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183. | | CARRACELAS, G.; DONOSO Ñ., G.; BECERRA V., V.; PAREDES C., M.; URIBE C., H. Visión mundial del uso del agua en el cultivo de arroz. Capítulo 22. In: Paredes C., M.; Becerra B., V.; Donoso Ñ., G. (Ed.). 100 años del cultivo de arroz en Chile: En un contexto internacional 1920 - 2020. Tomo 2. Chillán, Chile: Instituto de Investigaciones Agropecuarias, mayo 2021. p. 611-628.Biblioteca(s): INIA Treinta y Tres. |
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184. | | CARRACELAS, G.; GUILPART, N.; GRASSINI, P.; ZORRILLA DE SAN MARTÍN, G.; CASSMAN, K. Yield gap analysis of irrigated rice in Uruguay and comparison with other rice producing countries. [Resumen]. ln: Congresso Brasileiro de Arroz Irrigado, 11., 13-16 agosto, Camboriú, Brasil, 2019. 4 p.Biblioteca(s): INIA Tacuarembó. |
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185. | | CARRACELAS, G.; GRASSINI, P.; GUILPART, N.; CASSMAN, K.; ZORRILLA DE SAN MARTÍN, G. Yield gap analysis and prognosis of yield increase of irrigated rice in Uruguay. [Abstract]. In: Rice Technical Working Group, 37, 2018, Proceedings. Long Beach, California (USA): Rice Technical Working Group, 2018. p. 131-132.Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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186. | | CARRACELAS, G.; GUILPART, N.; GRASSINI, P.; CASSMAN, K.G.; ZORRILLA DE SAN MARTÍN, G. Yield gaps and yield increase of irrigated rice in Uruguay. [Presentación oral]. In: Rice Technical Working Group, 37, 2018, Proceedings. Long Beach, California (USA): Rice Technical Working Group, 2018.Biblioteca(s): INIA Tacuarembó. |
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187. | | CARRACELAS, G.; GUILPART, N.; CASSMAN, K.; GRASSINI, P.; ZORRILLA DE SAN MARTÍN, G. Yield potential and Yield gaps of irrigated rice in Uruguay and other rice producing countries. In: International Temperate Rice Conference, 6-9 de marzo, Griffith, NSW, Australia, 2017. 7 p.Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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188. | | CARRACELAS, G.; GUILPART, N.; GRASSINI, P.; CASSMAN, K.G.; ZORRILLA DE SAN MARTÍN, G. Yield potential and yield gaps of irrigated rice in Uruguay and other rice producing countries. [Presentación oral]. In: International Temperate Rice Conference, 6-9 de marzo, Griffith, NSW, Australia, 2017.Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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189. | | MOLINA, F.; BLANCO, P.H.; PÉREZ DE VIDA, F.; MARTINEZ, S.; BONNECARRERE, M.; ROSAS, J.; PEREIRA, A.; CARRACELAS, G. Parao : nueva opción productiva "Arroz (ACA); 2013, v. 15, no. 74, p. 38-40"Biblioteca(s): INIA Treinta y Tres. |
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191. | | REBOLLO, I.; SCHEFFEL, S.; BLANCO, P.H.; MOLINA, F.; MARTÍNEZ, S.; CARRACELAS, G.; PÉREZ DE VIDA, F.; ROSAS, J.E. Instituto Nacional de Investigación Agropecuaria (INIA) Rice Breeding Program Historical Dataset. [Dataset]. DRYAD Dataset, 2024. https://doi.org/10.5061/dryad.x69p8czn8 Correspondence author: Juan E. Rosas, email: jrosas@inia.org.uy -- Publication date: February 16, 2024. -- This dataset is embargoed and will be released when the associated article is published. Lists of files and downloads will become...Biblioteca(s): INIA Las Brujas. |
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192. | | MARCHESI, C.; CARRACELAS, G.; DEBALI, A.; ROVIRA, P.J.; SOARES DE LIMA, J.M.; LAGOMARSINO, X.; CUADRO, R. Sistemas de producción: rotaciones cultivos - pasturas - ganadería. Paso Farías, Artigas. ln: DÍA DE CAMPO - ARROZ, 11 FEBRERO, PASO FARÍAS, ARTIGAS; 12 FEBRERO, CINCO SAUCES, TACUAREMBÓ (UY), 2014. Día de campo arroz: Zafra 2013 - 2014. Montevideo: INIA, 2014. p. 29-31 "Instituto Nacional de Investigación Agropecuaria, Uruguay (INIA); Programa Nacional de Arroz"Biblioteca(s): INIA Tacuarembó. |
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193. | | REBOLLO, I.; SCHEFFEL, S.; BLANCO, P.H.; MOLINA, F.; MARTÍNEZ, S.; CARRACELAS, G.; AGUILAR, I.; PÉREZ DE VIDA, F.; ROSAS, J.E. Consolidating twenty-three years of historical data from an irrigated subtropical rice breeding program in Uruguay. Crop Science, 2023. https://doi.org/10.1002/csc2.20955 - [Article in Press]. Article history: First published 15 March 2023. -- Corresponding author: jrosas@inia.org.uy --Biblioteca(s): INIA Las Brujas. |
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194. | | BLANCO, P.H.; MOLINA, F.; PÉREZ DE VIDA, F.; MARTÍNEZ, S.; CARRACELAS, G.; PEREIRA, A.L.; CASTILLO, J.; SALDAIN, N.E.; VARGAS, J.; VILLALBA, M.; ESCALANTE, F.; FERREIRA, A.; SOSA, B. Nuevos cultivares de arroz para el sistema CLEARFIELD® INIA CL212 E INIA CL244. Revista INIA Uruguay, 2017, no.51, p.20-24. (Revista INIA; 51)Biblioteca(s): INIA Tacuarembó. |
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195. | | YUAN, S.; LINQUIST, B.; WILSON, L.; CASSMAN, K.; STUART, A.; PEDE, V.; MIRO, B.; SAITO, K.; AGUSTIANI, N.; ARISTYA, V.; KRISNADI, L.; ZANON, A.; HEINEMANN, A.; CARRACELAS, G.; SUBASH, N.; BRAHMANAND, P.; LI, T.; PENG, S.; GRASSINI, P. A roadmap towards sustainable intensification for a larger global rice bowl Research Square, 2021. DOI: https://doi.org/10.21203/rs.3.rs-401904/v1 Acknowledgements: We would like to thank Dr. Russell Ford (former Head of Agronomic R&D at Sunrice) for providing data for rice in Australia and Dr. P.A.J. van Oort for performing the simulations of yield potential for African countries....Biblioteca(s): INIA Tacuarembó. |
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196. | | MEUS, L. D.; SILVA, M. R. DA; RIBAS, G. G.; ZANON, A. J.; ROSSATO, I. G.; PEREIRA, V. F.; PILECCO, I. B.; RIBEIRO, B. SAN MARTIN ROLIM; SOUZA, P. M. DE; NASCIMENTO, M. DE F. DO.; POERSCH, A. H.; DUARTE JUNIOR, A. J.; QUINTERO, C. E.; CARRACELAS, G.; CARMONA, L. DE C.; STRECK, N. A. Ecofisiología del arroz buscando altos rendimientos. [Ecophysiology of rice for reaching high yield]. Santa Maria, RS (Brasil): FieldCrops, 2020. 312 p.Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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197. | | YUAN, S.; LINQUIST, B. A.; WILSON, L. T.; CASSMAN, K. G.; STUART, A. M.; PEDE, V.; SAITO, K.; AGUSTIANI, N.; ARISTYA, V. E.; KRISNADI, L. Y.; ZANON, A.J.; HEINEMANN, A. B.; CARRACELAS, G.; SUBASH, N.; BRAGMANAND, P. S.; LI, T.; PENG, S.; GRASSINI, P. Sustainable intensification for a larger global rice bowl. Nature Communications, December 2021, Article number 7163. OPEN ACCESS. doi: https://doi.org/10.1038/s41467-021-27424-z 11 p. Article history: Received: 7 April 2021; Accepted: 17 November 2021; Published online 09 December 2021.
Correspondence author: pgrassini2@unl.edu; speng@mail.hzau.edu.cnBiblioteca(s): INIA Treinta y Tres. |
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198. | | MARTÍNEZ, C.P.; TORRES, E.A.; CHATEL, M.; MOSQUERA, G.; DUITAMA, J.; ISHITANI, M.; SELVARAJ, M.; DEDICOVA, B.; TOHME, J.; GRENIER, C.; LORIEUX, M.; CRUZ, M.; BERRÍO, L.; CORREDOR, E.; ZORRILLA DE SAN MARTÍN, G.; BRESEGHELLO, F.; PEIXOTO, O.; COLOMBARI FILHO, J.M.; CASTRO, A. PEREIRA DE; LOPES, S.I. GINDRI; BARBOSA, M.; FUNCK, G.R. DALTROZZO; BLANCO, P.H.; PÉREZ DE VIDA, F.; MOLINA, F.; ROSAS, J.E.; MARTÍNEZ, S.; BONNECARRERE, V.; CARRACELAS, G.; MARIN, A.; CORREA-VICTORIA, F.; CAMARGO, I.; BRUZZONE, C.B . Rice breeding in Latin America. Plant Breeding Reviews, 2014 v.38, p. 187-277., 2014Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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Registros recuperados : 198 | |
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Registro completo
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Biblioteca (s) : |
INIA Treinta y Tres. |
Fecha actual : |
09/06/2021 |
Actualizado : |
15/06/2022 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Internacionales |
Circulación / Nivel : |
-- - -- |
Autor : |
MARTÍNEZ, S. |
Afiliación : |
SEBASTIÁN MARTÍNEZ KOPP, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay. |
Título : |
Stem rot management by nitrogen and potassium fertilization and effect on grain yield and quality of rice in Uruguay. |
Fecha de publicación : |
2021 |
Fuente / Imprenta : |
Canadian Journal of Plant Pathology, 2021, volume 43, issue 6, pages 783-793. Doi: https://doi.org/10.1080/07060661.2021.192293 |
DOI : |
10.1080/07060661.2021.192293 |
Idioma : |
Inglés |
Notas : |
Article history: Accepted 23 Apr 2021// Accepted author version posted online: 27 Apr 2021 // Published online: 27 May 2021. Correspondence: smartinez@inia.org.uy. |
Contenido : |
Stem rot (Nakataea oryzae) limits rice (Oryza sativa) production in Uruguay when there are high inoculum levels in the soil. This disease is particularly damaging in potassium (K)-deficient soils that receive excessive nitrogen (N) fertilization. Nevertheless, no data exist for the response to stem rot in modern rice cultivars with respect to the interaction between balanced N and K fertilization. The aim of this work was to evaluate the combined effect of K and N fertilization and a foliar phosphite (Phi) in reducing stem rot severity in rice to prevent significant yield losses. A 3-year field study was conducted in a rice-producing region of Uruguay to investigate the effects of: (1) K fertilization rate, 0 or based on the Mg:K ratio; (2) N fertilization rate, 0 or 140 kg ha?1 N; and (3) Phi treatment, with or without foliar Phi (1.775 kg ha?1 of K Phi, 71%), at growth stage R2-R3. While the experiment was conducted in a soil with sufficient potassium, K fertilization reduced the severity and percentage of rice tillers that were severely affected by stem rot, resulting in a mean yield increment of 2% to 18% depending on the year (mean 7.5%). Nitrogen fertilization increased stem rot severity in only 1 year, but resulted in a mean yield increment of 10% over the 3 years of the experiment. Foliar Phi applied at the late boot to panicle exertion stage did not reduce disease incidence or severity and failed to increase the total rice grain and milling yield. |
Palabras claves : |
FERTILIZATION; FUNGICIDE; NAKATAEA ORYZAE; ORYZA SATIVA; POTASSIUM PHOSPHITE; URUGUAY. |
Asunto categoría : |
-- |
Marc : |
LEADER 02378naa a2200217 a 4500 001 1062121 005 2022-06-15 008 2021 bl uuuu u00u1 u #d 024 7 $a10.1080/07060661.2021.192293$2DOI 100 1 $aMARTÍNEZ, S. 245 $aStem rot management by nitrogen and potassium fertilization and effect on grain yield and quality of rice in Uruguay.$h[electronic resource] 260 $c2021 500 $aArticle history: Accepted 23 Apr 2021// Accepted author version posted online: 27 Apr 2021 // Published online: 27 May 2021. Correspondence: smartinez@inia.org.uy. 520 $aStem rot (Nakataea oryzae) limits rice (Oryza sativa) production in Uruguay when there are high inoculum levels in the soil. This disease is particularly damaging in potassium (K)-deficient soils that receive excessive nitrogen (N) fertilization. Nevertheless, no data exist for the response to stem rot in modern rice cultivars with respect to the interaction between balanced N and K fertilization. The aim of this work was to evaluate the combined effect of K and N fertilization and a foliar phosphite (Phi) in reducing stem rot severity in rice to prevent significant yield losses. A 3-year field study was conducted in a rice-producing region of Uruguay to investigate the effects of: (1) K fertilization rate, 0 or based on the Mg:K ratio; (2) N fertilization rate, 0 or 140 kg ha?1 N; and (3) Phi treatment, with or without foliar Phi (1.775 kg ha?1 of K Phi, 71%), at growth stage R2-R3. While the experiment was conducted in a soil with sufficient potassium, K fertilization reduced the severity and percentage of rice tillers that were severely affected by stem rot, resulting in a mean yield increment of 2% to 18% depending on the year (mean 7.5%). Nitrogen fertilization increased stem rot severity in only 1 year, but resulted in a mean yield increment of 10% over the 3 years of the experiment. Foliar Phi applied at the late boot to panicle exertion stage did not reduce disease incidence or severity and failed to increase the total rice grain and milling yield. 653 $aFERTILIZATION 653 $aFUNGICIDE 653 $aNAKATAEA ORYZAE 653 $aORYZA SATIVA 653 $aPOTASSIUM PHOSPHITE 653 $aURUGUAY 773 $tCanadian Journal of Plant Pathology, 2021, volume 43, issue 6, pages 783-793. Doi: https://doi.org/10.1080/07060661.2021.192293
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