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K Fugate

Showing results (11-20 of 29) with videos related to

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Endocrinology|March 12, 2026
Multiple Dynamically-Coupled Binding Sites on Human Serum Albumin Regulate Estradiol's Nonlinear BindingMohammad Anees, Mark K Fugate, Shalender Bhasin, et al.
Scientific Reports|July 2, 2025
Wounding causes rapid, intense upregulation of glycolytic and fermentative genes and enzymatic activities in harvested sugarbeet rootsKaren K Fugate, Mercedes Morin, John D Eide, et al.
Biophysical Journal|September 27, 2024
Novel single-cell measurements suggest irreversibly sickled cells are neither dense nor dehydratedThomas J Reese, Eli H Worth, Mark K Fugate, et al.
Frontiers in Plant Science|January 23, 2023
Wounding rapidly alters transcription factor expression, hormonal signaling, and phenolic compound metabolism in harvested sugarbeet rootsKaren K Fugate, Fernando L Finger, Abbas M Lafta, et al.
Journal of Plant Physiology|February 18, 2020
Inhibitors of tri- and tetra- polyamine oxidation, but not diamine oxidation, impair the initial stages of wound-induced suberizationEdward C Lulai, Linda L Olson, Karen K Fugate, et al.
Frontiers in Plant Science|May 6, 2016
Cold Temperature Delays Wound Healing in Postharvest Sugarbeet RootsKaren K Fugate, Wellington S Ribeiro, Edward C Lulai, et al.
Scientific Reports|November 8, 2024
Sugar beet root susceptibility to storage rots and downregulation of plant defense genes increases with time in storageShyam L Kandel, John D Eide, Andrea Firrincieli, et al.
Data in Brief|May 4, 2026
Dataset of the changes in sugarbeet taproot cell wall composition, firmness, and cell wall-related gene expression as a function of postharvest storage time and temperatureAbbas M Lafta, Fernando L Finger, Mercedes Morin, et al.
Microbiology Spectrum|September 23, 2024
Continental-scale insights into the sugarbeet diffusion juice microbiomesMalick Bill, John D Eide, Karen K Fugate, et al.
Plant Disease|November 23, 2022
Sugar Beet Root Storage Properties Are Unaffected by Cercospora Leaf SpotKaren K Fugate, Mohamad F R Khan, John D Eide, et al.
Pageof 3

Showing results (11-20 of 29) with videos related to

Sort By:
Pageof 3
Endocrinology|March 12, 2026
Multiple Dynamically-Coupled Binding Sites on Human Serum Albumin Regulate Estradiol's Nonlinear BindingMohammad Anees, Mark K Fugate, Shalender Bhasin, et al.
Scientific Reports|July 2, 2025
Wounding causes rapid, intense upregulation of glycolytic and fermentative genes and enzymatic activities in harvested sugarbeet rootsKaren K Fugate, Mercedes Morin, John D Eide, et al.
Biophysical Journal|September 27, 2024
Novel single-cell measurements suggest irreversibly sickled cells are neither dense nor dehydratedThomas J Reese, Eli H Worth, Mark K Fugate, et al.
Frontiers in Plant Science|January 23, 2023
Wounding rapidly alters transcription factor expression, hormonal signaling, and phenolic compound metabolism in harvested sugarbeet rootsKaren K Fugate, Fernando L Finger, Abbas M Lafta, et al.
Journal of Plant Physiology|February 18, 2020
Inhibitors of tri- and tetra- polyamine oxidation, but not diamine oxidation, impair the initial stages of wound-induced suberizationEdward C Lulai, Linda L Olson, Karen K Fugate, et al.
Frontiers in Plant Science|May 6, 2016
Cold Temperature Delays Wound Healing in Postharvest Sugarbeet RootsKaren K Fugate, Wellington S Ribeiro, Edward C Lulai, et al.
Scientific Reports|November 8, 2024
Sugar beet root susceptibility to storage rots and downregulation of plant defense genes increases with time in storageShyam L Kandel, John D Eide, Andrea Firrincieli, et al.
Data in Brief|May 4, 2026
Dataset of the changes in sugarbeet taproot cell wall composition, firmness, and cell wall-related gene expression as a function of postharvest storage time and temperatureAbbas M Lafta, Fernando L Finger, Mercedes Morin, et al.
Microbiology Spectrum|September 23, 2024
Continental-scale insights into the sugarbeet diffusion juice microbiomesMalick Bill, John D Eide, Karen K Fugate, et al.
Plant Disease|November 23, 2022
Sugar Beet Root Storage Properties Are Unaffected by Cercospora Leaf SpotKaren K Fugate, Mohamad F R Khan, John D Eide, et al.
Pageof 3