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Registros recuperados : 5 | |
1. |  | AYALA, W.; BENDERSKY, D. Modificaciones de la productividad del campo natural vía incorporación de especies y nutrientes: oportunidades y consecuencias. In: Reunión del Grupo Técnico en Forrajeras del Cono Sur, Grupo Campos, 24, 2017, Tacuarembó, Uruguay; Ayala, W.; Boggiano, P.; Álvarez, O.; eds. Bioma campos : Retomando un camino de oportunidades para una producción ganadera sustentable. Memorias. Tacuarembó (Uruguay): Grupo Campos, 2017. p. 14-23 ver. elect. La paginación electrónica difiere de la versión papel, paginación papel: p.17-26.Biblioteca(s): INIA Treinta y Tres. |
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3. |  | Altuve, S.; Ramírez, M.; Ramírez, R.; Bendersky, D. Gramíneas subtropicales para rotaciones arroceras ln: Reunión del Grupo Técnico Regional del Cono Sur en Mejoramiento y Utilización de los Recursos Forrajeros del Area Tropical y Subtropical, Grupo Campos, 20., 2004, Salto, UY Saldanha, S.; Bemhaja, M.; Moliterno, E.; Olmos, F.; Uriarte, G., ed. Sustentabilidad, desarrollo y conservación de los ecosistemas : memorias. Salto: UdelaR. Regional Norte, 2004. p. 202-203Biblioteca(s): INIA La Estanzuela. |
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4. |  | AYALA, W.; BENDERSKY, D.; PARUELO, J.; ROVIRA, P.J. The importance of Campos ecosystems as a world food producer and as a provider of ecosystem services. In: MUREITHI, J.G.; NYANGITO, M.M.; WAMUONGO, J.W.; NJOKA, J.; NYAMBATI; E.M.; MIANO,D.; MBUKU, S.; OKOTI, M.; MARITIM. F., ed. Sustainable use of grassland and rangeland resources for improved livelihoods. Proceedings. Nairobi, (Kenia): KALRO, 2022. p. 655-660Biblioteca(s): INIA Treinta y Tres. |
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5. |  | JAURENA, M.; DURANTE, M.; DEVINCENZI, T.; SAVIAN, J.V.; BENDERSKY, D.; MOOJEN, F.G.; PEREIRA, M.; SOCA, P.; QUADROS, F.L.F.; PIZZIO, R.; NABINGER, C.; CARVALHO, P.C.F.; LATTANZI, F. Native Grasslands at the Core: A New Paradigm of Intensification for the Campos of Southern South America to Increase Economic and Environmental Sustainability Front. Sustain. Food Syst., 05 March 2021, OPEN ACCESS. DOI: https://doi.org/10.3389/fsufs.2021.547834 Article history: Received: 31 March 2020, Accepted: 07 January 2021, Published: 05 March 2021. ACKNOWLEDGMENTS: The authors gratefully acknowledge Fiorella Cazulli for the
English corrections.Correspondence: Martín Jaurena...Biblioteca(s): INIA Tacuarembó. |
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Registros recuperados : 5 | |
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 | Acceso al texto completo restringido a Biblioteca INIA La Estanzuela. Por información adicional contacte bib_le@inia.org.uy. |
Registro completo
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Biblioteca (s) : |
INIA La Estanzuela. |
Fecha actual : |
30/10/2014 |
Actualizado : |
06/07/2022 |
Tipo de producción científica : |
Artículos Indexados |
Autor : |
VON ZITZEWITZ, J.; CUESTA-MARCOS, A.; CONDON, F.; CASTRO, A. J.; CHAO, S.; COREY, A.; FILICHKIN, T.; FISK, S.P.; GUTIERREZ, L.; HAGGARD, K.; KARSAI, I.; MUEHLBAUER, G. J.; SMITH, K.P.; VEISZ, O.; HAYES, P.M. |
Afiliación : |
JARISLAV RAMON VON ZITZEWITZ VON SALVIATI, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; FEDERICO CONDON PRIANO, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay. |
Título : |
The genetics of winterhardiness in barley: perspectives from genome-wide association mapping. |
Fecha de publicación : |
2011 |
Fuente / Imprenta : |
The Plant Genome, v. 4., n,1, p. 76-91, 2011. |
ISSN : |
1940-3372 |
DOI : |
10.3835/plantgenome2010.12.0030 |
Idioma : |
Inglés |
Contenido : |
Abstract: Winterhardiness is a complex trait that involves low temperature tolerance (LTT), vernalization sensitivity, and photoperiod sensitivity. Quantitative trait loci (QTL) for these traits were fi rst identifi ed using biparental mapping populations; candidate genes for all loci have since been identifi ed and characterized. In this research we used a set of 148 accessions consisting of advanced breeding lines from the Oregon barley (Hordeum vulgare L. subsp vulgare) breeding program and selected cultivars that were extensively phenotyped and genotyped with single nucleotide polymorphisms. Using these data for genome-wide association mapping we detected the same QTL and genes that have been systematically characterized using biparental populations over nearly two decades of intensive research. In this sample of germplasm, maximum LTT can be achieved with facultative growth habit, which can be predicted using a three-locus haplotype involving FR-H1, FR-H2, and VRN-H2. The FR-H1and FR-H2 LTT QTL explained 25% of the phenotypic variation, offering the prospect that additional gains from selection can be achieved once favorable alleles are fi xed at these loci. |
Thesagro : |
RECURSOS GENETICOS VEGETALES. |
Asunto categoría : |
-- |
Marc : |
LEADER 02094naa a2200325 a 4500 001 1051380 005 2022-07-06 008 2011 bl uuuu u00u1 u #d 022 $a1940-3372 024 7 $a10.3835/plantgenome2010.12.0030$2DOI 100 1 $aVON ZITZEWITZ, J. 245 $aThe genetics of winterhardiness in barley$bperspectives from genome-wide association mapping.$h[electronic resource] 260 $c2011 520 $aAbstract: Winterhardiness is a complex trait that involves low temperature tolerance (LTT), vernalization sensitivity, and photoperiod sensitivity. Quantitative trait loci (QTL) for these traits were fi rst identifi ed using biparental mapping populations; candidate genes for all loci have since been identifi ed and characterized. In this research we used a set of 148 accessions consisting of advanced breeding lines from the Oregon barley (Hordeum vulgare L. subsp vulgare) breeding program and selected cultivars that were extensively phenotyped and genotyped with single nucleotide polymorphisms. Using these data for genome-wide association mapping we detected the same QTL and genes that have been systematically characterized using biparental populations over nearly two decades of intensive research. In this sample of germplasm, maximum LTT can be achieved with facultative growth habit, which can be predicted using a three-locus haplotype involving FR-H1, FR-H2, and VRN-H2. The FR-H1and FR-H2 LTT QTL explained 25% of the phenotypic variation, offering the prospect that additional gains from selection can be achieved once favorable alleles are fi xed at these loci. 650 $aRECURSOS GENETICOS VEGETALES 700 1 $aCUESTA-MARCOS, A. 700 1 $aCONDON, F. 700 1 $aCASTRO, A. J. 700 1 $aCHAO, S. 700 1 $aCOREY, A. 700 1 $aFILICHKIN, T. 700 1 $aFISK, S.P. 700 1 $aGUTIERREZ, L. 700 1 $aHAGGARD, K. 700 1 $aKARSAI, I. 700 1 $aMUEHLBAUER, G. J. 700 1 $aSMITH, K.P. 700 1 $aVEISZ, O. 700 1 $aHAYES, P.M. 773 $tThe Plant Genome$gv. 4., n,1, p. 76-91, 2011.
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