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Frontiers in Plant Science|March 10, 2023
Extending the breeder's equation to take aim at the target population of environmentsMark Cooper, Owen Powell, Carla Gho, et al.Journal of Experimental Botany|March 6, 2014
Breeding drought-tolerant maize hybrids for the US corn-belt: discovery to productMark Cooper, Carla Gho, Roger Leafgren, et al.Plos One|August 23, 2012
A gene regulatory network model for floral transition of the shoot apex in maize and its dynamic modelingZhanshan Dong, Olga Danilevskaya, Tabare Abadie, et al.Current Opinion in Plant Biology|March 14, 2009
Modeling QTL for complex traits: detection and context for plant breedingMark Cooper, Fred A van Eeuwijk, Graeme L Hammer, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|June 13, 2025
Toward a general framework for AI-enabled prediction in crop improvementCarlos Messina, Julian Garcia-Abadillo, Owen Powell, et al.Plant Physiology|November 18, 2021
Can we harness digital technologies and physiology to hasten genetic gain in US maize breeding?Christine H Diepenbrock, Tom Tang, Michael Jines, et al.Current Opinion in Biotechnology|July 29, 2023
Machine learning applications to improve flavor and nutritional content of horticultural crops through breeding and geneticsLuís Felipe V Ferrão, Rakshya Dhakal, Raquel Dias, et al.Journal of Experimental Botany|May 26, 2021
Reproductive resilience but not root architecture underpins yield improvement under drought in maizeCarlos Messina, Dan McDonald, Hanna Poffenbarger, et al.The Plant Cell|September 16, 2021
Fifteen compelling open questions in plant cell biologyAdrienne H K Roeder, Marisa S Otegui, Ram Dixit, et al.The Plant Genome|October 31, 2025
The Big BIT maize experiment: A large multi-location, multi-year, multi-tester, multi-population predictive breeding validation studyMichael Jines, Michael Chandler, Dean Podlich, et al.Pageof 1