Articles | Volume 10, issue 2
https://doi.org/10.5194/bg-10-733-2013
https://doi.org/10.5194/bg-10-733-2013
Research article
 | 
04 Feb 2013
Research article |  | 04 Feb 2013

Phosphorus status of soils from contrasting forested ecosystems in southwestern Siberia: effects of microbiological and physicochemical properties

D. L. Achat, M. R. Bakker, L. Augusto, D. Derrien, N. Gallegos, N. Lashchinskiy, S. Milin, P. Nikitich, T. Raudina, O. Rusalimova, B. Zeller, and P. Barsukov

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Cited articles

Achat, D. L., Augusto, L., Morel, C., and Bakker, M. R.: Predicting available phosphate ions from physical-chemical soil properties in acidic sandy soils under pine forests, J. Soils Sediments, 11, 452–466, 2011.
Achat, D. L., Bakker, M. R., Augusto, L., Saur, E., Dousseron, L., and Morel, C.: Evaluation of the phosphorus status of P-deficient podzols in temperate pine stands: combining isotopic dilution and extraction methods, Biogeochemistry, 92, 183–200, 2009.
Achat, D.L., Morel, C., Bakker, M. R., Augusto, L., Pellerin, S., Gallet-Budynek, A., and Gonzalez, M.: Assessing turnover of microbial biomass phosphorus: combination of an isotopic dilution method with a mass balance model, Soil Biol. Biochem., 42, 2231–2240, 2010.
Aerts, R.: The freezer defrosting: global warming and litter decomposition rates in cold biomes, J.Ecol., 94, 713–724, 2006.
AFNOR, Qualité des sols, in: Recueil de normes, Vol. 1., AFNOR, Paris, 1999.
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