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1.Imagen marcada / sin marcar Ryan, G.S. Informe de la 3 Reunión Técnica sobre mejoramiento de girasol ln: Puignau, J.P. (ed.). Mejoramiento genetico de girasol. Montevideo (Uruguay): IICA-PROCISUR, 1994. p59-65 (IICA-PROCISUR. Diálogo, 41) "Contiene : Trabajos presentados en Reunión Técnica de Mejoramiento Genético de Girasol (2 : 1989 Feb 14-16 :Colonia) ; Reunión Técnica de Mejoramiento de Girasol (3 : 1989 Jun 6-8 : Buenos Aires) ; Reunión Técnica de Mejoramiento de...
Biblioteca(s): INIA La Estanzuela; INIA Las Brujas; INIA Salto Grande.
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2.Imagen marcada / sin marcar Ryan, G.S.; Areco, C.M.; Alvarez, D.; Ljubich, A. Programa girasol en la EEA Manfredi, INTA, Argentina ln: Molestina, C.J. Manejo del cultivo, control de plagas y enfermedades del girasol. Montevideo (Uruguay): IICA/BID/PROCISUR, 1988. p135-142 Contiene material relacionado con girasol presentado en el Seminario sobre Manejo das culturas de soja e girassol y la Reuniao sobre controle de enfermidades de soja e girassol
Biblioteca(s): INIA La Estanzuela; INIA Las Brujas.
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Biblioteca (s) :  INIA La Estanzuela.
Fecha actual :  18/03/2022
Actualizado :  02/09/2022
Tipo de producción científica :  Artículos en Revistas Indexadas Internacionales
Circulación / Nivel :  Internacional - --
Autor :  SILVA, P.; EVERS, B.; KIEFFABER, A.; WANG, X.; BROWN, R.; GAO, L.; FRITZ, A.; CRAIN, J.; POLAND, J.
Afiliación :  MARIA PAULA SILVA VILLELLA, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay./ Department of Plant Pathology, College of Agriculture, Kansas State University, Manhattan, USA.; BYRON EVERS, Department of Plant Pathology, College of Agriculture, Kansas State University, Manhattan, Kansas, USA.; ALEXANDRIA KIEFFABER, Department of Plant Pathology, College of Agriculture, Kansas State University, Manhattan, Kansas, USA.; XU WANG, Department of Agricultural and Biological Engineering, University of Florida, IFAS Gulf Coast , Research and Education Center, Wimauma, Florida,USA.; RICHARD BROWN, Department of Plant Pathology, College of Agriculture, Kansas State University, Manhattan, USA.; LIANGLIANG GAO, Department of Plant Pathology, College of Agriculture, Kansas State University, Manhattan, USA.; ALLAN FRITZ, Department of Agronomy, College of Agriculture, Kansas State University, Manhattan, Kansas, 66506, USA.; JARED CRAIN, Department of Plant Pathology, College of Agriculture, Kansas State University, Manhattan, Kansas, 66506, USA.; JESSE POLAND, Department of Plant Pathology, College of Agriculture, Kansas State University, Manhattan, Kansas, 66506, USA.
Título :  Applied phenomics and genomics for improving barley yellow dwarf resistance in winter wheat.
Fecha de publicación :  2022
Fuente / Imprenta :  G3 Genes| Genomes| Genetics, (Bethesda, Md.), 2022;, jkac064, Open Access. DOI:https://doi.org/10.1093/g3journal/jkac064
DOI :  10.1093/g3journal/jkac064
Idioma :  Inglés
Notas :  Article history: Received: 22 December 2021/Accepted: 12 March 2022/Published: 30 March 2022. The Author(s) (2022) . Published by Oxford University Press on behalf of the Genetics Society of America. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
Contenido :  Abstract: Barley yellow dwarf (BYD) is one of the major viral diseases of cereals. Phenotyping BYD in wheat is extremely challenging due to similarities to other biotic and abiotic stresses. Breeding for resistance is additionally challenging as the wheat primary germplasm pool lacks genetic resistance, with most of the few resistance genes named to date originating from a wild relative species. The objectives of this study were to, i) evaluate the use of high-throughput phenotyping (HTP) from unmanned aerial systems to improve BYD assessment and selection, ii) identify genomic regions associated with BYD resistance, and iii) evaluate genomic prediction models ability to predict BYD resistance. Up to 107 wheat lines were phenotyped during each of five field seasons under both insecticide treated and untreated plots. Across all seasons, BYD severity was lower with the insecticide treatment and plant height (PTHTM) and grain yield (GY) showed increased values relative to untreated entries. Only 9.2% of the lines were positive for the presence of the translocated segment carrying resistance gene Bdv2 on chromosome 7DL. Despite the low frequency, this region was identified through association mapping. Furthermore, we mapped a potentially novel genomic region for resistance on chromosome 5AS. Given the variable heritability of the trait (0.211 ? 0.806), we obtained relatively good predictive ability for BYD severity ranging between 0.06 ? 0.26. Including Bdv2 on the predictive mo... Presentar Todo
Palabras claves :  Barley yellow dwarf (BYD); Genomic Selection (GS); High-throughput Phenotyping (HTP); Resistance; Tolerance; Triticum aestivum; Virus.
Asunto categoría :  --
URL :  http://www.ainfo.inia.uy/digital/bitstream/item/16662/1/Applied-phenomics-and-genomics-for-improving-barley-yellow-dwarf-resistance-in-winter.-2022.Silva.pdf
https://academic.oup.com/g3journal/article-pdf/12/7/jkac064/44473353/jkac064.pdf
Marc :  Presentar Marc Completo
Registro original :  INIA La Estanzuela (LE)

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