Dean DellaPenna

Affiliations: 
Michigan State University, East Lansing, MI 
Area:
Plant Physiology, Molecular Biology, Botany Biology
Google:
"Dean DellaPenna"

Parents

Sign in to add mentor
Alan B. Bennett grad student 1984-1988 UC Davis

Collaborators

Sign in to add collaborator
Donald A. Bryant collaborator Penn State (Microtree)
Mike Grusak collaborator
Tammy L. Sage collaborator U of Toronto (Evolution Tree)
Yumiko Sakuragi collaborator Penn State (Microtree)
Edward S. Buckler collaborator 2007-2018 Cornell
Michael A. Gore collaborator 1998-2021 Cornell
Carol Robin Buell collaborator 2007-2021 Michigan State
Christine Diepenbrock collaborator 2009-2021 Cornell
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Tibbs-Cortes LE, Guo T, Li X, et al. (2022) Genomic prediction of tocochromanols in exotic-derived maize. The Plant Genome. e20286
Tanaka R, Wu D, Li X, et al. (2022) Leveraging prior biological knowledge improves prediction of tocochromanols in maize grain. The Plant Genome. e20276
Wu D, Li X, Tanaka R, et al. (2022) Combining GWAS and TWAS to identify candidate causal genes for tocochromanol levels in maize grain. Genetics
Albert E, Kim S, Magallanes-Lundback M, et al. (2022) Genome-wide association identifies a missing hydrolase for tocopherol synthesis in plants. Proceedings of the National Academy of Sciences of the United States of America. 119: e2113488119
Hershberger J, Tanaka R, Wood JC, et al. (2022) Transcriptome-wide association and prediction for carotenoids and tocochromanols in fresh sweet corn kernels. The Plant Genome. e20197
Diepenbrock CH, Ilut DC, Magallanes-Lundback M, et al. (2020) Eleven biosynthetic genes explain the majority of natural variation in carotenoid levels in maize grain. The Plant Cell
Baseggio M, Murray M, Magallanes-Lundback M, et al. (2020) Natural variation for carotenoids in fresh kernels is controlled by uncommon variants in sweet corn. The Plant Genome. 13: e20008
Bao Y, Magallenes-Lundback M, Deason N, et al. (2020) High throughput profiling of tocochromanols in leaves and seeds of Arabidopsis and Maize. Plant Methods. 16: 126
Baseggio M, Murray M, Magallanes‐Lundback M, et al. (2020) Natural variation for carotenoids in fresh kernels is controlled by uncommon variants in sweet corn The Plant Genome. 13
Kadirjan-Kalbach DK, Turmo A, Wang J, et al. (2019) Allelic Variation in the Chloroplast Division Gene FtsZ2-2 Leads to Natural Variation in Chloroplast Size. Plant Physiology
See more...