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Plant-Based Biostimulant as Sustainable Alternative to Synthetic Growth Regulators in Two Sweet Cherry Cultivars.
Basile, Boris; Brown, Natalie; Valdes, José Miguel; Cardarelli, Mariateresa; Scognamiglio, Pasquale; Mataffo, Alessandro; Rouphael, Youssef; Bonini, Paolo; Colla, Giuseppe.
  • Basile B; Department of Agricultural Sciences, University of Naples Federico II, 80055 Portici, Italy.
  • Brown N; Research and Development Department-In-Pacta, Santiago, Chile.
  • Valdes JM; Research and Development Department-In-Pacta, Santiago, Chile.
  • Cardarelli M; Consiglio Per la Ricerca in Agricoltura e L'analisi Dell'economia Agraria, Centro di Ricerca Orticoltura e Florovivaismo, 84098 Pontecagnano Faiano, Italy.
  • Scognamiglio P; Department of Agricultural Sciences, University of Naples Federico II, 80055 Portici, Italy.
  • Mataffo A; Department of Agricultural Sciences, University of Naples Federico II, 80055 Portici, Italy.
  • Rouphael Y; Department of Agricultural Sciences, University of Naples Federico II, 80055 Portici, Italy.
  • Bonini P; oloBion-OMICS LIFE LAB, Barcelona, Spain.
  • Colla G; Department of Agriculture and Forest Sciences, University of Tuscia, 01100 Viterbo, Italy.
Plants (Basel) ; 10(4)2021 Mar 24.
Article en En | MEDLINE | ID: mdl-33805215
ABSTRACT
Sweet cherry is a high value crop and the economic success of its cultivation depends not only on yield but also on fruit visual and nutritional quality attributes that influence consumer acceptability, as well as on fruit post-harvest performance and resistance to cracking. During the last few decades, cherry growers have tried to achieve these goals through exogenous applications of synthetic plant hormones and/or nutrients, but there is growing concern about the sustainability of the extensive use of these compounds in agriculture. For this reason, there is increasing interest in the possible adoption of different classes of biostimulants as sustainable alternatives to plant growth regulators. This research aimed to study the impact of foliar application of a novel tropical-plant extract, performed between full bloom and fruit set, on the yield and fruit quality of two important commercial sweet cherry cultivars, Kordia and Regina. The experimental design included a commercial control involving the application of a cytokinin promoter. In both cultivars, the tropical-plant extract induced significant increases in fruit yield. In addition, in the cultivar Kordia, the tropical-plant extract enhanced fruit calcium concentration, soluble solids content, flesh firmness, and skin color by 26.2%, 11.8%, 6.7%, and 12.0% (of fruits with mahogany skin color), respectively. Our results suggest that the tropical-plant extract tested as a biostimulant may be a sustainable and effective alternative to the exogenous application of synthetic hormones for sweet cherry cultivation.
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