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Matthew E Gilbert

Showing results (1-10 of 25) with videos related to

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Functional Plant Biology : FPB|June 3, 2020
Physiological trade-offs of stomatal closure under high evaporative gradients in field grown soybeanViviana Medina, Matthew E Gilbert
Trends in Plant Science|April 20, 2016
Drought Adaptation Mechanisms Should Guide Experimental DesignMatthew E Gilbert, Viviana Medina
Physiologia Plantarum|July 19, 2008
Biomass reallocation and the mobilization of leaf resources support dune plant growth after sand burialMatthew E Gilbert, Brad S Ripley
Plant, Cell & Environment|January 1, 2017
The light response of mesophyll conductance is controlled by structure across leaf profilesGuillaume Théroux-Rancourt, Matthew E Gilbert
Plant Physiology|April 5, 2011
The role of bundle sheath extensions and life form in stomatal responses to leaf water statusThomas N Buckley, Lawren Sack, Matthew E Gilbert
Plant Physiology|September 29, 2011
Transcriptome response to embolism formation in stems of Populus trichocarpa provides insight into signaling and the biology of refillingFrancesca Secchi, Matthew E Gilbert, Maciej A Zwieniecki
Plant Methods|September 15, 2018
A multiplexed gas exchange system for increased throughput of photosynthetic capacity measurementsWilliam T Salter, Matthew E Gilbert, Thomas N Buckley
Journal of Experimental Botany|February 23, 2011
Independent variation in photosynthetic capacity and stomatal conductance leads to differences in intrinsic water use efficiency in 11 soybean genotypes before and during mild droughtMatthew E Gilbert, Maciej A Zwieniecki, N Michele Holbrook
Plant, Cell & Environment|April 16, 2008
Seasonal differences in photosynthesis between the C3 and C4 subspecies of Alloteropsis semialata are offset by frost and droughtDouglas G Ibrahim, Matthew E Gilbert, Brad S Ripley, et al.
Journal of Experimental Botany|February 27, 2007
Drought constraints on C4 photosynthesis: stomatal and metabolic limitations in C3 and C4 subspecies of Alloteropsis semialataBrad S Ripley, Matthew E Gilbert, Douglas G Ibrahim, et al.
Pageof 3

Showing results (1-10 of 25) with videos related to

Sort By:
Pageof 3
Functional Plant Biology : FPB|June 3, 2020
Physiological trade-offs of stomatal closure under high evaporative gradients in field grown soybeanViviana Medina, Matthew E Gilbert
Trends in Plant Science|April 20, 2016
Drought Adaptation Mechanisms Should Guide Experimental DesignMatthew E Gilbert, Viviana Medina
Physiologia Plantarum|July 19, 2008
Biomass reallocation and the mobilization of leaf resources support dune plant growth after sand burialMatthew E Gilbert, Brad S Ripley
Plant, Cell & Environment|January 1, 2017
The light response of mesophyll conductance is controlled by structure across leaf profilesGuillaume Théroux-Rancourt, Matthew E Gilbert
Plant Physiology|April 5, 2011
The role of bundle sheath extensions and life form in stomatal responses to leaf water statusThomas N Buckley, Lawren Sack, Matthew E Gilbert
Plant Physiology|September 29, 2011
Transcriptome response to embolism formation in stems of Populus trichocarpa provides insight into signaling and the biology of refillingFrancesca Secchi, Matthew E Gilbert, Maciej A Zwieniecki
Plant Methods|September 15, 2018
A multiplexed gas exchange system for increased throughput of photosynthetic capacity measurementsWilliam T Salter, Matthew E Gilbert, Thomas N Buckley
Journal of Experimental Botany|February 23, 2011
Independent variation in photosynthetic capacity and stomatal conductance leads to differences in intrinsic water use efficiency in 11 soybean genotypes before and during mild droughtMatthew E Gilbert, Maciej A Zwieniecki, N Michele Holbrook
Plant, Cell & Environment|April 16, 2008
Seasonal differences in photosynthesis between the C3 and C4 subspecies of Alloteropsis semialata are offset by frost and droughtDouglas G Ibrahim, Matthew E Gilbert, Brad S Ripley, et al.
Journal of Experimental Botany|February 27, 2007
Drought constraints on C4 photosynthesis: stomatal and metabolic limitations in C3 and C4 subspecies of Alloteropsis semialataBrad S Ripley, Matthew E Gilbert, Douglas G Ibrahim, et al.
Pageof 3