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  4. Effects of Land Use Change on P Bioavailability Determined by Chemical Fractionation and 31p-Nmr Spectroscopy in a Nothofagus Forest and Adjacent Grassland
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Effects of Land Use Change on P Bioavailability Determined by Chemical Fractionation and 31p-Nmr Spectroscopy in a Nothofagus Forest and Adjacent Grassland

Journal
Journal of Soil Science and Plant Nutrition
ISSN
0718-9508
Date Issued
2015
Author(s)
Escudey-Castro, A  
Escudey-Castro, A  
DOI
https://doi.org/10.4067/S0718-95162015005000074
Abstract
The aim of this study was to compare P bioavailability in a Nothofagus rainforest Andisol (FS) and an adjacent clear-cut grassland soil (GS) in southern Chile to evaluate the effects of land use change on P chemical forms determined by chemical fractionation and 31P-NMR spectroscopy. Total phosphorus (P), Olsen P, microbial P, different soil P fractions (determined using a modified Hedley procedure),31P-NMR spectroscopy results, acid phosphatase (P-ase) activity, pH and organic C were analyzed and compared. Forest samples were collected from the mineral soil at a depth of 2-20 cm and were compared with those collected from grassland soil at the same depth. Total P ranged from 2028 mg kg-1 (FS) to 2157 mg kg-1 (GL) and total organic P ranged from 829 mg kg-1 (FS) to 1176 mg kg-1 (GL). On the contrary, Olsen P, microbial P, labile P and P-ase activity were higher in the evergreen forest soil than in the grassland, with the predominance of the moderately labile (NaOH-Po) fraction, which ranged from 668 to 720 mg kg-1 in both soils. Phosphorus was mainly present in monoester-P form in the NMR extract in both soils (67% on average). Other31P-NMR signals were identified as C2-myoinositol phosphate and scyllo-inositol hexakisphosphate. The results suggest that land use change from forest to grassland will reduce P bioavailability and P-ase activity. © 2015, Sociedad Chilena de la Ciencia del Suelo. All rights reserved.
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