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Gradients in N‐cycling attributes along forestry and agricultural land‐use systems are indicative of soil capacity for N supply
Authors:D S L FAGOTTI  M Y H MIYAUCHI  A G OLIVEIRA  I A SANTINONI  D N EBERHARDT  A NIMTZ  R A RIBEIRO  A M PAULA  C A S QUEIROZ  G ANDRADE  W ZANGARO  M A NOGUEIRA
Institution:1. Universidade Estadual de Londrina, C.Postal 6001, CEP 86051‐990, Londrina, PR, Brazil;2. Universidade de S?o Paulo, C. Postal 09, CEP 13418‐900, Piracicaba, SP, Brazil
Abstract:Indicators of soil quality associated with N‐cycling were assessed under different land‐use systems (native forest – NAT, reforestation with Araucaria angustifolia or Pinus taeda and agricultural use – AGR) to appraise the effects on the soil potential for N supply. The soil total N ranged from 2 to 4 g/kg (AGR and NAT, respectively), and the microbial biomass N ranged from 80 to 250 mg/kg, being higher in NAT and A. angustifolia, and lower in P. taeda and AGR sites. Activities of asparaginase (ca. 50–200 mg NH4+‐N/kg per h), glutaminase (ca. 200–800 mg NH4+‐N/kg per h) and urease (ca. 80–200 mg NH4+‐N/kg/h) were also more intense in the NAT and A. angustifolia‐reforested soils, indicating greater capacity for N mineralization. The NAT and AGR soils showed the highest and the lowest ammonification rate, respectively (ca. 1 and 0.4 mg NH4+‐N/kg per day), but the inverse for nitrification rate (ca. 12 and 26%), indicating a low capacity for N supply, in addition to higher risks of N losses in the AGR soil. A multivariate analysis indicated more similarity between NAT and A. angustifolia‐reforested sites, whilst the AGR soil was different and associated with a higher nitrification rate. In general, reforestation with the native species A. angustifolia had less impact than reforestation with the exogenous species P. taeda, considering the soil capacity for N supply. However, AGR use caused more changes, generally decrease in indicators of N‐cycling, showing a negative soil management effect on the sustainability of this agroecosystem.
Keywords:Ammonification  Araucaria angustifolia  microbial biomass nitrogen  nitrification  Pinus taeda  soil enzymes
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