Clinton Whipple
Affiliations: | Brigham Young University, Provo, UT, United States |
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"Clinton Whipple"
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Publications
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Galli M, Chen Z, Ghandour T, et al. (2025) Transcription factor binding divergence drives transcriptional and phenotypic variation in maize. Nature Plants |
Dong Z, Hu G, Chen Q, et al. (2024) A regulatory network controlling developmental boundaries and meristem fates contributed to maize domestication. Nature Genetics |
Galli M, Chen Z, Ghandour T, et al. (2024) Transcription factor binding site divergence across maize inbred lines drives transcriptional and phenotypic variation. Biorxiv : the Preprint Server For Biology |
Xiao Y, Guo J, Dong Z, et al. (2022) Boundary domain genes were recruited to suppress bract growth and promote branching in maize. Science Advances. 8: eabm6835 |
Klein H, Gallagher J, Demesa-Arevalo E, et al. (2022) Recruitment of an ancient branching program to suppress carpel development in maize flowers. Proceedings of the National Academy of Sciences of the United States of America. 119 |
Govindarajulu R, Hostetler AN, Xiao Y, et al. (2021) Integration of high-density genetic mapping with transcriptome analysis uncovers numerous agronomic QTL and reveals candidate genes for the control of tillering in sorghum. G3 (Bethesda, Md.). 11 |
Abraham-Juarez MJ, Schrager-Lavelle A, Man J, et al. (2020) Evolutionary Variation in MADS-box Dimerization Affects Floral Development and Protein Abundance in Maize. The Plant Cell |
Dong Z, Xiao Y, Govindarajulu R, et al. (2019) The regulatory landscape of a core maize domestication module controlling bud dormancy and growth repression. Nature Communications. 10: 3810 |
Klein H, Xiao Y, Conklin PA, et al. (2018) Bulked-Segregant Analysis Coupled to Whole Genome Sequencing (BSA-Seq) for Rapid Gene Cloning in Maize. G3 (Bethesda, Md.) |
Bommert P, Whipple C. (2017) Grass Inflorescence Architecture and Meristem Determinacy. Seminars in Cell & Developmental Biology |