0000000000320758

AUTHOR

Lorena Vultaggio

showing 4 related works from this author

Configuration of Strawberry Yield, Nutritional and Functional Traits in Response to LPE Application in a Two-Year Study

2023

Lysophosphatidylethanolamine (LPE) is a promising natural lysophospholipid which can be employed as a growth regulator for horticultural purposes. The present research was accomplished to investigate the effects of LPE (0 or 10 ppm) on the yield and quality of “Savana” strawberry plants grown during two consecutive cultivation cycles (I (2020–2021); II (2021–2022)). Plants cultivated in year I and treated with LPE revealed the highest total yield (838.3 g plant−1), marketable yield (735.4 g plant−1) and average marketable fruit weight (39.8 g plant−1). Fruits from year II plants treated with LPE had the highest total phenolics concentration (491.4 m…

protected environmentfoliar applicationfruit qualityproduction<i>Fragaria × ananassa</i>; lysophosphatidylethanolamine; foliar application; protected environment; production; fruit qualityAgronomy and Crop SciencelysophosphatidylethanolamineFragaria x ananassa
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Grafting Eggplant Onto Underutilized Solanum Species and Biostimulatory Action of Azospirillum brasilense Modulate Growth, Yield, NUE and Nutritional…

2022

The grafting of vegetable crops is considered a valuable mean for ensuring the yield and quality under different cultivation conditions. Simultaneously, there are increasing research efforts in exploiting underutilised plants as potential rootstocks for vegetables to increase the sustainability of horticultural systems. In accordance with the European Green Deal, the application of biostimulants is a fashionable and ecological agronomic practice to enhance the production and quality of vegetables. Thus, the current research appraised the synergistic effect of grafting eggplant onto various allied potential rootstocks (Solanum torvum, S. aethiopicum and S. macrocarpon) and of applying a plan…

S. macrocarponS. aethiopicumPGPBS. torvum<i>Solanum melongena</i>; <i>S. torvum</i>; <i>S. aethiopicum</i>; <i>S. macrocarpon</i>; microbial biostimulant; PGPBSolanum melongenaSettore AGR/04 - Orticoltura E FloricolturaPlant ScienceHorticulturemicrobial biostimulantHorticulturae
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Iodine Biofortification and Seaweed Extract-Based Biostimulant Supply Interactively Drive the Yield, Quality, and Functional Traits in Strawberry Fru…

2023

The horticultural sector is seeking innovative and sustainable agronomic practices which could lead to enhanced yield and product quality. Currently, plant biofortification is recognized as a valuable technique to improve microelement concentrations in plant tissues. Among trace elements, iodine (I) is an essential microelement for human nutrition. Concomitantly, the application of biostimulants may improve overall plant production and quality traits. With the above background in mind, an experiment was designed with the aim of assessing the interactive impact of a seaweed extract-based biostimulant (SwE) (0 mL L&minus;1 (served as control) or 3 mL L&minus;1 (optimal dosage)) and 0, 100, 30…

biofortificationstress toleranceEcologybiostimulants; algae extract; biofortification; stress tolerance; abiotic stress; <i>Fragaria</i> × <i>ananassa</i>Plant Sciencealgae extractbiostimulantFragaria × ananassaEcology Evolution Behavior and Systematicsabiotic strePlants
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Current Acquaintance on Agronomic Biofortification to Modulate the Yield and Functional Value of Vegetable Crops: A Review

2023

Fresh vegetables and fruits have always been the mainstays of good nutrition as providers of fiber, beneficial phytochemicals (such as vitamins and phenolic compounds), and minerals. Today and in the future, biofortification is a promising strategy to increase the concentration of these compounds. Considering the importance of minerals in human health, the enrichment of fresh produce for consumption has been considered through specific agronomic approaches. This review discusses, in detail, the latest findings on vegetable agronomic biofortification, aimed at increasing the concentration of crucial minerals, such as iron (Fe), zinc (Zn), iodine (I), selenium (Se), molybdenum (Mo), and silic…

mineraltrace elementsPlant SciencephytochemicalHorticulturehuman diet
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