Increasing atmospheric CO2 enhances plant biomass production and may thereby change nutrient concentrations in plant tissues. The objective of this study was to identify the effect of elevated atmospheric CO2 concentrations on nutrient concentrations of grassland biomass that have been grown for 16 years (1998–2013). The grassland biomass grown at the extensively managed Giessen FACE experiment, fumigated with ambient and elevated CO2 (aCO2; eCO2; +20%) was harvested twice annually. Concentrations of C, N, P, K, Ca, Mg, Mn, Fe, Cu and Zn were determined separately for grasses, forbs and legumes. Under eCO2, the concentration of N was reduced in grasses, Ca was reduced in grasses and forbs, P was reduced in grasses but increased in legumes, ...
Abstract Background Grasslands are one of the most representative vegetation types accounting for ab...
We describe the long-term effects of a CO2 exhalation, created more than 70 years ago, on a natural ...
Leaf gas exchange responses to elevated CO2 and N are presented for 13 perennial species, representi...
AbstractGrasslands comprise 70% of all agricultural land worldwide, and provide fodder for life-stoc...
Since 1999, the long-term responses of a semi-natural grassland community to elevated CO2 concentrat...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
We exposed species-rich temperate calcareous grassland to elevated CO2 (600 muL/L) for six growing s...
To evaluate whether functional groups have a similar response to global change, the responses to CO2...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
1, We investigated the interactive effects of elevated CO2, supply of phosphorus (P) and legume pres...
With the ability to symbiotically fix atmospheric N2, legumes may lack the N-limitations thought to ...
Enhanced plant biomass accumulation in response to elevated atmospheric CO2 concentration could damp...
The stimulation of plant growth by elevated CO2 concentration has been widely observed. Such fertili...
tallgrass prairie, water-use efficiency Increased biomass production in terrestrial ecosystems with ...
In an attempt to investigate the cause of change in the competitive ability between monocots and dic...
Abstract Background Grasslands are one of the most representative vegetation types accounting for ab...
We describe the long-term effects of a CO2 exhalation, created more than 70 years ago, on a natural ...
Leaf gas exchange responses to elevated CO2 and N are presented for 13 perennial species, representi...
AbstractGrasslands comprise 70% of all agricultural land worldwide, and provide fodder for life-stoc...
Since 1999, the long-term responses of a semi-natural grassland community to elevated CO2 concentrat...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
We exposed species-rich temperate calcareous grassland to elevated CO2 (600 muL/L) for six growing s...
To evaluate whether functional groups have a similar response to global change, the responses to CO2...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
1, We investigated the interactive effects of elevated CO2, supply of phosphorus (P) and legume pres...
With the ability to symbiotically fix atmospheric N2, legumes may lack the N-limitations thought to ...
Enhanced plant biomass accumulation in response to elevated atmospheric CO2 concentration could damp...
The stimulation of plant growth by elevated CO2 concentration has been widely observed. Such fertili...
tallgrass prairie, water-use efficiency Increased biomass production in terrestrial ecosystems with ...
In an attempt to investigate the cause of change in the competitive ability between monocots and dic...
Abstract Background Grasslands are one of the most representative vegetation types accounting for ab...
We describe the long-term effects of a CO2 exhalation, created more than 70 years ago, on a natural ...
Leaf gas exchange responses to elevated CO2 and N are presented for 13 perennial species, representi...