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Plant Physiology|December 1, 1970
Ethylene production of ethyl propylphosphonate, niagara 10637H H Dollwet, J KumamotoPlant Physiology|May 1, 1972
The conversion of 2-hydroxyethylhydrazine to ethyleneH H Dollwet, J KumamotoScientific Reports|October 25, 2018
Tranexamic acid blocks the thrombin-mediated delay of epidermal permeability barrier recovery induced by the cedar pollen allergen, Cry j1S Nakanishi, J Kumamoto, M DendaJournal of Chemical Ecology|December 5, 2013
Activity of volatile compounds in glandular trichomes ofLycopersicon species against two insect herbivoresS Y Lin, J T Trumble, J KumamotoThe Journal of Membrane Biology|November 1, 2013
Utilization of model membranes in a test for the mechanism of ethylene actionC W Mehard, J M Lyons, J KumamotoPlant Physiology|June 1, 1973
The role of phytochrome in an interaction with ethylene and carbon dioxide in overcoming lettuce seed thermodormancyF B Negm, O E Smith, J KumamotoPlant Physiology|June 1, 1972
Interaction of carbon dioxide and ethylene in overcoming thermodormancy of lettuce seedsF B Negm, O E Smith, J KumamotoPlant Physiology|April 1, 1976
Studies on the carbon dioxide promotion and ethylene inhibition of tuberization in potato explants cultured in vitroA M Mingo-Castel, O E Smith, J KumamotoPlant Physiology|December 1, 1975
Effect of Gibberellic Acid, Kinetin, and Ethylene plus Carbon Dioxide on the Thermodormancy of Lettuce Seed (Lactuca sativa L. cv. Mesa 659)R D Keys, O E Smith, J Kumamoto, et al.Plant Physiology|November 1, 1973
Absorption and distribution of high specific radioactivity 2-C-abscisic Acid in cotton seedlingsW W Shindy, C M Asmundson, O E Smith, et al.Pageof 2