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How do climate warming and species richness affect CO2 fluxes in experimental grasslands?

Authors :
De Boeck, Hans J.
Lemmens, Catherine M. H. M.
Vicca, Sara
Van den Berge, Joke
Van Dongen, Stefan
Janssens, Ivan A.
Ceulemans, Reinhart
Nijs, Ivan
Source :
New Phytologist. Aug2007, Vol. 175 Issue 3, p512-522. 11p. 2 Charts, 5 Graphs.
Publication Year :
2007

Abstract

• This paper presents the results of 2 yr of CO2 flux measurements on grassland communities of varying species richness, exposed to either the current or a warmer climate. • We grew experimental plant communities containing one, three or nine grassland species in 12 sunlit, climate-controlled chambers. Half of these chambers were exposed to ambient air temperatures, while the other half were warmed by 3°C. Equal amounts of water were added to heated and unheated communities, implying drier soils if warming increased evapotranspiration. Three main CO2 fluxes (gross photosynthesis, above-ground and below-ground respiration) were measured multiple times per year and reconstructed hourly or half-hourly by relating them to their most important environmental driver. • While CO2 outputs through respiration were largely unchanged under warming, CO2 inputs through photosynthesis were lowered, especially in summer, when heat and drought stress were higher. Above-ground CO2 fluxes were significantly increased in multispecies communities, as more complementary resource use stimulated productivity. Finally, effects of warming appeared to be smallest in monocultures. • This study shows that in a future warmer climate the CO2 sink capacity of temperate grasslands could decline, and that such adverse effects are not likely to be mitigated by efforts to maintain or increase species richness. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0028646X
Volume :
175
Issue :
3
Database :
Academic Search Index
Journal :
New Phytologist
Publication Type :
Academic Journal
Accession number :
25779819
Full Text :
https://doi.org/10.1111/j.1469-8137.2007.02122.x