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7. | | CARNEIRO, P. C. F.; SWAROFSKY, E. C.; SOUZA, D. P. E.; CÉSAR, T. M. R.; BAGLIOLI, B.; BALDISSEROTTO, B. Ammonia-, sodium chloride-, and calcium sulfate-induced changes in the stress responses of Jundiá, Rhamdia quelen, Juveniles. Journal of the World Aquaculture Society, Baton Rouge, v. 40, n. 6, p. 810-817, dec. 2009. Biblioteca(s): Embrapa Tabuleiros Costeiros. |
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10. | | GOULART, A. M. C.; SOUZA, D. P.; SA, M. A. C. de; SANTOS JUNIOR, J. de D. G. dos; MARCHAO, R. L.; MALAQUIAS, J. V. Diversidade de nematóides em solo após 14 anos sob diferentes sistemas de manejo no cerrado. In: CONGRESSO BRASILEIRO DE NEMATOLOGIA, 30., 2012, Uberlândia. Anais... Uberlândia: UFU: ICA: SBN, 2012. p. 120-121. Biblioteca(s): Embrapa Cerrados. |
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11. | | PEREIRA, D. A.; RAMOS, M. V.; SOUZA, D. P.; PORTELA, T. C. L.; GUIMARAES, J. A.; MADEIRA, S. V. F.; FREITAS, C. D. T. Digestibility of defense proteins in latex of milkweeds by digestive proteases of Monarch butterflies, Danaus plexippus L: a potential determinant of plant-herbivore interactions. Plant Science, Limerick, v. 179, p. 348-355, 2010. Biblioteca(s): Embrapa Hortaliças. |
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12. | | SANCHES, A. C.; SOUZA, D. P. de; JESUS, F. L. F. de; MAFFEI, R. G.; MENDONÇA, F. C.; PEZZOPANE, J. R. M. Capacitive probe calibration in eutroferric red nitosol cultivated with irrigated forages. In: INOVAGRI INTERNATIONAL MEETING, 4.; CONGRESSO NACIONAL DE IRRIGAÇÃO E DRENAGEM, 26.; SIMPÓSIO BRASILEIRO DE SALINIDADE, 3., 2017, Fortaleza. Anais... Fortaleza: INOVAGRI: ABID; UFC, 2017. p. 1-10. Biblioteca(s): Embrapa Pecuária Sudeste. |
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13. | | SANCHES, A. C.; SOUZA, D. P. de; JESUS, F. L. F. de; MAFFEI, R. G.; MENDONÇA, F. C.; PEZZOPANE, J. R. M. Calibração de sonda capacitiva em nitossolo vermelho latossólico eutroférrico cultivado com forrageiras irrigadas. Irriga, v. 25, n. 1, p. 38-45, jan.-mar. 2020. Biblioteca(s): Embrapa Pecuária Sudeste. |
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16. | | SANCHES, A. C.; SOUZA, D. P. de; JESUS, F. L. F. de; MENDONÇA, F. C.; GOMES, E. P.; PEZZOPANE, J. R. M. Comparison of water consumption estimates for tropical and winter forages by FDR probes and weighing lysimeters. Semina: Ciências Agrárias, Londrina, v.40, n.3, p.1115-1126, maio/jun. 2019. Biblioteca(s): Embrapa Pecuária Sudeste. |
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17. | | SOUZA, D. P. de; SANCHES, A. C.; MAFFEI, R. G.; JESUS, F. L. F. de; MENDONÇA, F. C.; PEZZOPANE, J. R. M. Comparison of water consumption estimate for Urochloa brizantha cv. Marandu with FDR probe and weighting lysimeter. In: INOVAGRI INTERNATIONAL MEETING, 4.; CONGRESSO NACIONAL DE IRRIGAÇÃO E DRENAGEM, 26.; SIMPÓSIO BRASILEIRO DE SALINIDADE, 3., 2017, Fortaleza. Anais... Fortaleza: INOVAGRI: ABID; UFC, 2017. p. 1-10. Biblioteca(s): Embrapa Pecuária Sudeste. |
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20. | | MOURA, L. T. S.; SOUZA, D. P. M.; MENDONCA, S.; RIBEIRO, J. A. de A.; SOUSA, L. F.; RAMOS, A. T.; MAIORKA, P. C.; ARAÚJO, V. L.; MARUO, V. M. Histopathological and Reproductive Evaluation in Male Rats Fed Jatropha curcas Seed Cake with or without Alkaline Hydrolysis and Subjected to Heat Treatment. BioMed Research International, v. 2017, artigo 6123408 , 2017. Biblioteca(s): Embrapa Agroenergia. |
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Registros recuperados : 24 | |
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Registro Completo
Biblioteca(s): |
Embrapa Pecuária Sudeste. |
Data corrente: |
31/03/2022 |
Data da última atualização: |
31/03/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
SOUZA, D. P. de; MENDONÇA, F. C.; BOSI, C.; PEZZOPANE, J. R. M.; SANTOS, P. M. |
Afiliação: |
DÉBORA PANTOJO DE SOUZA, USP-ESALQ; FERNANDO CAMPOS MENDONÇA, USP-ESALQ; CRISTIAM BOSI, CNPQ; JOSE RICARDO MACEDO PEZZOPANE, CPPSE; PATRICIA MENEZES SANTOS, CPPSE. |
Título: |
APSIM-Tropical Pasture model parameterization for simulating Marandu palisade grass growth and soil water in irrigated and rainfed cut-and-carry systems. |
Ano de publicação: |
2022 |
Fonte/Imprenta: |
Grass and Forage Science, mar. 2022. |
Páginas: |
16 p. |
DOI: |
https://doi.org/10.1111/gfs.12560 |
Idioma: |
Inglês |
Conteúdo: |
Process-based models such as the Agricultural Production Systems Simulator (APSIM) can be useful to simulate pasture growth and development. This aim of the study is to parameterise the APSIM-Tropical Pasture model to simulate Marandu palisade grass (Urochloa brizantha cv. Marandu), irrigated and rainfed, under cut-and-carry management. Parameterisation was performed with experimental data collected in Piracicaba, SP, Brazil (Experiment 1: 11 growth cycles), and São Carlos, SP, Brazil (Experiment 2: 9 growth cycles). In both experiments, aboveground live biomass, leaf, stem, crown and dead material mass, specific leaf area (SLA), leaf area index (LAI) and height were assessed. In Experiment 1, soil water content was measured with a capacitance probe, at depths from 0 to 0.9 m. Calibration was performed for base temperature, light extinction coefficient and radiation use efficiency. The calibrated model proved to be accurate in simulating living biomass, leaf mass, LAI and height for all tested variables. In the irrigated system, the statistics presented values between 0.64 and 0.86 for coefficient of determination (R2), between 0.59 and 0.70 for efficiency coefficient (NSE) and between 0.88 and 0.95 for the Willmott?s agreement index (d). For these same variables, in the rainfed system, R2 values ranged from 0.70 to 0.86; NSE from 0.54 to 0.70; and average d was 0.93. The simulation of soil water content showed satisfactory results for rainfed pasture, but was less precise for the irrigated treatment. The calibration of the APSIM-Tropical Pasture model for Marandu palisade grass resulted in efficient simulations of pasture growth under cut-and-carry management. MenosProcess-based models such as the Agricultural Production Systems Simulator (APSIM) can be useful to simulate pasture growth and development. This aim of the study is to parameterise the APSIM-Tropical Pasture model to simulate Marandu palisade grass (Urochloa brizantha cv. Marandu), irrigated and rainfed, under cut-and-carry management. Parameterisation was performed with experimental data collected in Piracicaba, SP, Brazil (Experiment 1: 11 growth cycles), and São Carlos, SP, Brazil (Experiment 2: 9 growth cycles). In both experiments, aboveground live biomass, leaf, stem, crown and dead material mass, specific leaf area (SLA), leaf area index (LAI) and height were assessed. In Experiment 1, soil water content was measured with a capacitance probe, at depths from 0 to 0.9 m. Calibration was performed for base temperature, light extinction coefficient and radiation use efficiency. The calibrated model proved to be accurate in simulating living biomass, leaf mass, LAI and height for all tested variables. In the irrigated system, the statistics presented values between 0.64 and 0.86 for coefficient of determination (R2), between 0.59 and 0.70 for efficiency coefficient (NSE) and between 0.88 and 0.95 for the Willmott?s agreement index (d). For these same variables, in the rainfed system, R2 values ranged from 0.70 to 0.86; NSE from 0.54 to 0.70; and average d was 0.93. The simulation of soil water content showed satisfactory results for rainfed pasture, but was less precise f... Mostrar Tudo |
Palavras-Chave: |
Crop model; Soil moisture. |
Thesaurus NAL: |
Forage; Irrigation; Urochloa brizantha. |
Categoria do assunto: |
F Plantas e Produtos de Origem Vegetal |
Marc: |
LEADER 02471naa a2200253 a 4500 001 2141651 005 2022-03-31 008 2022 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1111/gfs.12560$2DOI 100 1 $aSOUZA, D. P. de 245 $aAPSIM-Tropical Pasture model parameterization for simulating Marandu palisade grass growth and soil water in irrigated and rainfed cut-and-carry systems.$h[electronic resource] 260 $c2022 300 $a16 p. 520 $aProcess-based models such as the Agricultural Production Systems Simulator (APSIM) can be useful to simulate pasture growth and development. This aim of the study is to parameterise the APSIM-Tropical Pasture model to simulate Marandu palisade grass (Urochloa brizantha cv. Marandu), irrigated and rainfed, under cut-and-carry management. Parameterisation was performed with experimental data collected in Piracicaba, SP, Brazil (Experiment 1: 11 growth cycles), and São Carlos, SP, Brazil (Experiment 2: 9 growth cycles). In both experiments, aboveground live biomass, leaf, stem, crown and dead material mass, specific leaf area (SLA), leaf area index (LAI) and height were assessed. In Experiment 1, soil water content was measured with a capacitance probe, at depths from 0 to 0.9 m. Calibration was performed for base temperature, light extinction coefficient and radiation use efficiency. The calibrated model proved to be accurate in simulating living biomass, leaf mass, LAI and height for all tested variables. In the irrigated system, the statistics presented values between 0.64 and 0.86 for coefficient of determination (R2), between 0.59 and 0.70 for efficiency coefficient (NSE) and between 0.88 and 0.95 for the Willmott?s agreement index (d). For these same variables, in the rainfed system, R2 values ranged from 0.70 to 0.86; NSE from 0.54 to 0.70; and average d was 0.93. The simulation of soil water content showed satisfactory results for rainfed pasture, but was less precise for the irrigated treatment. The calibration of the APSIM-Tropical Pasture model for Marandu palisade grass resulted in efficient simulations of pasture growth under cut-and-carry management. 650 $aForage 650 $aIrrigation 650 $aUrochloa brizantha 653 $aCrop model 653 $aSoil moisture 700 1 $aMENDONÇA, F. C. 700 1 $aBOSI, C. 700 1 $aPEZZOPANE, J. R. M. 700 1 $aSANTOS, P. M. 773 $tGrass and Forage Science, mar. 2022.
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