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Finding Our Way through Phenotypes
Despite a large and multifaceted effort to understand the vast landscape of phenotypic data, their current form inhibits productive data analysis. The lack of a community-wide, consensus-based, human- and machine-interpretable language for describing phenotypes and their genomic and environmental co...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4285398/ https://www.ncbi.nlm.nih.gov/pubmed/25562316 http://dx.doi.org/10.1371/journal.pbio.1002033 |
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author | Deans, Andrew R. Lewis, Suzanna E. Huala, Eva Anzaldo, Salvatore S. Ashburner, Michael Balhoff, James P. Blackburn, David C. Blake, Judith A. Burleigh, J. Gordon Chanet, Bruno Cooper, Laurel D. Courtot, Mélanie Csösz, Sándor Cui, Hong Dahdul, Wasila Das, Sandip Dececchi, T. Alexander Dettai, Agnes Diogo, Rui Druzinsky, Robert E. Dumontier, Michel Franz, Nico M. Friedrich, Frank Gkoutos, George V. Haendel, Melissa Harmon, Luke J. Hayamizu, Terry F. He, Yongqun Hines, Heather M. Ibrahim, Nizar Jackson, Laura M. Jaiswal, Pankaj James-Zorn, Christina Köhler, Sebastian Lecointre, Guillaume Lapp, Hilmar Lawrence, Carolyn J. Le Novère, Nicolas Lundberg, John G. Macklin, James Mast, Austin R. Midford, Peter E. Mikó, István Mungall, Christopher J. Oellrich, Anika Osumi-Sutherland, David Parkinson, Helen Ramírez, Martín J. Richter, Stefan Robinson, Peter N. Ruttenberg, Alan Schulz, Katja S. Segerdell, Erik Seltmann, Katja C. Sharkey, Michael J. Smith, Aaron D. Smith, Barry Specht, Chelsea D. Squires, R. Burke Thacker, Robert W. Thessen, Anne Fernandez-Triana, Jose Vihinen, Mauno Vize, Peter D. Vogt, Lars Wall, Christine E. Walls, Ramona L. Westerfeld, Monte Wharton, Robert A. Wirkner, Christian S. Woolley, James B. Yoder, Matthew J. Zorn, Aaron M. Mabee, Paula |
author_facet | Deans, Andrew R. Lewis, Suzanna E. Huala, Eva Anzaldo, Salvatore S. Ashburner, Michael Balhoff, James P. Blackburn, David C. Blake, Judith A. Burleigh, J. Gordon Chanet, Bruno Cooper, Laurel D. Courtot, Mélanie Csösz, Sándor Cui, Hong Dahdul, Wasila Das, Sandip Dececchi, T. Alexander Dettai, Agnes Diogo, Rui Druzinsky, Robert E. Dumontier, Michel Franz, Nico M. Friedrich, Frank Gkoutos, George V. Haendel, Melissa Harmon, Luke J. Hayamizu, Terry F. He, Yongqun Hines, Heather M. Ibrahim, Nizar Jackson, Laura M. Jaiswal, Pankaj James-Zorn, Christina Köhler, Sebastian Lecointre, Guillaume Lapp, Hilmar Lawrence, Carolyn J. Le Novère, Nicolas Lundberg, John G. Macklin, James Mast, Austin R. Midford, Peter E. Mikó, István Mungall, Christopher J. Oellrich, Anika Osumi-Sutherland, David Parkinson, Helen Ramírez, Martín J. Richter, Stefan Robinson, Peter N. Ruttenberg, Alan Schulz, Katja S. Segerdell, Erik Seltmann, Katja C. Sharkey, Michael J. Smith, Aaron D. Smith, Barry Specht, Chelsea D. Squires, R. Burke Thacker, Robert W. Thessen, Anne Fernandez-Triana, Jose Vihinen, Mauno Vize, Peter D. Vogt, Lars Wall, Christine E. Walls, Ramona L. Westerfeld, Monte Wharton, Robert A. Wirkner, Christian S. Woolley, James B. Yoder, Matthew J. Zorn, Aaron M. Mabee, Paula |
author_sort | Deans, Andrew R. |
collection | PubMed |
description | Despite a large and multifaceted effort to understand the vast landscape of phenotypic data, their current form inhibits productive data analysis. The lack of a community-wide, consensus-based, human- and machine-interpretable language for describing phenotypes and their genomic and environmental contexts is perhaps the most pressing scientific bottleneck to integration across many key fields in biology, including genomics, systems biology, development, medicine, evolution, ecology, and systematics. Here we survey the current phenomics landscape, including data resources and handling, and the progress that has been made to accurately capture relevant data descriptions for phenotypes. We present an example of the kind of integration across domains that computable phenotypes would enable, and we call upon the broader biology community, publishers, and relevant funding agencies to support efforts to surmount today's data barriers and facilitate analytical reproducibility. |
format | Online Article Text |
id | pubmed-4285398 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-42853982015-01-12 Finding Our Way through Phenotypes Deans, Andrew R. Lewis, Suzanna E. Huala, Eva Anzaldo, Salvatore S. Ashburner, Michael Balhoff, James P. Blackburn, David C. Blake, Judith A. Burleigh, J. Gordon Chanet, Bruno Cooper, Laurel D. Courtot, Mélanie Csösz, Sándor Cui, Hong Dahdul, Wasila Das, Sandip Dececchi, T. Alexander Dettai, Agnes Diogo, Rui Druzinsky, Robert E. Dumontier, Michel Franz, Nico M. Friedrich, Frank Gkoutos, George V. Haendel, Melissa Harmon, Luke J. Hayamizu, Terry F. He, Yongqun Hines, Heather M. Ibrahim, Nizar Jackson, Laura M. Jaiswal, Pankaj James-Zorn, Christina Köhler, Sebastian Lecointre, Guillaume Lapp, Hilmar Lawrence, Carolyn J. Le Novère, Nicolas Lundberg, John G. Macklin, James Mast, Austin R. Midford, Peter E. Mikó, István Mungall, Christopher J. Oellrich, Anika Osumi-Sutherland, David Parkinson, Helen Ramírez, Martín J. Richter, Stefan Robinson, Peter N. Ruttenberg, Alan Schulz, Katja S. Segerdell, Erik Seltmann, Katja C. Sharkey, Michael J. Smith, Aaron D. Smith, Barry Specht, Chelsea D. Squires, R. Burke Thacker, Robert W. Thessen, Anne Fernandez-Triana, Jose Vihinen, Mauno Vize, Peter D. Vogt, Lars Wall, Christine E. Walls, Ramona L. Westerfeld, Monte Wharton, Robert A. Wirkner, Christian S. Woolley, James B. Yoder, Matthew J. Zorn, Aaron M. Mabee, Paula PLoS Biol Perspective Despite a large and multifaceted effort to understand the vast landscape of phenotypic data, their current form inhibits productive data analysis. The lack of a community-wide, consensus-based, human- and machine-interpretable language for describing phenotypes and their genomic and environmental contexts is perhaps the most pressing scientific bottleneck to integration across many key fields in biology, including genomics, systems biology, development, medicine, evolution, ecology, and systematics. Here we survey the current phenomics landscape, including data resources and handling, and the progress that has been made to accurately capture relevant data descriptions for phenotypes. We present an example of the kind of integration across domains that computable phenotypes would enable, and we call upon the broader biology community, publishers, and relevant funding agencies to support efforts to surmount today's data barriers and facilitate analytical reproducibility. Public Library of Science 2015-01-06 /pmc/articles/PMC4285398/ /pubmed/25562316 http://dx.doi.org/10.1371/journal.pbio.1002033 Text en © 2015 Deans et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Perspective Deans, Andrew R. Lewis, Suzanna E. Huala, Eva Anzaldo, Salvatore S. Ashburner, Michael Balhoff, James P. Blackburn, David C. Blake, Judith A. Burleigh, J. Gordon Chanet, Bruno Cooper, Laurel D. Courtot, Mélanie Csösz, Sándor Cui, Hong Dahdul, Wasila Das, Sandip Dececchi, T. Alexander Dettai, Agnes Diogo, Rui Druzinsky, Robert E. Dumontier, Michel Franz, Nico M. Friedrich, Frank Gkoutos, George V. Haendel, Melissa Harmon, Luke J. Hayamizu, Terry F. He, Yongqun Hines, Heather M. Ibrahim, Nizar Jackson, Laura M. Jaiswal, Pankaj James-Zorn, Christina Köhler, Sebastian Lecointre, Guillaume Lapp, Hilmar Lawrence, Carolyn J. Le Novère, Nicolas Lundberg, John G. Macklin, James Mast, Austin R. Midford, Peter E. Mikó, István Mungall, Christopher J. Oellrich, Anika Osumi-Sutherland, David Parkinson, Helen Ramírez, Martín J. Richter, Stefan Robinson, Peter N. Ruttenberg, Alan Schulz, Katja S. Segerdell, Erik Seltmann, Katja C. Sharkey, Michael J. Smith, Aaron D. Smith, Barry Specht, Chelsea D. Squires, R. Burke Thacker, Robert W. Thessen, Anne Fernandez-Triana, Jose Vihinen, Mauno Vize, Peter D. Vogt, Lars Wall, Christine E. Walls, Ramona L. Westerfeld, Monte Wharton, Robert A. Wirkner, Christian S. Woolley, James B. Yoder, Matthew J. Zorn, Aaron M. Mabee, Paula Finding Our Way through Phenotypes |
title | Finding Our Way through Phenotypes |
title_full | Finding Our Way through Phenotypes |
title_fullStr | Finding Our Way through Phenotypes |
title_full_unstemmed | Finding Our Way through Phenotypes |
title_short | Finding Our Way through Phenotypes |
title_sort | finding our way through phenotypes |
topic | Perspective |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4285398/ https://www.ncbi.nlm.nih.gov/pubmed/25562316 http://dx.doi.org/10.1371/journal.pbio.1002033 |
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