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David J Beerling

Showing results (11-20 of 89) with videos related to

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Plant Science : an International Journal of Experimental Plant Biology|August 7, 2018
Stomatal and non-stomatal limitations in savanna trees and C<sub>4</sub> grasses grown at low, ambient and high atmospheric CO<sub>2</sub>Chandra Bellasio, Joe Quirk, David J Beerling
Annals of Botany|May 19, 2009
Water-use responses of 'living fossil' conifers to CO2 enrichment in a simulated Cretaceous polar environmentLaura Llorens, Colin P Osborne, David J Beerling
Current Opinion in Plant Biology|July 23, 2013
Early evolutionary acquisition of stomatal control and development gene signalling networksCaspar Chater, Julie E Gray, David J Beerling
Nature|July 3, 2009
The role of terrestrial plants in limiting atmospheric CO(2) decline over the past 24 million yearsMark Pagani, Ken Caldeira, Robert Berner, et al.
Nature|July 4, 2003
Carbon loss by deciduous trees in a CO2-rich ancient polar environmentDana L Royer, Colin P Osborne, David J Beerling
Current Opinion in Plant Biology|June 17, 2010
Stomata: key players in the earth system, past and presentJoseph A Berry, David J Beerling, Peter J Franks
Nature Plants|August 25, 2022
Physiological responses to low CO<sub>2</sub> over prolonged drought as primers for forest-grassland transitionsChandra Bellasio, Joe Quirk, Nerea Ubierna, et al.
Plant, Cell & Environment|August 18, 2009
Plasticity in maximum stomatal conductance constrained by negative correlation between stomatal size and density: an analysis using Eucalyptus globulusPeter J Franks, Paul L Drake, David J Beerling
Aob PLANTS|April 6, 2012
Evolutionary development of the plant and spore wallSimon Wallace, Andrew Fleming, Charles H Wellman, et al.
Plant Physiology|July 29, 2017
A Dynamic Hydro-Mechanical and Biochemical Model of Stomatal Conductance for C<sub>4</sub> PhotosynthesisChandra Bellasio, Joe Quirk, Thomas N Buckley, et al.
Pageof 9

Showing results (11-20 of 89) with videos related to

Sort By:
Pageof 9
Plant Science : an International Journal of Experimental Plant Biology|August 7, 2018
Stomatal and non-stomatal limitations in savanna trees and C<sub>4</sub> grasses grown at low, ambient and high atmospheric CO<sub>2</sub>Chandra Bellasio, Joe Quirk, David J Beerling
Annals of Botany|May 19, 2009
Water-use responses of 'living fossil' conifers to CO2 enrichment in a simulated Cretaceous polar environmentLaura Llorens, Colin P Osborne, David J Beerling
Current Opinion in Plant Biology|July 23, 2013
Early evolutionary acquisition of stomatal control and development gene signalling networksCaspar Chater, Julie E Gray, David J Beerling
Nature|July 3, 2009
The role of terrestrial plants in limiting atmospheric CO(2) decline over the past 24 million yearsMark Pagani, Ken Caldeira, Robert Berner, et al.
Nature|July 4, 2003
Carbon loss by deciduous trees in a CO2-rich ancient polar environmentDana L Royer, Colin P Osborne, David J Beerling
Current Opinion in Plant Biology|June 17, 2010
Stomata: key players in the earth system, past and presentJoseph A Berry, David J Beerling, Peter J Franks
Nature Plants|August 25, 2022
Physiological responses to low CO<sub>2</sub> over prolonged drought as primers for forest-grassland transitionsChandra Bellasio, Joe Quirk, Nerea Ubierna, et al.
Plant, Cell & Environment|August 18, 2009
Plasticity in maximum stomatal conductance constrained by negative correlation between stomatal size and density: an analysis using Eucalyptus globulusPeter J Franks, Paul L Drake, David J Beerling
Aob PLANTS|April 6, 2012
Evolutionary development of the plant and spore wallSimon Wallace, Andrew Fleming, Charles H Wellman, et al.
Plant Physiology|July 29, 2017
A Dynamic Hydro-Mechanical and Biochemical Model of Stomatal Conductance for C<sub>4</sub> PhotosynthesisChandra Bellasio, Joe Quirk, Thomas N Buckley, et al.
Pageof 9