1, We investigated the interactive effects of elevated CO2, supply of phosphorus (P) and legume presence in model communities of calcareous grassland. Half of the communities contained six graminoids and eight nan-legume forb species, In the other half, four non-legume forbs were replaced by legumes. 2, Ecosystem responses. Above-ground phytomass ( 0.001). Below-ground community dry matter was stimulated by elevated CO2 alone by + 36% (P > 0.01), but was only + 20% (P > 0.05) when legumes were present and P was added, At the final (late season) harvest the mean effect of elevated CO2 on total above- and below-ground phytomass was + 23% (P > 0.001) and revealed no significant interactions among treatment combinations, because above- and belo...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
Atmospheric CO2 enrichment usually increases aboveground productivity (ANPP) of grassland vegetation...
Phosphorus (P) is an essential macro-nutrient required for plant metabolism and growth. Low P availa...
We exposed species-rich temperate calcareous grassland to elevated CO2 (600 muL/L) for six growing s...
Thirty-six mesocosms, each containing a two-species community of Trifolium repens (C3 legume) and St...
Since 1999, the long-term responses of a semi-natural grassland community to elevated CO2 concentrat...
Increasing atmospheric CO2 enhances plant biomass production and may thereby change nutrient concent...
The implications of current climate-change scenarios for British species and communities are not str...
To evaluate whether functional groups have a similar response to global change, the responses to CO2...
Artificial turves composed of 7 chalk grassland species (Festuca ovina L.; Briza media L.; Bromopsis...
AbstractGrasslands comprise 70% of all agricultural land worldwide, and provide fodder for life-stoc...
With the ability to symbiotically fix atmospheric N2, legumes may lack the N-limitations thought to ...
Globally pervasive increases in atmospheric CO2 and nitrogen (N) deposition could have substantial e...
Rising atmospheric CO2 has stimulated plant productivity, with terrestrial ecosystems currently abso...
AbstractGlobally pervasive increases in atmospheric CO2 and nitrogen (N) deposition could have subst...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
Atmospheric CO2 enrichment usually increases aboveground productivity (ANPP) of grassland vegetation...
Phosphorus (P) is an essential macro-nutrient required for plant metabolism and growth. Low P availa...
We exposed species-rich temperate calcareous grassland to elevated CO2 (600 muL/L) for six growing s...
Thirty-six mesocosms, each containing a two-species community of Trifolium repens (C3 legume) and St...
Since 1999, the long-term responses of a semi-natural grassland community to elevated CO2 concentrat...
Increasing atmospheric CO2 enhances plant biomass production and may thereby change nutrient concent...
The implications of current climate-change scenarios for British species and communities are not str...
To evaluate whether functional groups have a similar response to global change, the responses to CO2...
Artificial turves composed of 7 chalk grassland species (Festuca ovina L.; Briza media L.; Bromopsis...
AbstractGrasslands comprise 70% of all agricultural land worldwide, and provide fodder for life-stoc...
With the ability to symbiotically fix atmospheric N2, legumes may lack the N-limitations thought to ...
Globally pervasive increases in atmospheric CO2 and nitrogen (N) deposition could have substantial e...
Rising atmospheric CO2 has stimulated plant productivity, with terrestrial ecosystems currently abso...
AbstractGlobally pervasive increases in atmospheric CO2 and nitrogen (N) deposition could have subst...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
Atmospheric CO2 enrichment usually increases aboveground productivity (ANPP) of grassland vegetation...
Phosphorus (P) is an essential macro-nutrient required for plant metabolism and growth. Low P availa...