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  Feedback interactions between needle litter decomposition and rhizosphere activity

Subke, J.-A., Hahn, V., Battipaglia, G., Linder, S., Buchmann, N., & Cotrufo, M. F. (2004). Feedback interactions between needle litter decomposition and rhizosphere activity. Oecologia, 139(4), 551-559. doi:10.1007/s00442-004-1540-4.

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BGC0697.pdf (Verlagsversion), 183KB
 
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Subke, J.-A., Autor
Hahn, V.1, Autor           
Battipaglia, G., Autor
Linder, S., Autor
Buchmann, N.1, Autor           
Cotrufo, M. F., Autor
Affiliations:
1Research Group Biodiversity Ecosystem, Dr. N. Buchmann, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497759              

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Schlagwörter: Soil organic matter Stable c isotopes Forest girdling Soil CO2 efflux Microbial biomass Stable-isotope ratio Soil organic-matter Elevated CO2 Microbial biomass Root respiration Atmospheric CO2 Forest soils Carbon Ecosystem Substrate
 Zusammenfassung: The aim of our study was to identify interactions between the decomposition of aboveground litter and rhizosphere activity. The experimental approach combined the placement of labelled litter (delta(13)C=-37.9parts per thousand) with forest girdling in a 35-year-old Norway spruce stand, resulting in four different treatment combinations: GL (girdled, litter), GNL (girdled, no litter), NGL (not girdled, litter), and NGNL (not girdled, no litter). Monthly sampling of soil CO2 efflux and delta(13)C of soil respired CO2 between May and October 2002 allowed the partitioning of the flux into that derived from the labelled litter, and that derived from native soil organic matter and roots. The effect of forest girdling on soil CO2 efflux was detectable from June (girdling took place in April), and resulted in GNL fluxes to be about 50% of NGNL fluxes by late August. The presence of litter resulted in significantly increased fluxes for the first 2 months of the experiment, with significantly greater litter derived fluxes from non-girdled plots and a significant interaction between girdling and litter treatments over the same period. For NGL collars, the additional efflux was found to originate only in part from litter decomposition, but also from the decay of native soil organic matter. In GL collars, this priming effect was not significant, indicating an active role of the rhizosphere in soil priming. The results therefore indicate mutual positive feedbacks between litter decomposition and rhizosphere activity. Soil biological analysis (microbial and fungal biomass) of the organic layers indicated greatest activity below NGL collars, and we suppose that this increase indicates the mechanism of mutual positive feedback between rhizosphere activity and litter decomposition. However, elimination of fresh C input from both above- and belowground (GNL) also resulted in greater fungal abundance than for the NGNL treatment, indicating likely changes in fungal community structure (i.e. a shift from symbiotic to saprotrophic species abundance). [References: 41]

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 Datum: 2004
 Publikationsstatus: Erschienen
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 Identifikatoren: Anderer: BGC0697
DOI: 10.1007/s00442-004-1540-4
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Titel: Oecologia
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: Berlin : Springer-Verlag.
Seiten: - Band / Heft: 139 (4) Artikelnummer: - Start- / Endseite: 551 - 559 Identifikator: ISSN: 0029-8549
CoNE: https://pure.mpg.de/cone/journals/resource/1000000000265440