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Thresholds of target phosphorus fertility classes in European fertilizer recommendations in relation to critical soil test phosphorus values derived from the analysis of 55 European long-term field experiments
Kristin Steinfurth, Gunnar Börjesson, Pascal Denoroy, Bettina Eichler-Löbermann, Wolfgang Gans, Johannes Heyn, Juliane Hirte, Bruno Huyghebaert, Claire Jouany, Dierk Koch, Ines Merbach, Markus Mokry, Alain Mollier, Christian Morel, Kerstin Panten, Edgar Peiter, Paul R. Poulton, Thomas Reitz, Gitte Holton Rubæk, Heide Spiegel, Michael van Laak, Sabine von Tucher and Uwe Buczko Agriculture, Ecosystems & Environment 332 107926 (2022) https://doi.org/10.1016/j.agee.2022.107926
Forward new paradigms for crop mineral nutrition and fertilization towards sustainable agriculture
Gilles Lemaire, Liang Tang, Gilles Bélanger, Yan Zhu and Marie-Hélène Jeuffroy European Journal of Agronomy 125 126248 (2021) https://doi.org/10.1016/j.eja.2021.126248
Yield response to soil test phosphorus in Switzerland: Pedoclimatic drivers of critical concentrations for optimal crop yields using multilevel modelling
Critical plant phosphorus for winter wheat assessed from long-term field experiments
Mario Fontana, Gilles Bélanger, Juliane Hirte, Noura Ziadi, Saïd Elfouki, Luca Bragazza, Frank Liebisch and Sokrat Sinaj European Journal of Agronomy 126 126263 (2021) https://doi.org/10.1016/j.eja.2021.126263
Calibration of maize phosphorus status by plant-available soil P assessed by common and process-based approaches. Is it soil-specific or not?
Plants of the same place do not have the same metabolic pace: soil properties affect differently essential oil yields of plants growing wild in semiarid Mediterranean lands
Residual phosphorus availability after long-term soil application of organic waste
Camilla Lemming, Astrid Oberson, Jakob Magid, Sander Bruun, Charlotte Scheutz, Emmanuel Frossard and Lars Stoumann Jensen Agriculture, Ecosystems & Environment 270-271 65 (2019) https://doi.org/10.1016/j.agee.2018.10.009
Critical plant and soil phosphorus for wheat, maize, and rapeseed after 44 years of P fertilization
Selma Cadot, Gilles Bélanger, Noura Ziadi, Christian Morel and Sokrat Sinaj Nutrient Cycling in Agroecosystems 112(3) 417 (2018) https://doi.org/10.1007/s10705-018-9956-0
The effects of organic and mineral fertilizers on carbon sequestration, soil properties, and crop yields from a long‐term field experiment under a Swiss conventional farming system
Alexandra Maltas, Hedi Kebli, Hans Rudolf Oberholzer, Peter Weisskopf and Sokrat Sinaj Land Degradation & Development 29(4) 926 (2018) https://doi.org/10.1002/ldr.2913
Evaluation of critical nitrogen and phosphorus models for maize under full and limited irrigation conditions
Microbially-mediated P fluxes in calcareous soils as a function of water-extractable phosphate
Kimberley D. Schneider, R. Paul Voroney, Derek H. Lynch, Astrid Oberson, Emmanuel Frossard and Else K. Bünemann Soil Biology and Biochemistry 106 51 (2017) https://doi.org/10.1016/j.soilbio.2016.12.016
Similar phosphorus transfer from cover crop residues and water-soluble mineral fertilizer to soils and a subsequent crop
Effect of organic fertilizers and reduced-tillage on soil properties, crop nitrogen response and crop yield: Results of a 12-year experiment in Changins, Switzerland
Heterogeneity of soil carbon pools and fluxes in a channelized and a restored floodplain section (Thur River, Switzerland)
E. Samaritani, J. Shrestha, B. Fournier, E. Frossard, F. Gillet, C. Guenat, P. A. Niklaus, N. Pasquale, K. Tockner, E. A. D. Mitchell and J. Luster Hydrology and Earth System Sciences 15(6) 1757 (2011) https://doi.org/10.5194/hess-15-1757-2011
Long‐term changes in soil phosphorus status related to P budgets under maize monoculture and mineral P fertilization
Identification of Bacterial Groups Preferentially Associated with Mycorrhizal Roots of
Medicago truncatula
P. Offre, B. Pivato, S. Siblot, E. Gamalero, T. Corberand, P. Lemanceau and C. Mougel Applied and Environmental Microbiology 73(3) 913 (2007) https://doi.org/10.1128/AEM.02042-06
Origin and fate of phosphorus in the Seine watershed (France): Agricultural and hydrographic P budgets
Relationship between P and N Concentrations in Corn
Noura Ziadi, Gilles Bélanger, Athyna N. Cambouris, Nicolas Tremblay, Michel C. Nolin and Annie Claessens Agronomy Journal 99(3) 833 (2007) https://doi.org/10.2134/agronj2006.0199
Phosphorus management in low input stockless cropping systems: Crop and soil responses to contrasting P regimes in a 36-year experiment in southern France
Influence of Land-Use Management on Isotopically Exchangeable Phosphate in Soils from Burkina Faso
E. Compaoré, E. Frossard, S. Sinaj, J.-C. Fardeau and J.-L. Morel Communications in Soil Science and Plant Analysis 34(1-2) 201 (2003) https://doi.org/10.1081/CSS-120017426
Uptake of residual phosphate and freshly applied diammonium phosphate by Lolium perenne and Trifolium repens
Anne Gallet, René Flisch, Jean‐Pierre Ryser, Joseph Nösberger, Emmanuel Frossard and Sokrat Sinaj Journal of Plant Nutrition and Soil Science 166(5) 557 (2003) https://doi.org/10.1002/jpln.200321075
Effect of phosphate fertilization on crop yield and soil phosphorus status
Anne Gallet, René Flisch, Jean‐Pierre Ryser, Emmanuel Frossard and Sokrat Sinaj Journal of Plant Nutrition and Soil Science 166(5) 568 (2003) https://doi.org/10.1002/jpln.200321081
Water-extractable and exchangeable phosphate in Martian and carbonaceous chondrite meteorites and in planetary soil analogs
Phosphorus budget and phosphorus availability in soils under organic and conventional farming
F. Oehl, A. Oberson, H.U. Tagmann, J.M. Besson, D. Dubois, P. Mäder, H.-R. Roth and E. Frossard Nutrient Cycling in Agroecosystems 62(1) 25 (2002) https://doi.org/10.1023/A:1015195023724
Phosphorus Exchangeability and Leaching Losses from Two Grassland Soils
S. Sinaj, C. Stamm, G. S. Toor, L. M. Condron, T. Hendry, H. J. Di, K. C. Cameron and E. Frossard Journal of Environmental Quality 31(1) 319 (2002) https://doi.org/10.2134/jeq2002.3190
The Isotope Exchange Kinetic Technique: A Method to Describe the Availability of Inorganic Nutrients. Applications to K, P, S and Zn