Bryan Penning
Corn, Soybean and Wheat Quality Research
Research Geneticist (Plants)
Phone: (330) 601-6796
Fax:
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Publications
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The cell wall-related gene families of wheat (Triticum aestivum)
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Penning, B. 2023. The cell wall-related gene families of wheat (Triticum aestivum). Diversity. 15(11). Article 1135. https://doi.org/10.3390/d15111135.
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Genetics of a diverse soft winter wheat population for pre-harvest sprouting, agronomic, and flour quality traits
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Patwa, N., Penning, B. 2023. Genetics of a diverse soft winter wheat population for pre-harvest sprouting, agronomic, and flour quality traits. Frontiers in Plant Science. 14. Article #1137808. https://doi.org/10.3389/fpls.2023.1137808.
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Gene expression differences related to pre-harvest sprouting uncovered in related wheat varieties by RNAseq analysis
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Penning, B. 2023. Gene expression differences related to pre-harvest sprouting uncovered in related wheat varieties by RNAseq analysis. Plant Gene. 33. Article #100404. https://doi.org/10.1016/j.plgene.2023.100404.
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COMPILE: A GWAS computational pipeline for gene discovery in complex genomes
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Hill, M.J., Penning, B., Mccann, M.C., Carpita, N.C. 2022. COMPILE: A GWAS computational pipeline for gene discovery in complex genomes. BMC Plant Biology. 22:Article 315. https://doi.org/10.1186/s12870-022-03668-9.
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A TEMPO-catalyzed oxidation-reduction method to probe surface and anhydrous crystalline-core domains of cellulose microfibril bundles
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Shiga, T.M., Yang, H., Penning, B., Olek, A., McCann, M.C., Carpita, N.C. 2021. A TEMPO-catalyzed oxidation-reduction method to probe surface and anhydrous crystalline-core domains of cellulose microfibril bundles. Cellulose. 28:5305-5319. https://doi.org/10.1007/s10570-021-03815-9.
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Machine learning in the assessment of meat quality
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Penning, B., Snelling, W.M., Woodward Greene, M.J. 2020. Machine learning in the assessment of meat quality. IEEE IT Professional. 22(3):39-41. https://doi.org/10.1109/mitp.2020.2986123.
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AI down on the farm
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Sudduth, K.A., Woodward Greene, M.J., Penning, B., Locke, M.A., Rivers, A.R., Veum, K.S. 2020. AI down on the farm. IEEE IT Professional. 22(3):22-26. https://doi.org/10.1109/MITP.2020.2986104.
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Expression profiles of cell-wall related genes vary broadly between two common maize inbreds during stem development
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Penning, B., Shiga, T.M., Klimek, J.F., San-Miguel, P., Shreve, J., Thimmapuram, J., Sykes, R.W., Davis, M.F., McCann, M.C., Carpita, N.C. 2019. Expression profiles of cell-wall related genes vary broadly between two common maize inbreds during stem development. BMC Genomics. 20, Article #785. https://doi.org/10.1186/s12864-019-6117-z.
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Differential distributions of trafficking and signaling proteins of the maize ER-Golgi apparatus
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Okekeogbu, I.O., Aryal, U.K., Gonzalez Fernandez-Nino, S.M., Penning, B., Heazlewood, J.L., McCann, M.C., Carpita, N.C. 2019. Differential distributions of trafficking and signaling proteins of the maize ER-Golgi apparatus. Plant Signaling and Behavior. 14(12):1672513. https://doi.org/10.1080/15592324.2019.1672513.
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Evolution of the cell wall gene families of grasses
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Penning, B., McCann, M.C., Carpita, N.C. 2019. Evolution of the cell wall gene families of grasses. Frontiers in Plant Science. 10:1205. https://doi.org/10.3389/fpls.2019.01205.
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Glycome and proteome components of Golgi membranes are common between two angiosperms with distinct cell wall structures
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Okekeogbu, I.O., Pattathil, S., Gonzalez Fernandez-Nino, S.M., Aryal, U.K., Penning, B., Lao, J., Heazlewood, J.L., Hahn, M.G., McCann, M.C., Carpita, N.C. 2019. Glycome and proteome components of Golgi membranes are common between two angiosperms with distinct cell wall structures. The Plant Cell. https://doi.org/10.1105/tpc.18.00755.
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Environmental impact on cereal crop grain damage from pre-harvest sprouting and late maturity alpha-amylase
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Patwa, N., Penning, B. 2020. Environmental impact on cereal crop grain damage from pre-harvest sprouting and late maturity alpha-amylase. Book Chapter. 23-41. https://doi.org/10.1007/978-3-030-45669-6_2.
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Pre-harvest sprouting resistance of soft winter wheat varieties and associated grain characteristics
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Ji, T., Penning, B., Baik, B-K. 2018. Pre-harvest sprouting resistance of soft winter wheat varieties and associated grain characteristics. Journal of Cereal Science. 83:110-115.
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Diverse chromosomal locations of quantitative trait loci for tolerance to maize chlorotic mottle in five maize populations
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Jones, M.W., Penning, B., Jamann, T.M., Glaubitz, J.C., Romay, C., Buckler IV, E.S., Redinbaugh, M.G. 2017. Diverse chromosomal locations of quantitative trait loci for tolerance to maize chlorotic mottle in five maize populations. Phytopathology. 108(6):748-758. https://doi.org/10.1094/PHYTO-09-17-0321-R.
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Improvement of baking quality traits through a diverse soft winter wheat population
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Sturbaum-Abud, A.K., Chao, S., Penning, B. 2016. Improvement of baking quality traits through a diverse soft winter wheat population. In: The Plant and Animal Genome XXVV Conference Online Program, January 14-18, 2017, San Diego, California. https://pag.confex.com/pag/xxv/meetingapp.cgi/Paper/24267.
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