Increasing [CO2] may influence commercial crop and timber yield. While selection of genotypes sensitive to elevated [CO2] (e[CO2]) appears possible in agricultural crops, there is limited evidence for genotype-by-CO2 (G×CO2) interactions in commercial tree species. We examined [CO2] responsiveness in 124 open-pollinated Eucalyptus globulus subspecies globulus (E. globulus) families with the aim of assessing whether G×CO2 interactions are detectable in seedlings for early-age screening. Plants were grown in ambient (a[CO2]; ~405 μmol mol-1) and e[CO2] (640 μmol mol-1) and harvested 25 days after germination. Total, shoot and root dry weights were determined for each plant. Carbon isotopic discrimination against 13C (Δ13C) was determined at t...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
This paper reports general patterns of relative growth rate and related traits in response to elevat...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
Intraspecific variation in biomass production responses to elevated atmospheric carbon dioxide (eCO2...
International audienceElevated atmospheric carbon dioxide (eCO 2) often enhances rates of photosynth...
To investigate if Eucalyptus species have responded to industrial-age climate change, and how they m...
Given ongoing climate changes and their impact on plant growth and development, CO2 effects have bee...
AbstractThe impacts from elevated atmospheric carbon dioxide (CO2) concentrations on forest systems ...
Phenotypic responses to rising CO2 will have consequences for the productivity and management of the...
Atmospheric carbon dioxide (CO2) concentrations are expected to increase throughout this century, po...
Eucalypts are likely to play a critical role in the response of Australian forests to rising atmosph...
Atmospheric carbon dioxide (CO2) concentrations are expected to increase throughout this century, po...
AbstractThe impacts from elevated atmospheric carbon dioxide (CO2) concentrations on forest systems ...
The effects of elevated CO2 on the short-term temperature response of leaf dark respiration (R) rema...
he Institute of Forest Genetics and Tree Breeding, Coimbatore, India has a long term systematic tree...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
This paper reports general patterns of relative growth rate and related traits in response to elevat...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
Intraspecific variation in biomass production responses to elevated atmospheric carbon dioxide (eCO2...
International audienceElevated atmospheric carbon dioxide (eCO 2) often enhances rates of photosynth...
To investigate if Eucalyptus species have responded to industrial-age climate change, and how they m...
Given ongoing climate changes and their impact on plant growth and development, CO2 effects have bee...
AbstractThe impacts from elevated atmospheric carbon dioxide (CO2) concentrations on forest systems ...
Phenotypic responses to rising CO2 will have consequences for the productivity and management of the...
Atmospheric carbon dioxide (CO2) concentrations are expected to increase throughout this century, po...
Eucalypts are likely to play a critical role in the response of Australian forests to rising atmosph...
Atmospheric carbon dioxide (CO2) concentrations are expected to increase throughout this century, po...
AbstractThe impacts from elevated atmospheric carbon dioxide (CO2) concentrations on forest systems ...
The effects of elevated CO2 on the short-term temperature response of leaf dark respiration (R) rema...
he Institute of Forest Genetics and Tree Breeding, Coimbatore, India has a long term systematic tree...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
This paper reports general patterns of relative growth rate and related traits in response to elevat...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...