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Developmental Biology|August 14, 2016
Plant developmental responses to climate changeSharon B Gray, Siobhan M BradyJournal of Experimental Botany|August 11, 2010
Spectral reflectance from a soybean canopy exposed to elevated CO2 and O3Sharon B Gray, Orla Dermody, Evan H DeLuciaPlant Science : an International Journal of Experimental Plant Biology|August 13, 2014
Biochemical acclimation, stomatal limitation and precipitation patterns underlie decreases in photosynthetic stimulation of soybean (Glycine max) at elevated [CO₂] and temperatures under fully open air field conditionsDavid M Rosenthal, Ursula M Ruiz-Vera, Matthew H Siebers, et al.The Plant Journal : for Cell and Molecular Biology|December 5, 2019
Translational regulation contributes to the elevated CO<sub>2</sub> response in two Solanum speciesSharon B Gray, Joel Rodriguez-Medina, Samuel Rusoff, et al.Functional Plant Biology : FPB|June 3, 2020
Minirhizotron imaging reveals that nodulation of field-grown soybean is enhanced by free-air CO<sub>2</sub> enrichment only when combined with drought stressSharon B Gray, Reid S Strellner, Kannan K Puthuval, et al.Plant Physiology|March 21, 2013
Global warming can negate the expected CO2 stimulation in photosynthesis and productivity for soybean grown in the Midwestern United StatesUrsula M Ruiz-Vera, Matthew Siebers, Sharon B Gray, et al.Nature Plants|September 6, 2016
Intensifying drought eliminates the expected benefits of elevated carbon dioxide for soybeanSharon B Gray, Orla Dermody, Stephanie P Klein, et al.Cell|May 19, 2021
Innovation, conservation, and repurposing of gene function in root cell type developmentKaisa Kajala, Mona Gouran, Lidor Shaar-Moshe, et al.Pageof 1