kan
Luo, Xuenong
Luo, Yingfeng
Macchiaroli, Natalia
Nichol, Sarah
Paps, Jordi
Parkinson, John
Pouchkina-Stantcheva, Natasha
Riddiford, Nick
Rosenzvit, Mara
Salinas, Gustavo
Wasmuth, James D.
Zamanian, Mostafa
Zheng, Yadong
Cai, Jianping
Soberón, Xavier
Olson, Peter D.
Laclette, Juan P.
Brehm, Klaus
Berriman, Matthew
author_facet Tsai, Isheng J.
Zarowiecki, Magdalena
Holroyd, Nancy
Garciarrubio, Alejandro
Sánchez-Flores, Alejandro
Brooks, Karen L.
Tracey, Alan
Bobes, Raúl J.
Fragoso, Gladis
Sciutto, Edda
Aslett, Martin
Beasley, Helen
Bennett, Hayley M.
Cai, Xuepeng
Camicia, Federico
Clark, Richard
Cucher, Marcela
De Silva, Nishadi
Day, Tim A
Deplazes, Peter
Estrada, Karel
Fernández, Cecilia
Holland, Peter W. H.
Hou, Junling
Hu, Songnian
Huckvale, Thomas
Hung, Stacy S.
Kamenetzky, Laura
Keane, Jacqueline A.
Kiss, Ferenc
Koziol, Uriel
Lambert, Olivia
Liu, Kan
Luo, Xuenong
Luo, Yingfeng
Macchiaroli, Natalia
Nichol, Sarah
Paps, Jordi
Parkinson, John
Pouchkina-Stantcheva, Natasha
Riddiford, Nick
Rosenzvit, Mara
Salinas, Gustavo
Wasmuth, James D.
Zamanian, Mostafa
Zheng, Yadong
Cai, Jianping
Soberón, Xavier
Olson, Peter D.
Laclette, Juan P.
Brehm, Klaus
Berriman, Matthew
author_sort Tsai, Isheng J.
collection PubMed
description Tapeworms cause debilitating neglected diseases that can be deadly and often require surgery due to ineffective drugs. Here we present the first analysis of tapeworm genome sequences using the human-infective species Echinococcus multilocularis, E. granulosus, Taenia solium and the laboratory model Hymenolepis microstoma as examples. The 115-141 megabase genomes offer insights into the evolution of parasitism. Synteny is maintained with distantly related blood flukes but we find extreme losses of genes and pathways ubiquitous in other animals, including 34 homeobox families and several determinants of stem cell fate. Tapeworms have species-specific expansions of non-canonical heat shock proteins and families of known antigens; specialised detoxification pathways, and metabolism finely tuned to rely on nutrients scavenged from their hosts. We identify new potential drug targets, including those on which existing pharmaceuticals may act. The genomes provide a rich resource to underpin the development of urgently needed treatments and control.
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spelling pubmed-39643452014-03-25 The genomes of four tapeworm species reveal adaptations to parasitism Tsai, Isheng J. Zarowiecki, Magdalena Holroyd, Nancy Garciarrubio, Alejandro Sánchez-Flores, Alejandro Brooks, Karen L. Tracey, Alan Bobes, Raúl J. Fragoso, Gladis Sciutto, Edda Aslett, Martin Beasley, Helen Bennett, Hayley M. Cai, Xuepeng Camicia, Federico Clark, Richard Cucher, Marcela De Silva, Nishadi Day, Tim A Deplazes, Peter Estrada, Karel Fernández, Cecilia Holland, Peter W. H. Hou, Junling Hu, Songnian Huckvale, Thomas Hung, Stacy S. Kamenetzky, Laura Keane, Jacqueline A. Kiss, Ferenc Koziol, Uriel Lambert, Olivia Liu, Kan Luo, Xuenong Luo, Yingfeng Macchiaroli, Natalia Nichol, Sarah Paps, Jordi Parkinson, John Pouchkina-Stantcheva, Natasha Riddiford, Nick Rosenzvit, Mara Salinas, Gustavo Wasmuth, James D. Zamanian, Mostafa Zheng, Yadong Cai, Jianping Soberón, Xavier Olson, Peter D. Laclette, Juan P. Brehm, Klaus Berriman, Matthew Nature Article Tapeworms cause debilitating neglected diseases that can be deadly and often require surgery due to ineffective drugs. Here we present the first analysis of tapeworm genome sequences using the human-infective species Echinococcus multilocularis, E. granulosus, Taenia solium and the laboratory model Hymenolepis microstoma as examples. The 115-141 megabase genomes offer insights into the evolution of parasitism. Synteny is maintained with distantly related blood flukes but we find extreme losses of genes and pathways ubiquitous in other animals, including 34 homeobox families and several determinants of stem cell fate. Tapeworms have species-specific expansions of non-canonical heat shock proteins and families of known antigens; specialised detoxification pathways, and metabolism finely tuned to rely on nutrients scavenged from their hosts. We identify new potential drug targets, including those on which existing pharmaceuticals may act. The genomes provide a rich resource to underpin the development of urgently needed treatments and control. 2013-03-13 2013-04-04 /pmc/articles/PMC3964345/ /pubmed/23485966 http://dx.doi.org/10.1038/nature12031 Text en Users may view, print, copy, download and 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
Tsai, Isheng J.
Zarowiecki, Magdalena
Holroyd, Nancy
Garciarrubio, Alejandro
Sánchez-Flores, Alejandro
Brooks, Karen L.
Tracey, Alan
Bobes, Raúl J.
Fragoso, Gladis
Sciutto, Edda
Aslett, Martin
Beasley, Helen
Bennett, Hayley M.
Cai, Xuepeng
Camicia, Federico
Clark, Richard
Cucher, Marcela
De Silva, Nishadi
Day, Tim A
Deplazes, Peter
Estrada, Karel
Fernández, Cecilia
Holland, Peter W. H.
Hou, Junling
Hu, Songnian
Huckvale, Thomas
Hung, Stacy S.
Kamenetzky, Laura
Keane, Jacqueline A.
Kiss, Ferenc
Koziol, Uriel
Lambert, Olivia
Liu, Kan
Luo, Xuenong
Luo, Yingfeng
Macchiaroli, Natalia
Nichol, Sarah
Paps, Jordi
Parkinson, John
Pouchkina-Stantcheva, Natasha
Riddiford, Nick
Rosenzvit, Mara
Salinas, Gustavo
Wasmuth, James D.
Zamanian, Mostafa
Zheng, Yadong
Cai, Jianping
Soberón, Xavier
Olson, Peter D.
Laclette, Juan P.
Brehm, Klaus
Berriman, Matthew
The genomes of four tapeworm species reveal adaptations to parasitism
title The genomes of four tapeworm species reveal adaptations to parasitism
title_full The genomes of four tapeworm species reveal adaptations to parasitism
title_fullStr The genomes of four tapeworm species reveal adaptations to parasitism
title_full_unstemmed The genomes of four tapeworm species reveal adaptations to parasitism
title_short The genomes of four tapeworm species reveal adaptations to parasitism
title_sort genomes of four tapeworm species reveal adaptations to parasitism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3964345/
https://www.ncbi.nlm.nih.gov/pubmed/23485966
http://dx.doi.org/10.1038/nature12031
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