N2-fixing alfalfa plants were grown in controlled conditions at different CO2 levels (350 μmol mol−1versus 700 μmol mol−1) and water-availability conditions (WW, watered at maximum pot water capacity versus WD, watered at 50% of control treatments) in order to determine the CO2 effect (and applied at two water regimes) on plant growth and nodule activity in alfalfa plants. The CO2 stimulatory effect (26% enhancement) on plant growth was limited to WW plants, whereas no CO2 effect was observed in WD plants. Exposure to elevated CO2 decreased Rubisco carboxylation capacity of plants, caused by a specific reduction in Rubisco (EC 4.1.1.39) concentration (11% in WW and 43% in WD) probably explained by an increase in the leaf carbohydrate levels...
The experiment aimed to identify the effect of atmospheric carbon dioxide enrichment on the water st...
To assess the interactions between concentration of atmospheric CO2 and N supply, the response of Pl...
AbstractAlthough the predicted enhanced photosynthetic rates of plants exposed to elevated [CO2] are...
Plants grown in an environment of elevated CO2 and temperature often show reduced CO2 assimilation c...
International audienceAlthough responsiveness of N-2-fixing plants to elevated CO2 conditions have b...
Increasing atmospheric CO2 concentrations are expected to enhance plant photosynthesis and yield. Ne...
Rising atmospheric CO2 may increase potential net leaf photosynthesis under short-term exposure, but...
The extent to which atmospheric CO2 enrichment may influence alfalfa (Medicago sativa L.) water rela...
Future climatic conditions, including rising atmospheric CO2 and temperature may increase photosynth...
The rising atmospheric CO2 concentration resulting from industrial development may enhance photosynt...
The contribution of carbon and nitrogen reserves to regrowth following shoot removal has been studie...
International audienceThe increasing atmospheric CO2 concentration resulting as a consequence of eco...
The influence of increasing atmospheric CO2 concentrations on the growth and yield of alfalfa has be...
Available online 24 May 2014Continued emissions of CO2, derived from human activities, increase atmo...
Increased biomass and yield of plants grown under elevated [CO2 ] often corresponds to decreased gra...
The experiment aimed to identify the effect of atmospheric carbon dioxide enrichment on the water st...
To assess the interactions between concentration of atmospheric CO2 and N supply, the response of Pl...
AbstractAlthough the predicted enhanced photosynthetic rates of plants exposed to elevated [CO2] are...
Plants grown in an environment of elevated CO2 and temperature often show reduced CO2 assimilation c...
International audienceAlthough responsiveness of N-2-fixing plants to elevated CO2 conditions have b...
Increasing atmospheric CO2 concentrations are expected to enhance plant photosynthesis and yield. Ne...
Rising atmospheric CO2 may increase potential net leaf photosynthesis under short-term exposure, but...
The extent to which atmospheric CO2 enrichment may influence alfalfa (Medicago sativa L.) water rela...
Future climatic conditions, including rising atmospheric CO2 and temperature may increase photosynth...
The rising atmospheric CO2 concentration resulting from industrial development may enhance photosynt...
The contribution of carbon and nitrogen reserves to regrowth following shoot removal has been studie...
International audienceThe increasing atmospheric CO2 concentration resulting as a consequence of eco...
The influence of increasing atmospheric CO2 concentrations on the growth and yield of alfalfa has be...
Available online 24 May 2014Continued emissions of CO2, derived from human activities, increase atmo...
Increased biomass and yield of plants grown under elevated [CO2 ] often corresponds to decreased gra...
The experiment aimed to identify the effect of atmospheric carbon dioxide enrichment on the water st...
To assess the interactions between concentration of atmospheric CO2 and N supply, the response of Pl...
AbstractAlthough the predicted enhanced photosynthetic rates of plants exposed to elevated [CO2] are...