This title appears in the Scientific Report :
2015
Please use the identifier:
http://dx.doi.org/10.1093/jxb/erv271 in citations.
Towards recommendations for metadata and data handling in plant phenotyping
Towards recommendations for metadata and data handling in plant phenotyping
Recent methodological developments in plant phenotyping, as well as the growing importance of its applications in plant science and breeding, are resulting in a fast accumulation of multidimensional data. There is great potential for expediting both discovery and application if these data are made p...
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Personal Name(s): | Krajewski, Paweł (Corresponding author) |
---|---|
Chen, Dijun / Ćwiek, Hanna / van Dijk, Aalt D. J. / Fiorani, Fabio / Kersey, Paul / Klukas, Christian / Lange, Matthias / Markiewicz, Augustyn / Nap, Jan Peter / van Oeveren, Jan / Pommier, Cyril / Scholz, Uwe / van Schriek, Marco / Usadel, Björn / Weise, Stephan | |
Contributing Institute: |
Pflanzenwissenschaften; IBG-2 |
Published in: | The journal of experimental botany, 66 (2015) 18, S. 5417 - 5427 |
Imprint: |
Oxford
Oxford Univ. Press
2015
|
PubMed ID: |
26044092 |
DOI: |
10.1093/jxb/erv271 |
Document Type: |
Journal Article |
Research Program: |
European Plant Phenotyping Network Plant Science |
Publikationsportal JuSER |
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520 | |a Recent methodological developments in plant phenotyping, as well as the growing importance of its applications in plant science and breeding, are resulting in a fast accumulation of multidimensional data. There is great potential for expediting both discovery and application if these data are made publicly available for analysis. However, collection and storage of phenotypic observations is not yet sufficiently governed by standards that would ensure interoperability among data providers and precisely link specific phenotypes and associated genomic sequence information. This lack of standards is mainly a result of a large variability of phenotyping protocols, the multitude of phenotypic traits that are measured, and the dependence of these traits on the environment. This paper discusses the current situation of standardization in the area of phenomics, points out the problems and shortages, and presents the areas that would benefit from improvement in this field. In addition, the foundations of the work that could revise the situation are proposed, and practical solutions developed by the authors are introduced. | ||
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