Turnover rate of soil biomass nitrogen in the root mat layer of pasture

A part of the soil biomass N was labelled with 15 N by applying ( 15 NH 4 ) 2 SO 4 and glucose to the surface soil of sub-plots (95 × 95 cm) in an experimental pasture which was composed of orchardgrass, tall fescue and several other grasses and maintained for 10 years as a pasture under definite ma...

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Veröffentlicht in:Soil science and plant nutrition (Tokyo) 1987-09, Vol.33 (3), p.373-386
Hauptverfasser: Okano, S. (National Grassland Research Inst., Nishinasuno, Tochigi (Japan)), Nishio, M, Sawada, Y
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container_title Soil science and plant nutrition (Tokyo)
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creator Okano, S. (National Grassland Research Inst., Nishinasuno, Tochigi (Japan))
Nishio, M
Sawada, Y
description A part of the soil biomass N was labelled with 15 N by applying ( 15 NH 4 ) 2 SO 4 and glucose to the surface soil of sub-plots (95 × 95 cm) in an experimental pasture which was composed of orchardgrass, tall fescue and several other grasses and maintained for 10 years as a pasture under definite management. The amount and turnover rate of soil biomass 15 N were determined by using the fumigation-incubation method for 828 days to assess the role of the soil biomass as a source of available N in the root mat layer. It was found that the fumigation-incubation method could be applied for the measurement of the amount of soil biomass N in the root mat layer (0-2.5 cm in depth) in spite of the presence of roots during the fumigation-incubation procedure, but not for the measurement of this parameter in the deeper layers. Flush N (Fn) in the root mat layer, which represents the amount of mineralized N increased by fumigation, was expressed by formulas Bc = 8.8 Fn and Bn = 1.8 Fn, where Bc is the soil biomass C and Bn is the soil biomass N, both of which were calculated from the biovolume determined under the microscope. After the changes of the level of soil biomass associated with the application of the substrates were no longer present, the soil biomass 15 N in the root mat layer decreased slowly. Its half-life was found to be 1.3 years, and the turnover time was assumed to be 1.9 year - 1 . The average amount of Bn throughout the whole period was 40 kg N·ha - 1 . Thus, a quantity of 21 kg N·ha - 1 ·year - 1 was considered to have been released through the soil biomass in the root mat layer. These results indicate that the soil biomass plays an important role as the source of available N by turnover at least in the root mat layer of grassland.
doi_str_mv 10.1080/00380768.1987.10557583
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It was found that the fumigation-incubation method could be applied for the measurement of the amount of soil biomass N in the root mat layer (0-2.5 cm in depth) in spite of the presence of roots during the fumigation-incubation procedure, but not for the measurement of this parameter in the deeper layers. Flush N (Fn) in the root mat layer, which represents the amount of mineralized N increased by fumigation, was expressed by formulas Bc = 8.8 Fn and Bn = 1.8 Fn, where Bc is the soil biomass C and Bn is the soil biomass N, both of which were calculated from the biovolume determined under the microscope. After the changes of the level of soil biomass associated with the application of the substrates were no longer present, the soil biomass 15 N in the root mat layer decreased slowly. Its half-life was found to be 1.3 years, and the turnover time was assumed to be 1.9 year - 1 . The average amount of Bn throughout the whole period was 40 kg N·ha - 1 . 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Soil science and plant productions</topic><topic>Biological and medical sciences</topic><topic>BIOMASA</topic><topic>BIOMASS</topic><topic>BIOMASSE</topic><topic>Chemical, physicochemical, biochemical and biological properties</topic><topic>FLORA DEL SUELO</topic><topic>FLORE DU SOL</topic><topic>fumigation-incubation method</topic><topic>Fundamental and applied biological sciences. Psychology</topic><topic>GRASSLAND SOILS</topic><topic>METABOLISME DE L'AZOTE</topic><topic>METABOLISMO DEL NITROGENO</topic><topic>N tracer</topic><topic>NITROGEN METABOLISM</topic><topic>Organic matter</topic><topic>Physics, chemistry, biochemistry and biology of agricultural and forest soils</topic><topic>soil biomass N in pasture</topic><topic>SOIL FLORA</topic><topic>Soil science</topic><topic>SOL D'HERBAGES</topic><topic>SUELO DE PRADERAS</topic><topic>turnover rate</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Okano, S. 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identifier ISSN: 0038-0768
ispartof Soil science and plant nutrition (Tokyo), 1987-09, Vol.33 (3), p.373-386
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recordid cdi_fao_agris_JP8805379
source Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals
subjects Agronomy. Soil science and plant productions
Biological and medical sciences
BIOMASA
BIOMASS
BIOMASSE
Chemical, physicochemical, biochemical and biological properties
FLORA DEL SUELO
FLORE DU SOL
fumigation-incubation method
Fundamental and applied biological sciences. Psychology
GRASSLAND SOILS
METABOLISME DE L'AZOTE
METABOLISMO DEL NITROGENO
N tracer
NITROGEN METABOLISM
Organic matter
Physics, chemistry, biochemistry and biology of agricultural and forest soils
soil biomass N in pasture
SOIL FLORA
Soil science
SOL D'HERBAGES
SUELO DE PRADERAS
turnover rate
title Turnover rate of soil biomass nitrogen in the root mat layer of pasture
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