This study investigated the effects of carbon dioxide (CO)2 enrichment and soil water deficit on the water use efficiency (WUE) and growth of Sanguisorba minor Scop, (salad burnet I and Anthyllis vulneraria L. (kidney vetch), growing in controlled environments. Instantaneous WL E (IWUE) increased in both species in elevated CO2, with a higher average increase in unwatered (UW) A. vulneraria over the drying cycle. Total plant WUE of A. vulneraria increased in elevated CO, and under water deficit: the UW plants in elevated CO., had higher WUE and reduced water loss. By contrast, thee was only an effect of water supply on S. minor: total plant WUE increased and water loss decreased in the UV plants in both CO2, treatments. Total apparent root ...
1. The elevated CO2 concentration (eCO2) is expected to improve plant water relations and carbon (C)...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
The aim of this study was to investigate the impact of ambient (345 ?l l?1) and elevated (590 ?l l?1...
Diurnal measurements of leaf or leaflet, extension, water relations and cell wall extensibility (φ) ...
Elevated atmospheric carbon dioxide causes changes in most plant species in terms of physiological a...
Carbon dioxide and water are crucial resources for plant growth. With anthropogenic fossil fuel emis...
Elevated atmospheric carbon dioxide causes changes in most plant species in terms of physiological a...
Two experiments are described in which plants of six species were grown for one full season in green...
Carbon dioxide and water are crucial resources for plant growth. With anthropogenic fossil fuel emis...
Contrasting effects on the stomatal index (SI), stomatal density, epidermal cell size and number wer...
The present study aimed to examine the interactive effects of elevated atmospheric CO2 concentration...
Elevated CO2 levels can improve growth and water use efficiency (WUE). However, the influence of atm...
Due to the rise in anthropogenic greenhouse gas concentrations, the earth's climate is expected to c...
Background: The atmospheric CO2 concentration is rising continuously, and abnormal precipitation may...
1. The elevated CO2 concentration (eCO2) is expected to improve plant water relations and carbon (C)...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
The aim of this study was to investigate the impact of ambient (345 ?l l?1) and elevated (590 ?l l?1...
Diurnal measurements of leaf or leaflet, extension, water relations and cell wall extensibility (φ) ...
Elevated atmospheric carbon dioxide causes changes in most plant species in terms of physiological a...
Carbon dioxide and water are crucial resources for plant growth. With anthropogenic fossil fuel emis...
Elevated atmospheric carbon dioxide causes changes in most plant species in terms of physiological a...
Two experiments are described in which plants of six species were grown for one full season in green...
Carbon dioxide and water are crucial resources for plant growth. With anthropogenic fossil fuel emis...
Contrasting effects on the stomatal index (SI), stomatal density, epidermal cell size and number wer...
The present study aimed to examine the interactive effects of elevated atmospheric CO2 concentration...
Elevated CO2 levels can improve growth and water use efficiency (WUE). However, the influence of atm...
Due to the rise in anthropogenic greenhouse gas concentrations, the earth's climate is expected to c...
Background: The atmospheric CO2 concentration is rising continuously, and abnormal precipitation may...
1. The elevated CO2 concentration (eCO2) is expected to improve plant water relations and carbon (C)...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...
We investigated responses of growth, leaf gas exchange, carbon-isotope discrimination, and whole-pla...