4.5 Article

Sustainable intensification of agriculture improves soil nitrogen in the Argentinean Humid Pampas

期刊

AGRONOMY JOURNAL
卷 114, 期 4, 页码 2200-2212

出版社

WILEY
DOI: 10.1002/agj2.21063

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  1. Instituto Nacional de Tecnologia Agropecuaria [2019-PE-E2-I052-001, 2019PE-E1-I011-001, RIST-I503, PNCER 2342, PNCER022421, PNCYO 1127033]
  2. Fondo para la Investigacion Cientifica y Tecnologica PICT [PICT-2015-0392]

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In the Argentinean Humid Pampas, intensification practices such as crop rotation, cover crops, and fertilization can improve soil nitrogen balance, especially in low organic matter soils. Intensification treatments led to increased soil organic nitrogen and particulate organic nitrogen, as well as increased mineralized nitrogen.
In the Argentinean Humid Pampas, intensification practices like crop rotation, cover crops (CC), and fertilization can improve soil N balance. This study aimed to assess how intensification practices affect soil organic N (Norg), Norg in the particulate fraction (PF-Norg), and N mineralized during a short-term (7 d) anaerobic incubation (aN) in a 4-yr experiment with soybean [Glycine max (L.) Merr.]-based crop sequences. At two sites differing in initial soil organic matter (SOM), five crop sequences were evaluated: continuous soybean (Sb); continuous soybean fertilized with P and sulfur (S; Sbf); CC/PS-fertilized soybean (Sbf/CC); N-fertilized CC/PS-fertilized soybean (Sbf/CCf); NPS-fertilized crop rotation (Rot). In addition, at one site we evaluated the C and N accumulation in CC dry matter, CC inclusion effect on soil inorganic N dynamics, and C and N content in soybean grain and shoots. At Site 1 (low SOM), Norg and PF-Norg increased in intensified sequences as compared with Sb and Sbf, whereas no differences among treatments were detected at Site 2 (high SOM). Also, an increase in aN was observed in intensified treatments at both sites. At Site 2, soil sampling took place at soybean sowing and harvest during two growing seasons. At soybean sowing, Sb and Sbf presented similar to 30 kg NO3--N ha(-1) more than intensified sequences, whereas at soybean harvest this trend was the opposite. In the fallow, CC captured N, minimizing N leaching without affecting N accumulation in soybean. Our results indicate that intensification in soybean-based sequences improves soil N balances.

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