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Registros recuperados : 7 | |
4. | | AZZIMONTI, G.; GONZALEZ, N.; STANTON, J.; SAINT PIERRE, C.; SINGH, PK.; GERMAN, S.; PEREYRA, S. Precision field-based phenotyping for fusarium head blight, within a new multiple diseases platform in uruguay: 2015 results. In: International Symposium on Fusarium Head Blight, 5o., International Workshop on Wheat Blast, 2o.,Florianópolis, SC, Brazil,2016. p.41. P18: Session 1-Germplasm Development and Breeding for Scab Resistance.Biblioteca(s): INIA La Estanzuela. |
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5. | | AZZIMONTI, G.; DOMENIGUINI, V.; GONZALEZ, N.; GARCIA, R.; SAINT-PIERRE, C.; SINGH, P.; QUINCKE, M.; PEREYRA, S.; GERMAN, S. Three years of the Precision Wheat Phenotyping Platform for diseases in Uruguay: current status and future prospects. [Poster]. In: Proceedings of the Borlaug Global Rust Initiative Technical Workshop ,14-18 April, 2018, Marrakesh, Marruecos.Biblioteca(s): INIA La Estanzuela. |
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6. | | SAINT PIERRE, C.; GHANEM, M.E.; BEN M'BAREK, S.; AZZIMONTI, G.; PEREYRA, S.; MARZA, F.; YAHYAOUI, A.; SINGH, P.; BAUM, M.; BRAUN, H. Global network for precision wheat phenotypin.[Resumen]. In: Latin-American Conference on Plant Phenotyping and Phenomics for Plant Breeding, 2, 2017, São Carlos, SP. Proceedings... São Carlos: Embrapa Instrumentação, 2017. p. 77.Biblioteca(s): INIA La Estanzuela. |
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7. | | AZZIMONTI, G.; GARCIA, R.; GONZALEZ, N.; DOMENIGUINI, V.; CAROLINA SAINT-PIERRE, C.; SINGH, P.K.; QUINCKE, M.; PEREYRA, S.; GERMAN, S. Field-based phenotyping for wheat diseases within a new multiple diseases platform in Uruguay: promoting germplasm sharing to increase resistance diversity. P 309-Topic: Future of Wheat Improvement in Different Parts of the World. In: Buerstmayr, H.; Lang-Mladek, C.; Steiner, B.; Michel, S.; Buerstmayr, M.; Lemmens, M.; Vollmann, J.; Grausgruber, H. (Eds.). Proceedings of the 13th International Wheat Genetics Symposium. Tulln, Austria; April 23-28, 2017. p.485.Biblioteca(s): INIA La Estanzuela. |
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Registros recuperados : 7 | |
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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 : |
22/10/2018 |
Actualizado : |
12/06/2019 |
Tipo de producción científica : |
Abstracts/Resúmenes |
Autor : |
SAINT PIERRE, C.; GHANEM, M.E.; BEN M'BAREK, S.; AZZIMONTI, G.; PEREYRA, S.; MARZA, F.; YAHYAOUI, A.; SINGH, P.; BAUM, M.; BRAUN, H. |
Afiliación : |
CAROLINA SAINT PIERRE, CIMMYT, Global Wheat Program, Mexico.; M. E. GHANEM, ICARDA, Morocco.; S BEN M'BAREK, Precision Wheat Phenotyping Platform, Tunisia.; GUSTAVO AZZIMONTI, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; SILVIA ANTONIA PEREYRA CORREA, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; F. MARZA, INIAF, Bolivia.; A. YAHYAOUI, CIMMYT, Global Wheat Program, Mexico.; P. SINGH, CIMMYT, Global Wheat Program, Mexico.; M. BAUM, ICARDA, Morocco.; H. BRAUN, CIMMYT, Global Wheat Program, Mexico. |
Título : |
Global network for precision wheat phenotypin.[Resumen]. |
Fecha de publicación : |
2017 |
Fuente / Imprenta : |
In: Latin-American Conference on Plant Phenotyping and Phenomics for Plant Breeding, 2, 2017, São Carlos, SP. Proceedings... São Carlos: Embrapa Instrumentação, 2017. |
Páginas : |
p. 77. |
Idioma : |
Inglés |
Contenido : |
Investments in high quality phenotyping are needed to fully exploit the potential of genomic data, and consequently, to contribute for more efficient plant selections, shorter breeding cycles, and rapid advances in breeding. Based on a global network of wheat partners, several precision fieldbased wheat phenotyping platforms are being developed with the support of the CGIAR Research Program on Wheat and co-investing national agricultural research institutes. The objective is to generate higher precision multi-location phenotypic data on prioritized traits, under defined good practices, short- and longer-term training and sharing of the generated knowledge, as well as fostering global germplasm exchange among participating NARS and scientists. The selected locations represent key environments, as for example, hotspots for specific diseases and future climate analogue sites. Within this network, phenotyping activities are being conducted for wheat blast (Magnaporthe oryzae) in Bolivia, Septoria tritici blotch (STB) in durum wheat in Tunisia, and for multiple diseases (leaf rust, Fusarium head blight, and STB) in bread wheats in Uruguay. Subject to further funding, additional platforms to be developed include the ones for evaluation of heat and drought tolerance (Morocco - already funded - India, Pakistan, Bangladesh, Nepal, Turkey), yield potential (China, India, Pakistan, Egypt, Zimbabwe), and wheat diseases (China, Turkey, Bangladesh-Nepal). The generated information will contribute to a faster development of broad genetic based resistant, high yielding wheat varieties, complementing evaluations currently performed for diseases (Kenya, Ethiopia, Turkey, Mexico) and heat/drought/yield potential (Mexico). MenosInvestments in high quality phenotyping are needed to fully exploit the potential of genomic data, and consequently, to contribute for more efficient plant selections, shorter breeding cycles, and rapid advances in breeding. Based on a global network of wheat partners, several precision fieldbased wheat phenotyping platforms are being developed with the support of the CGIAR Research Program on Wheat and co-investing national agricultural research institutes. The objective is to generate higher precision multi-location phenotypic data on prioritized traits, under defined good practices, short- and longer-term training and sharing of the generated knowledge, as well as fostering global germplasm exchange among participating NARS and scientists. The selected locations represent key environments, as for example, hotspots for specific diseases and future climate analogue sites. Within this network, phenotyping activities are being conducted for wheat blast (Magnaporthe oryzae) in Bolivia, Septoria tritici blotch (STB) in durum wheat in Tunisia, and for multiple diseases (leaf rust, Fusarium head blight, and STB) in bread wheats in Uruguay. Subject to further funding, additional platforms to be developed include the ones for evaluation of heat and drought tolerance (Morocco - already funded - India, Pakistan, Bangladesh, Nepal, Turkey), yield potential (China, India, Pakistan, Egypt, Zimbabwe), and wheat diseases (China, Turkey, Bangladesh-Nepal). The generated information will co... Presentar Todo |
Palabras claves : |
ABIOTIC STRESS; ENFERMEDADES DEL TRIGO; ESTRÉS ABIÓTICO; FENOTIPADO; NETWORKING; PHENOTYPING; PLATAFORMA FENOTIPADO DE TRIGO; WHEAT; WHEAT DISEASES. |
Thesagro : |
TRIGO. |
Asunto categoría : |
H20 Enfermedades de las plantas |
Marc : |
LEADER 02768nam a2200349 a 4500 001 1059235 005 2019-06-12 008 2017 bl uuuu u01u1 u #d 100 1 $aSAINT PIERRE, C. 245 $aGlobal network for precision wheat phenotypin.[Resumen].$h[electronic resource] 260 $aIn: Latin-American Conference on Plant Phenotyping and Phenomics for Plant Breeding, 2, 2017, São Carlos, SP. Proceedings... São Carlos: Embrapa Instrumentação$c2017 300 $ap. 77. 520 $aInvestments in high quality phenotyping are needed to fully exploit the potential of genomic data, and consequently, to contribute for more efficient plant selections, shorter breeding cycles, and rapid advances in breeding. Based on a global network of wheat partners, several precision fieldbased wheat phenotyping platforms are being developed with the support of the CGIAR Research Program on Wheat and co-investing national agricultural research institutes. The objective is to generate higher precision multi-location phenotypic data on prioritized traits, under defined good practices, short- and longer-term training and sharing of the generated knowledge, as well as fostering global germplasm exchange among participating NARS and scientists. The selected locations represent key environments, as for example, hotspots for specific diseases and future climate analogue sites. Within this network, phenotyping activities are being conducted for wheat blast (Magnaporthe oryzae) in Bolivia, Septoria tritici blotch (STB) in durum wheat in Tunisia, and for multiple diseases (leaf rust, Fusarium head blight, and STB) in bread wheats in Uruguay. Subject to further funding, additional platforms to be developed include the ones for evaluation of heat and drought tolerance (Morocco - already funded - India, Pakistan, Bangladesh, Nepal, Turkey), yield potential (China, India, Pakistan, Egypt, Zimbabwe), and wheat diseases (China, Turkey, Bangladesh-Nepal). The generated information will contribute to a faster development of broad genetic based resistant, high yielding wheat varieties, complementing evaluations currently performed for diseases (Kenya, Ethiopia, Turkey, Mexico) and heat/drought/yield potential (Mexico). 650 $aTRIGO 653 $aABIOTIC STRESS 653 $aENFERMEDADES DEL TRIGO 653 $aESTRÉS ABIÓTICO 653 $aFENOTIPADO 653 $aNETWORKING 653 $aPHENOTYPING 653 $aPLATAFORMA FENOTIPADO DE TRIGO 653 $aWHEAT 653 $aWHEAT DISEASES 700 1 $aGHANEM, M.E. 700 1 $aBEN M'BAREK, S. 700 1 $aAZZIMONTI, G. 700 1 $aPEREYRA, S. 700 1 $aMARZA, F. 700 1 $aYAHYAOUI, A. 700 1 $aSINGH, P. 700 1 $aBAUM, M. 700 1 $aBRAUN, H.
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