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Registros recuperados : 273 | |
241. | | ROSAS, J.E.; BONNECARRERE, V.; MARTÍNEZ, S.; PÉREZ DE VIDA, F.; BLANCO, P.H.; QUERO, G.; FERNANDEZ, S.; GARAYCOCHEA, S.; JANNINK, J.L.; GUTIÉRREZ, L. GWAS for resistance to stem rot and aggregated sheath spot in advanced temperate rice (Oryza sativa L.) germplasm. [Poster]. In: International Conference on Quantitative Genetics, (5o., 2016, Madison)Biblioteca(s): INIA Treinta y Tres. |
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242. | | ROSAS, J.E.; MARTÍNEZ, S.; BONNECARRERE, V.; PÉREZ DE VIDA, F.; BLANCO, P.H.; FERNANDEZ, S.; GARAYCOCHEA, S.; JANNINK, J.L.; GUTIERREZ, L. GWAS for resistance to stem rot and aggregated sheath spot of rice advanced breeding lines. [Poster]. In: International Symposium on Rice Functional Genomics, (14o., 2016, Montpellier),Biblioteca(s): INIA Treinta y Tres. |
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243. | | ROSAS, J.E.; MARTÍNEZ, S.; BONNECARRERE, V.; BLANCO, P.H.; PÉREZ DE VIDA, F.; GERMAN, S.; JANNINK, J.L.; GUTIÉRREZ, L. Herramientas bioestadísticas para mejoramiento de la resistencia genética a enfermedades del tallo en arroz. In: INIA (Instituto Nacional de Investigación Agropecuaria); INIA Las Brujas; Biotecnología. Jornada de Agrobiotecnología, X. Encuentro Nacional de REDBIO, II. Jornada técnica. Las Brujas, Canelones (UY): INIA, 2017. p. 9-12. (Serie Actividades de Difusión; 780)Biblioteca(s): INIA Las Brujas. |
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244. | | QUERO, G.; GUTIÉRREZ, L.; FERNANDEZ, S.; BLANCO, P.H.; PÉREZ DE VIDA, F.; GARAYCOCHEA, S.; MONTEVERDE, E.; MCCOUCH, M.; ROSAS, J.E.; BERBERIAN, N.; SIMONDIS, S.; BONNECARRERE, V. Genome wide association (GWAS) discovers rice granin quality genes in the starch metabolism, grain size and cell wall synthesis pathways. MV 24 - COMUNICACIONES LIBRES - MV. MEJORAMIENTO VEGETAL In: JOURNAL OF BASIC & APPLIED GENETICS, 2016, Vol.27, Iss. 1 (Supp.). XVI LATIN AMERICAN CONGRESS OF GENETICS, IV CONGRESS OF THE URUGUAYAN SOCIETY OF GENETICS, XLIX ANNUAL MEETING OF THE GENETICS SOCIETY OF CHILE, XLV ARGENTINE CONGRESS OF GENETICS, 9-12 October 2016. PROCEEDINGS. Montevideo (Uruguay): SAG, 2016. p. 292Biblioteca(s): INIA Las Brujas. |
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245. | | ROSAS, J.E.; BONNECARRERE, V.; MARTÍNEZ, S.; PÉREZ DE VIDA, F.; BLANCO, P.H.; QUERO, G.; FERNANDEZ, S.; GARAYCOCHEA, S.; JANNINK, J.; GUTIERREZ, L. Mapeo asociativo de la resistencia a enfermedades del tallo y la vaina en germoplasma avanzado de arroz. 2 - SIMPOSIOS "MEJORAMIENTO GENÉTICO POR RESISTENCIA A ENFERMEDADES E INTERACCIONES PLANTA-PATÓGENO" In: JOURNAL OF BASIC & APPLIED GENETICS, 2016, Vol.27, Iss. 1 (Supp.). XVI LATIN AMERICAN CONGRESS OF GENETICS, IV CONGRESS OF THE URUGUAYAN SOCIETY OF GENETICS, XLIX ANNUAL MEETING OF THE GENETICS SOCIETY OF CHILE, XLV ARGENTINE CONGRESS OF GENETICS, 9-12 October 2016. PROCEEDINGS. Montevideo (Uruguay): SAG, 2016. p. 61Biblioteca(s): INIA Las Brujas. |
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246. | | BONNECARRERE, M.; QUERO, G.; ROSAS, J.E.; FERNANDEZ, S.; GARAYCOCHEA, S.; MARTÍNEZ, S.; PÉREZ DE VIDA, F.; BLANCO, P.H.; BERBERIAN, N.; GUTIERREZ, L. Marcadores moleculares identificados en el Proyecto "Mapeo asociativo para asistir el mejoramiento genético de arroz". In: JORNADA TÉCNICA, VIII JORNADA DE AGROBIOTECNOLOGÍA. INIA LAS BRUJAS, 30 DE OCTUBRE DE 2014. UNIDAD DE BIOTECNOLOGÍA. Montevideo (Uruguay): INIA, 2014. 5-6 (Actividades de Difusión; 741)Biblioteca(s): INIA Las Brujas. |
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247. | | BONNECARRERE, V.; QUERO, G.; ROSAS, J.; FERNÁNDEZ, S.; GARAYCOCHEA, S.; MARTINEZ, S.; PÉREZ DE VIDA, F.; BLANCO, P.H.; BERDERIAN, N.; GUTIERREZ, L. Marcadores moleculares identificados en el proyecto mapeo asociativo para asistir el mejoramiento por calidad del grano. En: INIA TREINTA Y TRES. Arroz-Soja:Resultados Experimentales 2013-2014. Treinta y Tres (UY): INIA Treinta y Tres. cap. 6. p. 24-26 (INIA Serie Actividades de Difusión; 735)Biblioteca(s): INIA Treinta y Tres. |
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248. | | LÓPEZ RODRÍGUEZ, M.; ARCIA, P.; PÉREZ DE VIDA, F.; TRESSO, G.; FIGUEREDO, V.; LUZARDO, C.; GONNET, D.; URAGA, R.; SANGUINETTI, M.N.; BILLIRIS, A. Pautas y criterios para el manejo industrial de numerosas variedades: aspectos de calidad física y sensorial. In: Terra, J. A.; Martínez, S.; Saravia, H.; Mesones, B.; Álvarez, O. (Eds.) Arroz 2020. Montevideo (UY): INIA, 2020. p. 117-120. (INIA Serie Técnica; 257)Biblioteca(s): INIA Treinta y Tres. |
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249. | | MOLINA, F.; BLANCO, P.H.; DE LA PAVA, K. LOAIZA; VILLALBA, M.; VARGAS, J.; MARTÍNEZ, S.; ESCALANTE, F.; PÉREZ DE VIDA, F. Nuevos cultivares Clearfield. In: Terra, J. A.; Martínez, S.; Saravia, H. (Eds.) Arroz 2019. Montevideo (UY): INIA, 2019. p. 77-80. (INIA Serie Técnica; 250)Biblioteca(s): INIA Treinta y Tres. |
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250. | | BLANCO, P.H.; GAGGERO, T; PÉREZ DE VIDA, F.; ÁVILA, S.; LAVECCHIA, A.; MARCHESI, C.; ZORRILLA DE SAN MARTÍN, G.; ACEVEDO, A.; DEAMBROSI, E.; MÉNDEZ, R. INIA OIJMAR (L 3000): Nueva variedad de arroz de alto rendimiento. El País Agropecuario, 2002, v. 7, no. 91, p. 25-28Biblioteca(s): INIA Tacuarembó. |
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251. | | BLANCO, P.H.; PÉREZ DE VIDA, F.; MOLINA, F.; SILVERA, W.; LAVECCHIA, A.; ROSAS, J.E.; ARRASTIA, M.; ARISMENDI, N.; AVILA, S.; BONNECARRERE, V.; CAPDEVIELLE, F. Mejoramiento genético. I. Resumen de actividades. Evaluación interna de cultivares. ln: INIA TREINTA Y TRES. Arroz: Resultados experimentales 2008-2009. Treinta y Tres (Uruguay): INIA, 2009. cap. 7 p. 1-7 (INIA Serie Actividades de Difusión; 571)Biblioteca(s): INIA Treinta y Tres. |
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252. | | LÓPEZ RODRÍGUEZ, M.; ARCIA, P.; PÉREZ DE VIDA, F.; TRESSO, G.; FIGUEREDO, V.; LUZARDO, C.; GONNET, D.; URAGA, R.; SANGUINETTI, M.N.; BILLIRIS, A. Red tecnológica de arroz: grupos de calidad del arroz uruguayo. In: Terra, J. A.; Martínez, S.; Saravia, H.; Mesones, B.; Álvarez, O. (Eds.) Arroz 2020. Montevideo (UY): INIA, 2020. p. 113-116. (INIA Serie Técnica; 257)Biblioteca(s): INIA Treinta y Tres. |
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253. | | MÉNDEZ, R.; DEAMBROSI, E.; BLANCO, P.H.; SALDAIN, N.E.; PÉREZ DE VIDA, F.; GAGGERO, M.; LAVECCHIA, A.; MENDEZ, J.; MARCHESI, C. Reducción de laboreo y siembra directa en el cultivo de arroz Montevideo (Uruguay): INIA, 2001. 17 p. (INIA Serie Técnica ; 122)Biblioteca(s): INIA La Estanzuela; INIA Las Brujas; INIA Tacuarembó; INIA Treinta y Tres. |
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254. | | MÉNDEZ, R.; DEAMBROSI, E.; BLANCO, P.H.; SALDAIN, N.E.; PÉREZ DE VIDA, F.; GAGGERO, M.; LAVECCHIA, A.; MENDEZ, J.; MARCHESI, C. Reducción de laboreo y siembra directa en el cultivo de arroz [País Agropecuario 79]. El País Agropecuario, 2001, v. 7, no. 79, p. 25-28.Biblioteca(s): INIA Tacuarembó. |
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255. | | ROSAS, J.E.; MARTÍNEZ, S.; BONNECARRERE, V.; PÉREZ DE VIDA, F.; BLANCO, P.H.; FERNANDEZ, S.; GARAYCOCHEA, S.; JANNINK, J-L.; GUTIERREZ, L. Resistance to multiple temperate and tropical stem and sheath diseases of rice. [Poster]. En: Jornadas de Investigación, Facultad de Agronomía (UdelaR), 8-9, nov. 2018, Montevideo, UY.Biblioteca(s): INIA Treinta y Tres. |
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256. | | Día de Campo: arroz - Deambrosi, E.; Blanco, P.; Pérez de Vida, F; Zorrilla de San Martín, G.; Acevedo, A.; Avila, S.; Méndez, R.; Blanco, F.; Saravia, H. Trabajos presentados Treinta y Tres (Uruguay): INIA, 1995. 33 p. INIA Treinta y Tres.Estación Experimental del EsteBiblioteca(s): INIA Tacuarembó. |
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257. | | BLANCO, P.H.; PÉREZ DE VIDA, F.; MENDEZ, J.; DEAMBROSI, E.; MÉNDEZ, R.; SALDAIN, N.E.; ROEL, A.; ÁVILA, S.; LAVECCHIA, A.; BONILLA, O.; CASTILLO, A.; CAPDEVIELLE, F.; BRANDA, A.; ZORRILLA DE SAN MARTÍN, G.; SARAVIA, H. Arroz: día de campo. Unidad Experimental Paso de la Laguna (UEPL). [Información presentada]. Treinta y Tres (Uruguay): INIA, 1999. 44 p.Biblioteca(s): INIA Tacuarembó; INIA Treinta y Tres. |
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258. | | DEAMBROSI, E.; ZORRILLA DE SAN MARTÍN, G.; LAUZ, M.; TERRA, J.A.; BLANCO, P.H.; CASTILLO, J.; MÉNDEZ, R.; PÉREZ DE VIDA, F.; MACEDO, I.; URAGA, R.; GONNET, D.; ROVIRA, G.; MARELLA, M.; STIRLING, E.; ZORRILLA, H. Breaking yield barriers of uruguayan rice farmers.[Abstract]. In: Rice Technical Working Group, 37, 2018, Proceedings. Long Beach, California (USA): Rice Technical Working Group, 2018. p. 126-127.Biblioteca(s): INIA Treinta y Tres. |
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259. | | SPINDEL, J.E.; MONTEVERDE, E.; BEGUM, H.; AKDEMIR, D.; COLLARD, B.; REDOÑA, E.; BLANCO, P.H.; PÉREZ DE VIDA, F.; BONNECARRERE, V.; GUTIÉRREZ, L.; ROSAS, J.E.; QUERO, G.; BERBERIÁN, N.; GARAYCOCHEA, S.; FERNANDEZ, S.; JANNINK, J.L.; MCCOUCH, S. GS + de novo GWAS in Tropical and Temperate Irrigated Rice Breeding Programs. [W809] In: International Plant & Animal Genome, Conference PAG XXIV, "The largest Ag-genomics Meeting in the World San Diego, CA, USA; January 9-13, 2016. [Abstract] .Biblioteca(s): INIA Las Brujas. |
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260. | | QUERO, G.; GUTIÉRREZ, L.; MONTEVERDE, E.; BLANCO, P.H.; PÉREZ DE VIDA, F.; ROSAS, J.E.; FERNANDEZ, S.; GARAYCOCHEA, S.; MC COUCH, S.; BERBERIAN, N.; SIMONDI, S.; BONNECARRERE, V. Genome-wide association study using historical breeding populations discovers genomic regions involved in high-quality rice. Plant Genome, 2018, Volume 11, Article number 170076. Open Access. Article history: Received: Aug 25, 2017 // Accepted: Apr 09, 2018 // Published: July 12, 2018.
Permissions: This is an open access article under the CC BY-NC-ND license. Proper attribution is required for reuse. No permissions are needed...Biblioteca(s): INIA Las Brujas; INIA Treinta y Tres. |
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Registros recuperados : 273 | |
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Registro completo
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Biblioteca (s) : |
INIA Las Brujas. |
Fecha actual : |
08/06/2022 |
Actualizado : |
08/06/2022 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Internacionales |
Circulación / Nivel : |
Internacional - -- |
Autor : |
ABBATE, S.; MADEIRA, FILIPE; SILVA, H.; ALTIER, N.; PONS, X. |
Afiliación : |
SILVANA ABBATE, Est. Exp. "Dr. Mario A. Cassinoni", Polo Agroalimentario y Agroindustrial Paysandú, Centro Universitario Regional Litoral Norte, Universidad de la República, Ruta 3, km 363, Paysandú, 60000, Uruguay; FILIPE MADEIRA, Mountain Environment and Ecosystem Management Area, MORE CoLab. Mountains of Research Collaborative Laboratory, Av. Cidade de Léon 596, Bragança, 5300-358, Portugal; HORACIO SILVA, Est. Exp. "Dr. Mario A. Cassinoni", Departament of Plant Protection, Facultad de Agronomía, Universidad de la República, Ruta 3, km 363, Paysandú, 6000, Uruguay; NORA ADRIANA ALTIER MANZINI, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; XAVIER PONS, Department of Crop and Forest Sciences, Agrotecnio-Cerca Center, University of Lleida, Rovira Roure 191, Lleida, 25198, Spain. |
Título : |
Association between landscape composition and the abundance of predator and herbivore arthropods in Bt and non-Bt soybean crops. |
Fecha de publicación : |
2022 |
Fuente / Imprenta : |
Agriculture, Ecosystems and Environment, 2022, Volume 336, article number 108027. doi: https://doi.org/10.1016/j.agee.2022.108027 |
ISSN : |
0167-8809 |
DOI : |
10.1016/j.agee.2022.108027 |
Idioma : |
Inglés |
Notas : |
Article history: Received 23 December 2021; Received in revised form 3 April 2022; Accepted 13 May 2022; Available online 29 May 2022; To be published 15 September 2022. Corresponding author: Abbate, S.; Ruta 3 km 363, Paysandú, Uruguay; email:abbate@fagro.edu.uy -- This research is part of a project sponsored by Agencia Nacional de Investigación e Innovación ANII-Uruguay: Fondo María Viñas (FMV-2?2016-1?126142). SA obtained Postgraduate student grants by Agencia Nacional de Investigación e Innovación ANII-Uruguay (POS_NAC_2017_1_141080) and Comisión Académica de Posgrado CAP- Universidad de la República. |
Contenido : |
ABSTRACT -
Cropland expansion has been occurring over the last century, especially in South America, displacing non-crop areas mainly with soybean. Changes at a landscape level were followed by changes at a local scale, such as the adoption of insect-resistant transgenic crops. The homogenization of agroecosystem composition and agronomic practices have a great impact on arthropod predators and herbivore insects, which has not been quantified to a great extent in South America. We evaluate the effects of cover composition (1 km radii) as a landscape variable, and Bt adoption as a local variable on the quantity of the main predators and pests in soybean fields in Uruguay. Over a two-year period, we sampled 60 soybean fields with sweep net and beating sheet. We found that Bt and non-Bt soybean fields did not differ in the number of predators and stink bugs, while Bt fields were associated with less caterpillars? abundance. The proportion area of soybean negatively affected the quantity of some predators in this crop. In contrast, the landscape cover with natural grassland, commercial forest and maize positively affected some of these beneficial organisms. The number of stink bugs in soybean was highly affected by the surrounding cover composition. Arthropod responses depend on soybean's phenological period. We demonstrate the effects of the agriculturalization process on soybean predators and pests, suggesting that Bt adoption does not affect predators and each vegetation cover impacts them differentially. Different non-crop landscape cover and the abundance of predators in the field margin are positively associated with the abundance of predators in soybean fields. © 2022 Elsevier B.V. MenosABSTRACT -
Cropland expansion has been occurring over the last century, especially in South America, displacing non-crop areas mainly with soybean. Changes at a landscape level were followed by changes at a local scale, such as the adoption of insect-resistant transgenic crops. The homogenization of agroecosystem composition and agronomic practices have a great impact on arthropod predators and herbivore insects, which has not been quantified to a great extent in South America. We evaluate the effects of cover composition (1 km radii) as a landscape variable, and Bt adoption as a local variable on the quantity of the main predators and pests in soybean fields in Uruguay. Over a two-year period, we sampled 60 soybean fields with sweep net and beating sheet. We found that Bt and non-Bt soybean fields did not differ in the number of predators and stink bugs, while Bt fields were associated with less caterpillars? abundance. The proportion area of soybean negatively affected the quantity of some predators in this crop. In contrast, the landscape cover with natural grassland, commercial forest and maize positively affected some of these beneficial organisms. The number of stink bugs in soybean was highly affected by the surrounding cover composition. Arthropod responses depend on soybean's phenological period. We demonstrate the effects of the agriculturalization process on soybean predators and pests, suggesting that Bt adoption does not affect predators and each vegetation cov... Presentar Todo |
Palabras claves : |
Annual crops; Caterpillars; Field margin; Forest; Natural grassland; Perennial crops; PLATAFORMA DE BIOINSUMOS; Spiders; Stink bugs. |
Asunto categoría : |
F01 Cultivo |
Marc : |
LEADER 03309naa a2200313 a 4500 001 1063249 005 2022-06-08 008 2022 bl uuuu u00u1 u #d 022 $a0167-8809 024 7 $a10.1016/j.agee.2022.108027$2DOI 100 1 $aABBATE, S. 245 $aAssociation between landscape composition and the abundance of predator and herbivore arthropods in Bt and non-Bt soybean crops.$h[electronic resource] 260 $c2022 500 $aArticle history: Received 23 December 2021; Received in revised form 3 April 2022; Accepted 13 May 2022; Available online 29 May 2022; To be published 15 September 2022. Corresponding author: Abbate, S.; Ruta 3 km 363, Paysandú, Uruguay; email:abbate@fagro.edu.uy -- This research is part of a project sponsored by Agencia Nacional de Investigación e Innovación ANII-Uruguay: Fondo María Viñas (FMV-2?2016-1?126142). SA obtained Postgraduate student grants by Agencia Nacional de Investigación e Innovación ANII-Uruguay (POS_NAC_2017_1_141080) and Comisión Académica de Posgrado CAP- Universidad de la República. 520 $aABSTRACT - Cropland expansion has been occurring over the last century, especially in South America, displacing non-crop areas mainly with soybean. Changes at a landscape level were followed by changes at a local scale, such as the adoption of insect-resistant transgenic crops. The homogenization of agroecosystem composition and agronomic practices have a great impact on arthropod predators and herbivore insects, which has not been quantified to a great extent in South America. We evaluate the effects of cover composition (1 km radii) as a landscape variable, and Bt adoption as a local variable on the quantity of the main predators and pests in soybean fields in Uruguay. Over a two-year period, we sampled 60 soybean fields with sweep net and beating sheet. We found that Bt and non-Bt soybean fields did not differ in the number of predators and stink bugs, while Bt fields were associated with less caterpillars? abundance. The proportion area of soybean negatively affected the quantity of some predators in this crop. In contrast, the landscape cover with natural grassland, commercial forest and maize positively affected some of these beneficial organisms. The number of stink bugs in soybean was highly affected by the surrounding cover composition. Arthropod responses depend on soybean's phenological period. We demonstrate the effects of the agriculturalization process on soybean predators and pests, suggesting that Bt adoption does not affect predators and each vegetation cover impacts them differentially. Different non-crop landscape cover and the abundance of predators in the field margin are positively associated with the abundance of predators in soybean fields. © 2022 Elsevier B.V. 653 $aAnnual crops 653 $aCaterpillars 653 $aField margin 653 $aForest 653 $aNatural grassland 653 $aPerennial crops 653 $aPLATAFORMA DE BIOINSUMOS 653 $aSpiders 653 $aStink bugs 700 1 $aMADEIRA, FILIPE 700 1 $aSILVA, H. 700 1 $aALTIER, N. 700 1 $aPONS, X. 773 $tAgriculture, Ecosystems and Environment, 2022, Volume 336, article number 108027. doi: https://doi.org/10.1016/j.agee.2022.108027
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