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Improving irrigation, crop, and soil management for sustainable soybean production in Southern Brazilian lowlands
Giacomeli, Robson; Carlesso, Reimar; Petry, Mirta Teresinha; Chechi, Leonardo; Beutler, Amauri Nelson; Fulaneti, Fernando Sintra; Ferrazza, Cassio Miguel.
Afiliação
  • Giacomeli, Robson; Universidade Federal do Pampa. Itaqui. BR
  • Carlesso, Reimar; Universidade Federal de Santa Maria. Centro de Ciências Rurais. Depto. de Engenharia Rural. Santa Maria. BR
  • Petry, Mirta Teresinha; Universidade Federal de Santa Maria. Centro de Ciências Rurais. Depto. de Engenharia Rural. Santa Maria. BR
  • Chechi, Leonardo; Universidade Federal de Santa Maria. Centro de Ciências Rurais. Depto. de Engenharia Rural. Santa Maria. BR
  • Beutler, Amauri Nelson; Universidade Federal do Pampa. Itaqui. BR
  • Fulaneti, Fernando Sintra; Universidade Federal do Pampa. Itaqui. BR
  • Ferrazza, Cassio Miguel; Universidade Federal de Santa Maria. Centro de Ciências Rurais. Depto. de Engenharia Rural. Santa Maria. BR
Sci. agric ; 79(6): e20210115, 2022. tab, graf, ilus
Article em En | VETINDEX | ID: biblio-1352260
Biblioteca responsável: BR68.1
ABSTRACT
Lowlands have been cultivated with irrigated rice (Oryza sativa) in a monoculture cropping system for more than a century in southern Brazil. Shallow topsoil with high bulk density and deficient water infiltration favors the of production paddy rice; however, this condition does not favor species non-tolerant to flooding or oxygen restriction. Thus, soil and irrigation management may be necessary to raise the rice-soybean (Glycine max) rotation systems to sustainable levels. We carried out a two-year field experiment to assess the effects of irrigation treatments and soil management on soil physical properties, soybean growth, and grain yield in lowland systems. The experiment comprised a randomized block design with two factors and three replications. The main factor comprised the following irrigation treatments sprinkler; surface, and rainfed. Four soil managements composed the second factor conventional tillage (CT), no-tillage (NT), conventional tillage with raised-seedbed, and no-tillage with raised-seedbed. Soil physical properties, soil penetration resistance, crop parameters, grain yield and water productivity were evaluated. CT increased the soil penetration resistance near the soil surface layer. The highest soil bulk density at the 0.05-0.10 m layer in the CT reduces grain yield in rainfed soybean compared to NT. Supplementary irrigation increased soybean yield of about 36 % in years of uneven rainfall distribution. Sprinkler irrigation resulted in higher irrigated water productivity (90 %) compared to surface irrigation, contributing to a more sustainable increase in grain yield. Crop rotation in a no-tillage cropping scheme could improve the sustainability of diversified agriculture in lowlands.
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Texto completo: 1 Base de dados: VETINDEX Idioma: En Revista: Sci. agric Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: VETINDEX Idioma: En Revista: Sci. agric Ano de publicação: 2022 Tipo de documento: Article