Root production and turnover and carbon budgets of two contrasting grasslands under ambient and elevated atmospheric carbon dioxide concentrations

Monoliths of two contrasting vegetation types, a species-rich grassland on a brown earth soil over limestone and species-poor community on a peaty gley, were transferred to solardomes and grown under ambient (350 μ 1-1 ) and elevated (600 μ11-1 ) CO2 for 2 yr. Shoot biomass was unaltered but root bi...

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Veröffentlicht in:The New phytologist. - 1979. - 137(1997), 2 vom: 18. Okt., Seite 247-255
1. Verfasser: Fitter, A H (VerfasserIn)
Weitere Verfasser: Graves, J D, Wolfenden, J, Self, G K, Brown, T K, Bogie, D, Mansfield, T A
Format: Online-Aufsatz
Sprache:English
Veröffentlicht: 1997
Zugriff auf das übergeordnete Werk:The New phytologist
Schlagworte:Journal Article Root turnover below-ground production birth and rate minirhizotron respiration
Beschreibung
Zusammenfassung:Monoliths of two contrasting vegetation types, a species-rich grassland on a brown earth soil over limestone and species-poor community on a peaty gley, were transferred to solardomes and grown under ambient (350 μ 1-1 ) and elevated (600 μ11-1 ) CO2 for 2 yr. Shoot biomass was unaltered but root biomass increased by 40-50% under elevated CO2 . Root production was increased by elevated CO2 in the peat soil, measured both as instantaneous and cumulative rates, but only the latter measure was increased in the limestone soil. Root growth was stimulated more at 6 cm depth than at 10 cm in the limestone soil. Turnover was faster under elevated CO2 in the peat soil, but there was only a small effect on turnover in the limestone soil. Elevated CO2 reduced nitrogen concentration in roots and might have increased mycorrhizal colonization. Respiration rate was correlated with N concentration, and was therefore lower in roots grown at elevated CO2 . Estimates of the C budget of the two communities, based upon root production and on net C uptake, suggest that C sequestration in the peat soil increases by c. 0.2 kg C m -2 yr-1 (= 2 t ha yr-1 ) under elevated CO2
Beschreibung:Date Revised 19.04.2021
published: Print
Citation Status PubMed-not-MEDLINE
ISSN:1469-8137
DOI:10.1046/j.1469-8137.1997.00804.x