Improvements in carbon assimilation and water-use efficiency lead to increases in maximum leaf area index at elevated carbon dioxide concentration ([CO(2)]); however, the molecular drivers for this increase are unknown. We investigated the molecular basis for changes in leaf development at elevated [CO(2)] using soybeans (Glycine max) grown under fully open air conditions at the Soybean Free Air CO(2) Enrichment (SoyFACE) facility. The transcriptome responses of rapidly growing and fully expanded leaves to elevated [CO(2)] were investigated using cDNA microarrays. We identified 1,146 transcripts that showed a significant change in expression in growing versus fully expanded leaves. Transcripts for ribosomal proteins, cell cycle, and cell wa...
Background: The atmospheric CO2 concentration increases every year. While the effects of elevated CO...
The effect of elevated CO2 (eCO(2)) on rhizospheric diazotrophic community in cropland has little be...
<div><p>Background</p><p>The atmospheric CO<sub>2</sub> concentration increases every year. While th...
Increases in growth at elevated [CO2] may be constrained by a plant's ability to assimilate the nutr...
Elevated atmospheric CO2 can influence the structure and function of rhizoplane and rhizosphere micr...
Abstract While exposure of C3 plants to elevated [CO2] would be expected to reduce production of rea...
The objective of this study was to investigate the effect of elevated (550 ± 17 μmol mol−1) CO2 conc...
Many studies addressing the effects of rising carbon dioxide concentrations ([CO2]) on agricultural ...
Interactions between elevated [CO2] and soil water availability have the potential impact on crops a...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...
Investigations across the world have elucidated common chemical and physiological responses of plant...
Because of the economical relevance of sugarcane and its high potential as a source of biofuel, it i...
BACKGROUND: The atmospheric CO2 concentration increases every year. While the effects of elevated CO...
BACKGROUND: In tightly closed human habitats such as space stations, locations near volcano vents an...
Background: The atmospheric CO2 concentration increases every year. While the effects of elevated CO...
The effect of elevated CO2 (eCO(2)) on rhizospheric diazotrophic community in cropland has little be...
<div><p>Background</p><p>The atmospheric CO<sub>2</sub> concentration increases every year. While th...
Increases in growth at elevated [CO2] may be constrained by a plant's ability to assimilate the nutr...
Elevated atmospheric CO2 can influence the structure and function of rhizoplane and rhizosphere micr...
Abstract While exposure of C3 plants to elevated [CO2] would be expected to reduce production of rea...
The objective of this study was to investigate the effect of elevated (550 ± 17 μmol mol−1) CO2 conc...
Many studies addressing the effects of rising carbon dioxide concentrations ([CO2]) on agricultural ...
Interactions between elevated [CO2] and soil water availability have the potential impact on crops a...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...
Understanding how elevated CO2 affects dynamics of nodal leaf growth and N assimilation is crucial f...
Investigations across the world have elucidated common chemical and physiological responses of plant...
Because of the economical relevance of sugarcane and its high potential as a source of biofuel, it i...
BACKGROUND: The atmospheric CO2 concentration increases every year. While the effects of elevated CO...
BACKGROUND: In tightly closed human habitats such as space stations, locations near volcano vents an...
Background: The atmospheric CO2 concentration increases every year. While the effects of elevated CO...
The effect of elevated CO2 (eCO(2)) on rhizospheric diazotrophic community in cropland has little be...
<div><p>Background</p><p>The atmospheric CO<sub>2</sub> concentration increases every year. While th...