The impact of elevated CO2 (eCO2) on soybean productivity is essential to the global food supply because it is the world's leading source of vegetable proteins. This study aimed to understand the yield responses and nutritional impact under free-air CO2 enrichment (FACE) conditions of soybean genotypes. Here we report that grain yield increased by 46.9% and no reduction in harvest index was observed among soybean genotypes. Elevated CO2 improved the photosynthetic carbon assimilation rate, leaf area, plant height, and aboveground biomass at vegetative and pod filling stages. Besides the positive effects on yield parameters, eCO2 differentially affected the overall grain quality. The levels of calcium (Ca), phosphorous (P), potassium (K), ma...
Interactions between elevated [CO2] and soil water availability have the potential impact on crops a...
The objective of this study was to investigate the effect of elevated (550 ± 17 μmol mol−1) CO2 conc...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...
The impact of elevated CO2 (eCO2) on soybean productivity is essential to the global food supply bec...
Although elevated atmospheric CO2 concentration (elevated CO2 (eCO2)) considerably affect soybean yi...
In the current situation of a constant increase in the atmospheric CO2 concentration, there is a pot...
Investigations across the world have elucidated common chemical and physiological responses of plant...
Although the effect of elevated CO2 (eCO(2)) on soybean yield has been well documented, few studies ...
Rising atmospheric [CO2] is a uniform, global change that increases C-3 photosynthesis and could off...
The predicted increase in atmospheric CO concentration [CO] is expected to enhance photosynthesis an...
Although the effect of elevated CO2 (eCO2) on soybean yield has been well documented, few studies ha...
Nitrogen deficiency limits crop performance under elevated CO2 (eCO2), depending on the ability of p...
We tested the hypothesis that elevated CO2 concentration [CO2]-induced enhancement of biomass produc...
The effect of elevated carbon dioxide (CO2) concentration on symbiotic nitrogen fixation in soybean ...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...
Interactions between elevated [CO2] and soil water availability have the potential impact on crops a...
The objective of this study was to investigate the effect of elevated (550 ± 17 μmol mol−1) CO2 conc...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...
The impact of elevated CO2 (eCO2) on soybean productivity is essential to the global food supply bec...
Although elevated atmospheric CO2 concentration (elevated CO2 (eCO2)) considerably affect soybean yi...
In the current situation of a constant increase in the atmospheric CO2 concentration, there is a pot...
Investigations across the world have elucidated common chemical and physiological responses of plant...
Although the effect of elevated CO2 (eCO(2)) on soybean yield has been well documented, few studies ...
Rising atmospheric [CO2] is a uniform, global change that increases C-3 photosynthesis and could off...
The predicted increase in atmospheric CO concentration [CO] is expected to enhance photosynthesis an...
Although the effect of elevated CO2 (eCO2) on soybean yield has been well documented, few studies ha...
Nitrogen deficiency limits crop performance under elevated CO2 (eCO2), depending on the ability of p...
We tested the hypothesis that elevated CO2 concentration [CO2]-induced enhancement of biomass produc...
The effect of elevated carbon dioxide (CO2) concentration on symbiotic nitrogen fixation in soybean ...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...
Interactions between elevated [CO2] and soil water availability have the potential impact on crops a...
The objective of this study was to investigate the effect of elevated (550 ± 17 μmol mol−1) CO2 conc...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...