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Crops In Silico: Generating Virtual Crops Using an Integrative and Multi-scale Modeling Platform

Multi-scale models can facilitate whole plant simulations by linking gene networks, protein synthesis, metabolic pathways, physiology, and growth. Whole plant models can be further integrated with ecosystem, weather, and climate models to predict how various interactions respond to environmental per...

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Detalles Bibliográficos
Autores principales: Marshall-Colon, Amy, Long, Stephen P., Allen, Douglas K., Allen, Gabrielle, Beard, Daniel A., Benes, Bedrich, von Caemmerer, Susanne, Christensen, A. J., Cox, Donna J., Hart, John C., Hirst, Peter M., Kannan, Kavya, Katz, Daniel S., Lynch, Jonathan P., Millar, Andrew J., Panneerselvam, Balaji, Price, Nathan D., Prusinkiewicz, Przemyslaw, Raila, David, Shekar, Rachel G., Shrivastava, Stuti, Shukla, Diwakar, Srinivasan, Venkatraman, Stitt, Mark, Turk, Matthew J., Voit, Eberhard O., Wang, Yu, Yin, Xinyou, Zhu, Xin-Guang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5430029/
https://www.ncbi.nlm.nih.gov/pubmed/28555150
http://dx.doi.org/10.3389/fpls.2017.00786
Descripción
Sumario:Multi-scale models can facilitate whole plant simulations by linking gene networks, protein synthesis, metabolic pathways, physiology, and growth. Whole plant models can be further integrated with ecosystem, weather, and climate models to predict how various interactions respond to environmental perturbations. These models have the potential to fill in missing mechanistic details and generate new hypotheses to prioritize directed engineering efforts. Outcomes will potentially accelerate improvement of crop yield, sustainability, and increase future food security. It is time for a paradigm shift in plant modeling, from largely isolated efforts to a connected community that takes advantage of advances in high performance computing and mechanistic understanding of plant processes. Tools for guiding future crop breeding and engineering, understanding the implications of discoveries at the molecular level for whole plant behavior, and improved prediction of plant and ecosystem responses to the environment are urgently needed. The purpose of this perspective is to introduce Crops in silico (cropsinsilico.org), an integrative and multi-scale modeling platform, as one solution that combines isolated modeling efforts toward the generation of virtual crops, which is open and accessible to the entire plant biology community. The major challenges involved both in the development and deployment of a shared, multi-scale modeling platform, which are summarized in this prospectus, were recently identified during the first Crops in silico Symposium and Workshop.