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Registros recuperados : 106 | |
81. | | MÉNDEZ, R.; DEAMBROSI, E.; CASTILLO, J.; MARTÍNEZ, S.; SOSA, B.; CASALES, L. Manejo de suelos y nutrición vegetal. Respuesta del cultivar Parao a densidades de siembra y dosis de nitrógeno en tres ambientes In: PROGRAMA NACIONAL PRODUCCIÓN DE ARROZ; JORNADA ANUAL ARROZ-SOJA, 2013, INIA TREINTA Y TRES, UY. Arroz-soja: resultados experimentales 2012-2013. Treinta y Tres: INIA, 2013. cap. 3, p. 1-3 (INIA Serie Actividades de Difusión ; 713)Biblioteca(s): INIA Tacuarembó. |
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83. | | CASTILLO, J.; KIRK, G. J. D.; RIVERO M. J.; HAEFELE S. M. Regional differences in nitrogen balance and nitrogen use efficiency in the rice-livestock system of Uruguay. Original Research article. Frontiers in Sustainable Food Systems, 2023, Volume 72, Article 1104229. OPEN ACCESS. doi: https://doi.org/10.3389/fsufs.2023.1104229 Article history: Received 21 November 2022, Accepted 12 January 2023, Published 14 February 2023. -- Article Gold Open Access -- Edited by: Sudhakar Srivastava, Banaras Hindu University, India. Reviewed by: Arvind Kumar Dubey, University...Biblioteca(s): INIA Las Brujas. |
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86. | | CASTILLO, J.; MACEDO, I.; SILVA, L.; CASTILLO, G.; TERRA, J.A. Productividad y eficiencia de uso del N del cultivo de arroz sobre diferentes antecesores invernales y dosis de N. In: Terra, J. A.; Martínez, S.; Saravia, H.; Mesones, B.; Álvarez, O. (Eds.) Arroz 2020. Montevideo (UY): INIA, 2020. p. 64-66. (INIA Serie Técnica; 257)Biblioteca(s): INIA Treinta y Tres. |
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87. | | MACEDO, I.; CASTILLO, J.; RICCETTO, S.; BORDAGORRI, A.; TERRA, J.A. Productividad y eficiencia del uso del N en el cultivo de arroz en rotaciones de intensidad variable. In: Terra, J. A.; Martínez, S.; Saravia, H.; Mesones, B.; Álvarez, O. (Eds.) Arroz 2020. Montevideo (UY): INIA, 2020. p. 109-112. (INIA Serie Técnica; 257)Biblioteca(s): INIA Treinta y Tres. |
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88. | | MÉNDEZ, R.; DEAMBROSI, E.; CASTILLO, J.; MARTÍNEZ, S.; SOSA, B.; CASALES, L. Respuesta del cultivar Parao a la aplicación de nitrógeno y a su fraccionamiento In: PROGRAMA NACIONAL PRODUCCIÓN DE ARROZ; JORNADA ANUAL ARROZ-SOJA, 2013, INIA TREINTA Y TRES, UY. Arroz-soja: resultados experimentales 2012-2013. Treinta y Tres: INIA, 2013. cap. 3, p. 4-6 (INIA Serie Actividades de Difusión ; 713)Biblioteca(s): INIA Tacuarembó. |
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89. | | MÉNDEZ, R.; DEAMBROSI, E.; CASTILLO, J.; MARTINEZ, S.; SOSA, B.; CASALES, L. Respuesta del cultivar Parao a densidades de siembra y dosis de nitrógeno en tres ambientes. In: PROGRAMA NACIONAL PRODUCCIÓN DE ARROZ; JORNADA ANUAL ARROZ-SOJA, 2013, INIA TREINTA Y TRES, UY. Arroz-soja: resultados experimentales 2012-2013. Treinta y Tres: INIA, 2013. cap. 3, p. 1-3 (INIA Serie Actividades de Difusión; 713)Biblioteca(s): INIA Treinta y Tres. |
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90. | | MÉNDEZ, R.; DEAMBROSI, E.; CASTILLO, J.; LAGO, F.; LAUZ, A.; MAGALLANES, A. Respuesta de Parao a densidades de siembra y dosis de nitrógeno. In: PROGRAMA NACIONAL PRODUCCIÓN DE ARROZ; JORNADA ANUAL ARROZ, 2012, INIA TREINTA Y TRES, UY. Arroz: resultados experimentales 2011-2012. Treinta y Tres: INIA, 2012. Cap. 3 p.20-24 (INIA Serie Actividades de Difusión; 686)Biblioteca(s): INIA Treinta y Tres. |
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93. | | HERNÁNDEZ, A.; ROVIRA, G.; BORDAGORRI, P.; ESCALANTE, F.; CASTILLO, J.; MARTÍNEZ, S.; MACEDO, I.; TERRA, J.A. Brechas de rendimiento del cultivo de arroz sobre distinto antecesor de verano para dos variedades de alto potencial. In: Zorrilla, G.; Martínez, S.; Terra, J. A. Saravia, H. (Eds.) Arroz 2018. Montevideo (UY): INIA, 2018. p. 81-83. (INIA Serie Técnica; 246)Biblioteca(s): INIA Treinta y Tres. |
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94. | | MENDEZ, R.; DEAMBROSI, E.; CASTILLO, J.; MARTINEZ, S.; LAGO, F.; LAUZ, A.; MAGALLANES, A.; SOSA, B.; CASALES, L. Densidad de siembra y dosis de nitrógeno para el cultivar Parao de alto rendimiento. Revista Arroz, 2014, vol. 16, no. 78, p.13-17Biblioteca(s): INIA Treinta y Tres. |
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95. | | MÁRQUEZ-MARTÍN, B.; MAESO, D.; MARTÍNEZ-AYALA, A.; BERNAL, R.; FEDERICI, M.; VINCELLI, P.; NAVAS-CASTILLO, J. Diverse population of a new bipartite begomovirus infecting tomato crops in Uruguay. Archives of Virology, 2012, v.157, no.6, p.1137-1142. Article history: Received: 5 October 2011 / Accepted: 17 January 2012 / Published online: 1 March 2012.
The nucleotide sequences reported in this work are available in the GenBank database under the accession numbers JN381813 to...Biblioteca(s): INIA Las Brujas. |
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97. | | MACEDO, I.; CASTILLO, J.; SALDAIN, N.E.; MARTÍNEZ, S.; ZORRILLA DE SAN MARTÍN, G.; TERRA, J.A. Rice yield under contrasting rice rotations systems in a temperate zone of South America. In: International Temperate Rice Conference, 6-9 de marzo, Griffith, NSW, Australia, 2017. 3 p.Biblioteca(s): INIA Treinta y Tres. |
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98. | | MACEDO, I.; CASTILLO, J.; SALDAIN, N.E.; MARTÍNEZ, S.; AYALA, W.; SERRON, N.; BORDAGORRI, P.; HERNANDEZ, J.; TERRA, J.A. Rotaciones arroceras: resultados productivos en las primeras cuatro zafras. ln: JORNADA ANUAL ARROZ, 2016, INIA TREINTA Y TRES, TREINTA Y TRES, UY. Arroz: resultados experimentales 2015-2016. Treinta y Tres, (Uruguay): INIA, 2016. cap. 4, p. 1-3. (INIA Serie Actividades de Difusión; 765) Acceso a publicación y presentación oral.Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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99. | | MACEDO, I.; CASTILLO, J.; SALDAIN, N.E.; MARTÍNEZ, S.; BERMÚDEZ, R.; AYALA, W.; HERNANDEZ, J.; TERRA, J.A. Rotaciones arroceras: resultados productivos en las primeras tres zafras. ln: [JORNADA ANUAL] ARROZ-SOJA, 2015, Treinta y Tres, UY. Resultados experimentales 2014-2015. Treinta y Tres: INIA, 2015. Cap. 6, p.1-3. (INIA Serie Actividades de Difusión; 748)Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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100. | | CASTILLO, J.; KIRK, G.J.; RIVERO, M.J.; FABINI, G.; TERRA, J.A.; AYALA, W.; ROEL, A.; IRISARRI, P.; HAEFELE, S.M. Measured and modeled nitrogen balances in lowland rice-pasture rotations in temperate South America. Frontiers in Sustainable Food Systems, 2023, volume 7, article 1103118. OPEN ACCESS. doi: https://doi.org/10.3389/fsufs.2023.1103118 Article history: Received 20 November 2022, Accepted 13 March 2023, Published 03 April 2023. -- Correspondence author: Jesús Castillo, jcastillo@inia.org.uy -- Edited by: Sudhakar Srivastava (Banaras Hindu University, India). -- Reviewed...Biblioteca(s): INIA Las Brujas. |
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Registros recuperados : 106 | |
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| Acceso al texto completo restringido a Biblioteca INIA Treinta y Tres. Por información adicional contacte bibliott@inia.org.uy. |
Registro completo
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Biblioteca (s) : |
INIA Treinta y Tres. |
Fecha actual : |
16/08/2021 |
Actualizado : |
19/08/2021 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Internacionales |
Circulación / Nivel : |
-- - -- |
Autor : |
MACEDO, I.; PRAVIA, V.; CASTILLO, J.; TERRA, J.A. |
Afiliación : |
IGNACIO MACEDO YAPOR, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; MARIA VIRGINIA PRAVIA NIN, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; EMILSE JESUS CASTILLO VELAZQUEZ, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; JOSÉ ALFREDO TERRA FERNÁNDEZ, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay. |
Título : |
Soil organic matter in physical fractions after intensification of irrigated rice-pasture rotation systems. |
Fecha de publicación : |
2021 |
Fuente / Imprenta : |
Soil and Tillage Research, September 2021, Volume 213, Article number 105160, Pages 1-10. Doi: https://doi.org/10.1016/j.still.2021.105160 |
DOI : |
10.1016/j.still.2021.105160 |
Idioma : |
Inglés |
Notas : |
Article history: Received 3 March 2021, Revised 26 July 2021, Accepted 30 July 2021, Available online 12 August 2021.
E-mail address: macedoyapor@gmail.com (I. Macedo). |
Contenido : |
Crop-pasture systems improve soil quality, but their intensification through the increase of the frequency of annual crops may reduce it. We evaluated the impacts of six no-till rice rotations systems on soil quality after five years in a field scale long term experiment established on a site with a 30 years old stabilized rice-pasture rotation. Rotations included: continuous rice (ContRc); rice-soybean (Rc-Sy); rice-soybean-rice-sorghum (Rc-Sy-Sg); rice-soybean-pasture (Rc-Sy-Past); and rice-pasture, with short (Rc-SPast) and long-term pastures (Rc-LPast). Cover crops were included in winter between cash crops. All rotation phases coexisted and were replicated three times in space. Soil quality indicators included: soil organic carbon and total nitrogen contents in bulk soil (TSOC and TN, respectively) and in particulate (>53 μm, POM-C and POM-N) and mineral associated soil organic matter fractions (<53 μm, MAOM-C and MAOM-N). Soil cores were collected at 0−5 cm and 5−15 cm soils depths (results presented at 0−5 and 0−15 cm depths). Additionally, soil samples were taken up to 60 cm soil depth every 15 cm for TSOC and TN. After five years, no differences were observed in TSOC (29.3 Mg C ha−1) or TN (3.16 Mg N ha−1) between rotations in the first 0−15 cm as well as for each layer and in the aggregated 0−60 cm of soil. Neither POM-C nor POM-N contents were different between treatments that had perennial pastures in the rotation. However, Rc-LPast had 18 and 19 % greater POM-C and POM-N respectively than the average of Rc-Sy and Rc-Sy-Sg, (6.06 Mg C ha−1 and 0.48 Mg N ha−1, 0−15 cm depth). Meanwhile, the POM-C represented 23.6 % of TSOC in Rc-LPast, but in rotations that replaced pastures (Rc-Sy and Rc-Sy-Sg) represented only 20 %. For soils in temperate zones, under a stable rice-pasture rotation, there are intensification alternatives which preserved TSOC in the midterm. However, the reduction in the particulate fractions observed in the rice rotations that substituted perennial pastures with other crops, suggests that TSOC may be more vulnerable to losses in the long term. MenosCrop-pasture systems improve soil quality, but their intensification through the increase of the frequency of annual crops may reduce it. We evaluated the impacts of six no-till rice rotations systems on soil quality after five years in a field scale long term experiment established on a site with a 30 years old stabilized rice-pasture rotation. Rotations included: continuous rice (ContRc); rice-soybean (Rc-Sy); rice-soybean-rice-sorghum (Rc-Sy-Sg); rice-soybean-pasture (Rc-Sy-Past); and rice-pasture, with short (Rc-SPast) and long-term pastures (Rc-LPast). Cover crops were included in winter between cash crops. All rotation phases coexisted and were replicated three times in space. Soil quality indicators included: soil organic carbon and total nitrogen contents in bulk soil (TSOC and TN, respectively) and in particulate (>53 μm, POM-C and POM-N) and mineral associated soil organic matter fractions (<53 μm, MAOM-C and MAOM-N). Soil cores were collected at 0−5 cm and 5−15 cm soils depths (results presented at 0−5 and 0−15 cm depths). Additionally, soil samples were taken up to 60 cm soil depth every 15 cm for TSOC and TN. After five years, no differences were observed in TSOC (29.3 Mg C ha−1) or TN (3.16 Mg N ha−1) between rotations in the first 0−15 cm as well as for each layer and in the aggregated 0−60 cm of soil. Neither POM-C nor POM-N contents were different between treatments that had perennial pastures in the ... Presentar Todo |
Palabras claves : |
ARROZ; FLOODED SOILS; RICE; ROTACIONES; ROTACIONES ARROZ-PASTURAS; SOIL CARBON SEQUESTRATION; SOIL HEALTH; SUSTAINABLE INTENSIFICATION; URUGUAY. |
Asunto categoría : |
P30 Ciencia del suelo y manejo del suelo |
Marc : |
LEADER 03272naa a2200289 a 4500 001 1062350 005 2021-08-19 008 2021 bl uuuu u00u1 u #d 024 7 $a10.1016/j.still.2021.105160$2DOI 100 1 $aMACEDO, I. 245 $aSoil organic matter in physical fractions after intensification of irrigated rice-pasture rotation systems.$h[electronic resource] 260 $c2021 500 $aArticle history: Received 3 March 2021, Revised 26 July 2021, Accepted 30 July 2021, Available online 12 August 2021. E-mail address: macedoyapor@gmail.com (I. Macedo). 520 $aCrop-pasture systems improve soil quality, but their intensification through the increase of the frequency of annual crops may reduce it. We evaluated the impacts of six no-till rice rotations systems on soil quality after five years in a field scale long term experiment established on a site with a 30 years old stabilized rice-pasture rotation. Rotations included: continuous rice (ContRc); rice-soybean (Rc-Sy); rice-soybean-rice-sorghum (Rc-Sy-Sg); rice-soybean-pasture (Rc-Sy-Past); and rice-pasture, with short (Rc-SPast) and long-term pastures (Rc-LPast). Cover crops were included in winter between cash crops. All rotation phases coexisted and were replicated three times in space. Soil quality indicators included: soil organic carbon and total nitrogen contents in bulk soil (TSOC and TN, respectively) and in particulate (>53 μm, POM-C and POM-N) and mineral associated soil organic matter fractions (<53 μm, MAOM-C and MAOM-N). Soil cores were collected at 0−5 cm and 5−15 cm soils depths (results presented at 0−5 and 0−15 cm depths). Additionally, soil samples were taken up to 60 cm soil depth every 15 cm for TSOC and TN. After five years, no differences were observed in TSOC (29.3 Mg C ha−1) or TN (3.16 Mg N ha−1) between rotations in the first 0−15 cm as well as for each layer and in the aggregated 0−60 cm of soil. Neither POM-C nor POM-N contents were different between treatments that had perennial pastures in the rotation. However, Rc-LPast had 18 and 19 % greater POM-C and POM-N respectively than the average of Rc-Sy and Rc-Sy-Sg, (6.06 Mg C ha−1 and 0.48 Mg N ha−1, 0−15 cm depth). Meanwhile, the POM-C represented 23.6 % of TSOC in Rc-LPast, but in rotations that replaced pastures (Rc-Sy and Rc-Sy-Sg) represented only 20 %. For soils in temperate zones, under a stable rice-pasture rotation, there are intensification alternatives which preserved TSOC in the midterm. However, the reduction in the particulate fractions observed in the rice rotations that substituted perennial pastures with other crops, suggests that TSOC may be more vulnerable to losses in the long term. 653 $aARROZ 653 $aFLOODED SOILS 653 $aRICE 653 $aROTACIONES 653 $aROTACIONES ARROZ-PASTURAS 653 $aSOIL CARBON SEQUESTRATION 653 $aSOIL HEALTH 653 $aSUSTAINABLE INTENSIFICATION 653 $aURUGUAY 700 1 $aPRAVIA, V. 700 1 $aCASTILLO, J. 700 1 $aTERRA, J.A. 773 $tSoil and Tillage Research, September 2021, Volume 213, Article number 105160, Pages 1-10. Doi: https://doi.org/10.1016/j.still.2021.105160
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