68 results on '"Pérez-Álvarez, Eva Pilar"'
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2. Use of Innovative Compounds to Manage Grapevine Downy and Powdery Mildews: Results of a Three-Year Field Trial.
3. Differences in Soil Water Holding Capacity and Available Soil Water along Growing Cycle Can Explain Differences in Vigour, Yield, and Quality of Must and Wine in the DOCa Rioja
4. Differences in Soil Water Holding Capacity and Available Soil Water along Growing Cycle Can Explain Differences in Vigour, Yield, and Quality of Must and Wine in the DOCa Rioja
5. Exploring Metschnikowia pulcherrima as a Co-Fermenter with Saccharomyces cerevisiae: Influence on Wine Aroma during Fermentation and Ageing
6. The Influence of Climatic Conditions and Agronomic Practices on Greenhouse Gas Emissions in a Conventional Vineyard (DOCa. Rioja, Spain)
7. Secondary metabolites in grapevine: crosstalk of transcriptional, metabolic and hormonal signals controlling stress defence responses in berries and vegetative organs
8. Secondary metabolites in grapevine: crosstalk of transcriptional, metabolic and hormonal signals controlling stress defence responses in berries and vegetative organs
9. Effects of soil water-holding capacity and soil N-NO33 - and K on the nutrient content, vigour and yield of cv. Tempranillo vine and the composition of its must and wine
10. Effect of Methyl Jasmonate Plus Urea Foliar Application on the Polysaccharide and Monosaccharide Composition of Tempranillo Grapes and Wines and on the Wine’s Quality
11. Foliar Applications of Calcium, Silicon and Their Combination: A Tool to Improve Grape Composition and Quality
12. Holistic understanding of the response of grapevines to foliar application of seaweed extracts
13. Holistic understanding of the response of grapevines to foliar application of seaweed extracts
14. Foliar applications to vines of methyl jasmonate and nanoparticles doped with methyl jasmonate: impact on grape and wine polysaccharide composition
15. Foliar application of methyl jasmonate and methyl jasmonate supported on nanoparticles: Incidence on grape phenolic composition over two seasons
16. Application of Methyl Jasmonate and Methyl Jasmonate + Urea in Tempranillo Vines: Influence on Grape Phenolic Compounds
17. Changes on Grape Aroma Composition as a Consequence of Foliar Application of Methyl Jasmonate and Nano-Sized Particles Doped with Methyl Jasmonate
18. Influence of foliar treatments with methyl jasmonate and methyl jasmonate-doped nanoparticles on nitrogen composition of Tempranillo grapes during two vintages
19. Could foliar applications of methyl jasmonate and methyl jasmonate + urea improve must grape aroma composition?
20. The Influence of Climatic Conditions and Agronomic Practices on Greenhouse Gas Emissions in a Conventional Vineyard (DOCa. Rioja, Spain)
21. Vine foliar treatments at veraison and post-veraison with methyl jasmonate enhanced aromatic, phenolic and nitrogen composition of tempranillo blanco grapes
22. Urea applied at veraison improved aromatic compounds in Tempranillo grapes
23. Phenolic profile of wine obtained by co-inoculation of Hanseniaspora osmophila and Saccharomyces cerevisiae strains
24. La aplicación foliar de jasmonato de metilo mejora la composición aromática, fenólica y nitrogenada de la variedad Tempranillo Blanco en la D.O.Ca. Rioja
25. Incidence on grape phenolic composition of foliar treatments with methyl jasmonate and methyl jasmonate supported on nanoparticles
26. Use of macroalgae as a biostimulant against fungal diseases in grapevines
27. Foliar application of methyl jasmonate improvement the amino acids content of Tempranillo Blanco grapes
28. Methyl jasmonate and/or urea in conventional and nanoparticle form: Effect on phenolic compounds in Tempranillo grapes
29. Foliar application of methyl jasmonate and/or urea on Tempranillo grapes: Effect on terpenoids and C13 norisoprenoids
30. Foliar application of methyl jasmonate and methyl jasmonate plus urea: Influence on phenolic, aromatic and nitrogen composition of Tempranillo wine
31. Foliar application of nanoparticles and regulated deficit irrigation in viticulture: Agronomic strategies to improve the Monastrell grape volatile composition
32. Effect of foliar application of methyl jasmonate and urea on polysaccharide composition of grapes and wines
33. Methyl jasmonate plus urea foliar applications: Effects on Tempranillo grapes and wine phenolic composition
34. Secondary metabolites in grapevine stress response - women in plant science series
35. Effect on the concentration of proanthocyanidins in grapes and wines
36. Effect of foliar application of Ca, Si and their combination on grape volatile composition
37. Ecophysiological responses of grapevine rootstocks to water deficit
38. Holistic understanding of the response of grapevines to foliar application of seaweed extracts
39. Changes on Grape Aroma Composition as a Consequence of Foliar Application of Methyl Jasmonate and Nano-Sized Particles Doped with Methyl Jasmonate
40. Agronomic Application of Nanoparticles: Effects of Methyl Jasmonate on Grape Phenolic Compounds of Monastrell Vines Under Two Watering Regimes
41. Effect on grape amino acids content of the use of chitosan as alternative to copper against downy mildew (Plasmopara viticola)
42. Estudio de la influencia de la aplicación foliar de jasmonato de metilo y jasmonato de metilo+urea en la composición nitrogenada de uvas de la variedad Tempranillo
43. Influencia de la aplicación foliar de jasmonato de metilo con y sin urea sobre el perfil antociánico de la uva durante su maduración
44. Caracterización en función de la composición nitrogenada de 25 variedades blancas pertenecientes a la colección del ICVV (D.O.Ca. Rioja, España)
45. Explorando el potencial bioestimulante del alga invasora Rugulopterix okamurae en vid
46. Machine Learning-Based Processing of Multispectral and RGB UAV Imagery for the Multitemporal Monitoring of Vineyard Water Status
47. Evolution of the amino acids content through grape ripening: Effect of foliar application of methyl jasmonate with or without urea
48. Effect of regulated deficit irrigation regime on amino acids content of Monastrell (Vitis vinifera L.) grapes
49. Could foliar applications of methyl jasmonate and methyl jasmonate + urea improve must grape aroma composition?
50. Relationships between available-holding water capacity, N-NO3- and K in the soil with parameters of nutritional status, vigour, yield, must and wine composition in the cv. Tempranillo
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