The productivity of many important crops is significantly threatened by water shortage, and the elevated atmospheric CO2 can significantly interact with physiological processes and crop responses to drought. We examined the effects of three different CO2 concentrations (historical ~300 ppm, ambient ~400 ppm and elevated ~700 ppm) on physiological traits of oilseed rape (Brassica napus L.) seedlings subjected to well-watered and reduced water availability. Our data show (1) that, as expected, increasing CO2 level positively modulates leaf photosynthetic traits, leaf water-use efficiency and growth under non-stressed conditions, although a pronounced acclimation of photosynthesis to elevated CO2 occurred; (2) that the predicted elevated CO2 c...
AbstractThe impact of elevated CO2 (750 ppm), O3 (80 ppb), and the combination of these two gasses w...
We examined the hypothesis that root and shoot factors influence growth responses to elevated CO2 of...
In this paper, the effects of different CO2 concentrations (400 and 800 μmol·mol−1) on photosyntheti...
The productivity of many important crops is significantly threatened by water shortage, and the elev...
An attempt has been made to study the interactive effect of elevated CO2 and moisture stress on phot...
This study was intended to investigate how an agronomically important crop Brassica napus will be ab...
Carbon dioxide and water are crucial resources for plant growth. With anthropogenic fossil fuel emis...
© 2015 Elsevier B.V. Exposure of plants to elevated CO2(eCO2) has a number of physiological effects,...
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)...
Increasing atmospheric [CO 2] is thought to contribute to changes in precipitation patterns, increas...
This study investigated the interactive effects of atmospheric CO2 concentration ([CO2]) and water a...
Together with the steady rise in atmospheric CO2 concentration, extreme climatic conditions with ext...
Background and aims: Increasing atmospheric carbon dioxide concentration ([CO 2 ]) stimulates the le...
Plant responses to elevated atmospheric carbon dioxide (eCO2) have been hypothesised as a key mechan...
AbstractThe impact of elevated CO2 (750 ppm), O3 (80 ppb), and the combination of these two gasses w...
We examined the hypothesis that root and shoot factors influence growth responses to elevated CO2 of...
In this paper, the effects of different CO2 concentrations (400 and 800 μmol·mol−1) on photosyntheti...
The productivity of many important crops is significantly threatened by water shortage, and the elev...
An attempt has been made to study the interactive effect of elevated CO2 and moisture stress on phot...
This study was intended to investigate how an agronomically important crop Brassica napus will be ab...
Carbon dioxide and water are crucial resources for plant growth. With anthropogenic fossil fuel emis...
© 2015 Elsevier B.V. Exposure of plants to elevated CO2(eCO2) has a number of physiological effects,...
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)...
Increasing atmospheric [CO 2] is thought to contribute to changes in precipitation patterns, increas...
This study investigated the interactive effects of atmospheric CO2 concentration ([CO2]) and water a...
Together with the steady rise in atmospheric CO2 concentration, extreme climatic conditions with ext...
Background and aims: Increasing atmospheric carbon dioxide concentration ([CO 2 ]) stimulates the le...
Plant responses to elevated atmospheric carbon dioxide (eCO2) have been hypothesised as a key mechan...
AbstractThe impact of elevated CO2 (750 ppm), O3 (80 ppb), and the combination of these two gasses w...
We examined the hypothesis that root and shoot factors influence growth responses to elevated CO2 of...
In this paper, the effects of different CO2 concentrations (400 and 800 μmol·mol−1) on photosyntheti...