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Personal

Jose Manuel Donoso Contreras

Cargo Investigador Extensionista – Rayentué
Título(s) Ingeniero Agrónomo
Teléfono (72) 2 521686
Email @

Publicaciones

  1. Kuhn, N., Ponce, C., Arellano, M. et al. ABA influences color initiation timing in P. avium L. fruits by sequentially modulating the transcript levels of ABA and anthocyanin-related genes. Tree Genetics & Genomes 17, 20 (2021). https://doi.org/10.1007/s11295-021-01502-1
  2. Claudio Ponce, Nathalie Kuhn, Macarena Arellana, Alson Time, Salvatore Multari, Stefan Martens, Esther Carrera, Boris Sagredo, José Manuel Donoso and Lee A. Meisel. (2021) Differential Phenolic Compounds and Hormone Accumulation Patterns between Early- and Mid-Maturing Sweet Cherry (Prunus avium L.) Cultivars during Fruit Development and Ripening. J. Agric. Food Chem. 2021 https://doi.org/10.1021/acs.jafc.1c01140
  3. Time, A., Ponce, C., Kuhn, N., Arellano, M., Sagredo, B., Donoso, J.M., and L.A. Meisel (2021) Canopy Spraying of Abscisic Acid to Improve Fruit Quality of Different Sweet Cherry Cultivars. Agronomy 11, 1947. https://doi.org/10.3390/ agronomy11101947
  4. Kuhn, N.; Ponce, C.; Arellano, M.; Time, A.; Sagredo, B.; Donoso, J.M.; Meisel, L.A. Gibberellic Acid Modifies the Transcript Abundance of ABA Pathway Orthologs and Modulates Sweet Cherry (Prunus avium) Fruit Ripening in Early- and Mid-Season Varieties. Plants 2020, 9, 1796
  5. Donoso. J.M. (2020) Oportunidades para la mejora genética del cerezo dulce. En: Cáncer Bacterial del Cerezo: Epidemiologia de la enfermedad y estrategias de control. Boletín INIA N° 420, 2020. pp 63-69.
  6. Donoso JM (2020) Nuevas variedades: Programa Chileno Para el Mejoramiento Genético del Cerezo. Revista Campo y Tecnología, N° 18 (sept-oct), p 43.
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  8. Donoso JM. 2018. Mejoramiento genético del cerezo en Chile. Boletín Técnico Pomáceas, Universidad de Talca, Volumen 18, N°6: 8-11.
  9. Kuhn N., Ponce C., Flores Y., Molina N., Time A., Sagredo B., Donoso J.M., Meisel L. 2019. Abscisic Acid (ABA) applied exogenously on four sweet cherry varieties alters sugar content and IAD of anthocyanins. Primer simposio internacional en alimentos saludables, nutrición, actividad fisica y salud. INTA. Santiago, Chile, 27-29 marzo, 2019.
  10. Donoso J.M., Lemus G., Arribillaga D., Sagredo B. (2019) Evolution of sweet cherry production in Chile. Acta Horticultirae. 8th International Cherry Symposium, Yamagata, Japon, 5-9 June, 2017. DOI: 10.17660/ActaHortic.2019.1235.18
  11. Time A., Kuhn N., Ponce C., Arellano M., Donoso J.M., Sagredo B., Meisel L. (2019) Phenotypic Characterization of Fruit Quality Traits in a Mapping Population of Sweet Cherry. Plant Biology, 3-7 august, EEUU, San José, CA.
  12. Donoso, J.M. (2018) Avances de Programa para desarrollar nuevas variedades chilenas de cerezos. Redagrícola, agosto 2018, p. 42-45.
  13. Evolution of sweet cherry (Prunus avium L.) industry in Chile
  14. Allelic characterization of Chilean sweet cherry (Prunus avium L.) germplasm by means of molecular marker associated to color, fruit size, maturity time and S-alleles
  15. Donoso J.M., Picañol R., Serra O., Howad W., Alegre S., Arús P., Eduardo I. (2016) Exploring almond genetic variability useful for peach improvement: mapping major genes and QTLs in two interspecific almond X peach populations. Molecular Breeding, doi 10.1007/s11032-016-0441-7
  16. Donoso J.M., Lemus G., Almada R., Perez J., Bastias A., Rojas P., Martin C., Correa F., Sagredo B. Characterization of Chilean sweet cherry (Prunus avium L.) germplasm by means of SSR associated to color, fruit size, maturity time and cross compatibility. XI Reunión de Biología Vegetal, Chillán, Chile, 28 nov- 1 dic. 2016.
  17. Almada R, Lienqueo I, Rojas P, Pimentel P, Salvatierra A, Villar L, Donoso JM, Sagredo B. Identification and molecular characterization of CONSTANTS-like genes in stone fruits tree species (Prunus L.). XI Reunión de Biología Vegetal, Chillán, Chile, 28 nov- 1 dic. 201
  18. O. Serra*, JM. Donoso*, R. Picañol*, I. Batlle, W. Howad, I. Eduardo and P. Arús (2016) Marker-assisted introgression (MAI) of almond genes into the peach background: a fast method to mine and integrate novel variation from exotic sources in long intergeneration species. Tree Genetics & Genomes. DOI 10.1007/s11295-016-1056-1.
  19. José Manuel Donoso, Iban Eduardo, Roger Picañol, Ignasi Batlle, Werner Howad, María José Aranzana and Pere Arús (2015) High-density mapping suggests cytoplasmic male sterility with two restorer genes in almond X peach progenies. Horticulture Research; doi:10.1038/hortres.2015.16
  20. Arús P, Serra O, Donoso JM, Eduardo I, Howad W, Aranzana MJ (2015). Marker Assisted Introgression: A Fast Approach to Assess the Value of Almond Genes and Integrate them in the Peach Genetic Background. January 10-14, 2015 San Diego, CA.
  21. MAPEO DE ALTA DENSIDAD SUGIERE ANDROESTERILIDAD CITOPLASMÁTICA CON DOS GENES RESTAURADORES EN PROGENIES DE ALMENDRO X DURAZNERO. XLVIII Reunión Anual Sociedad de Genética de Chile. 22-24 de octubre de 2015, Valdivia, Chile.
  22. P. Arús, M.J. Aranzana, W. Howad, I. Eduardo, J.M. Donoso, E. López-Girona and O. Serra. The peach genome and its applications. Acta horticulturae 09/2015; DOI:10.17660/ActaHortic.2015.1100.3
  23. Consideraciones a tener presentes para optimizar la polinización en huertos de cerezo (Prunus avium L). Tierra Adentro 92:16-19.2011