'Computable' Phenotypes Enable Comparative and Predictive Phenomics Among Plant Species and Across Domains of Life

Ian Braun, James P. Balhoff, Tanya Z. Berardini, Laurel Cooper, Georgios V. Gkoutos, Lisa C. Harper, Eva Huala, Pankaj Jaiswal, Toni Kazic, Hilmar Lapp, James A. Macklin, Chelsea D. Specht, Todd J. Vision, Ramona L. Walls, Carolyn J. Lawrence-Dill. 'Computable' Phenotypes Enable Comparative and Predictive Phenomics Among Plant Species and Across Domains of Life. In Anne E. Thessen, editor, Application of Semantic Technology in Biodiversity Science. Volume 33 of Studies on the Semantic Web, pages 187-205, IOS Press, 2018. [doi]

Authors

Ian Braun

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James P. Balhoff

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Tanya Z. Berardini

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Laurel Cooper

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Georgios V. Gkoutos

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Lisa C. Harper

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Eva Huala

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Pankaj Jaiswal

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Toni Kazic

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Hilmar Lapp

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James A. Macklin

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Chelsea D. Specht

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Todd J. Vision

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Ramona L. Walls

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Carolyn J. Lawrence-Dill

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