The present experiment was conducted to evaluate the effect of elevated [CO2] with varying nutrient management on rice–rice production system. The experiment was conducted in the open field and inside open-top chambers (OTCs) of ambient [CO2] (≈ 390 μmol L− 1) and elevated [CO2] environment (25% above ambient) during wet and dry seasons in 2011–2013 at Kharagpur, India. The nutrient management included recommended doses of N, P, and K as chemical fertilizer (CF), integration of chemical and organic sources, and application of increased (25% higher) doses of CF. The higher [CO2] level in the OTC increased aboveground biomass but marginally decreased filled grains per panicle and grain yield of rice, compared to the ambient environment. Howev...
Abstract The present field experiment was conducted during two consecutive cropping seasons in cent...
Rice (Oryza sativa L.) is one of the world's most important crops and the primary source of calories...
Because CO_2 is needed for plant photosynthesis, the increase in atmospheric [CO_2] has the potentia...
AbstractThe present experiment was conducted to evaluate the effect of elevated [CO2] with varying n...
The climate change due to mingled effect of rising [CO2] level and temperature will influence crop p...
181-187Climate change associated with rising atmospheric carbon dioxide (CO2) concentration may have...
The rise in atmospheric CO2 partial pressures that is predicted for the 21st Century is likely to in...
The CO2 concentration in the atmosphere is rising dramatically each year. Increases are certain to i...
This work investigates the relationship between plant growth, grain yield, nutrient acquisition and ...
Not AvailableAnthropogenic activities in few decades past have increased the concentration of the a...
Not AvailableIn an incubation experiment with flooded rice soil fertilized with different N amounts ...
Numerous studies have addressed effects of rising atmospheric CO2 concentration on rice biomass prod...
<div><p>Numerous studies have addressed effects of rising atmospheric CO<sub>2</sub> concentration o...
Received: July 16th, 2022 ; Accepted: September 8th, 2022 ; Published: September 12th, 2022 ; Corres...
Elevated CO2 and temperature strongly affect crop production, but understanding of the crop response...
Abstract The present field experiment was conducted during two consecutive cropping seasons in cent...
Rice (Oryza sativa L.) is one of the world's most important crops and the primary source of calories...
Because CO_2 is needed for plant photosynthesis, the increase in atmospheric [CO_2] has the potentia...
AbstractThe present experiment was conducted to evaluate the effect of elevated [CO2] with varying n...
The climate change due to mingled effect of rising [CO2] level and temperature will influence crop p...
181-187Climate change associated with rising atmospheric carbon dioxide (CO2) concentration may have...
The rise in atmospheric CO2 partial pressures that is predicted for the 21st Century is likely to in...
The CO2 concentration in the atmosphere is rising dramatically each year. Increases are certain to i...
This work investigates the relationship between plant growth, grain yield, nutrient acquisition and ...
Not AvailableAnthropogenic activities in few decades past have increased the concentration of the a...
Not AvailableIn an incubation experiment with flooded rice soil fertilized with different N amounts ...
Numerous studies have addressed effects of rising atmospheric CO2 concentration on rice biomass prod...
<div><p>Numerous studies have addressed effects of rising atmospheric CO<sub>2</sub> concentration o...
Received: July 16th, 2022 ; Accepted: September 8th, 2022 ; Published: September 12th, 2022 ; Corres...
Elevated CO2 and temperature strongly affect crop production, but understanding of the crop response...
Abstract The present field experiment was conducted during two consecutive cropping seasons in cent...
Rice (Oryza sativa L.) is one of the world's most important crops and the primary source of calories...
Because CO_2 is needed for plant photosynthesis, the increase in atmospheric [CO_2] has the potentia...