Effect of the plant sink/source balance on the metabolic content of the Vitis vinifera L. red grape - INRAE - Institut national de recherche pour l’agriculture, l’alimentation et l’environnement
Article Dans Une Revue European Journal of Agronomy Année : 2021

Effect of the plant sink/source balance on the metabolic content of the Vitis vinifera L. red grape

Résumé

Highlights: • Bunch thinning does not increase the contents of molecules of interest in the grape. • Reducing yield induce a loss of metabolites with no fruit quality gains. • Aromatic precursors represent a small fraction of the non-structural C of the grape. • The manipulation of sink/source ratio does not change the metabolic flows to the fruit. Abstract: Despite their low concentration, secondary metabolites are essential to the organoleptic quality of grapevine fruit. Anthocyanins of the fruit skin cells are the principal components of the pigmentation of the red grape. Glycosylated aroma precursors (GAPs), i.e. alcohols, C13norisoprenoids, phenols and terpenes determine the aroma potential of the juice and the resulting wine. The regulation of the sink/source (S/S) balance is considered as a one of the more powerful tools to adapt grape composition to technological objectives. In this study, we have manipulated the S/S of Vitis vinifera varieties and quantified the changes on the accumulation of secondary metabolites at the arrest of phloem unloading in the grape. The results demonstrated that the manipulation of the S/S doesn't de-correlate the accumulation of secondary versus primary metabolites. Decreasing S/S drastically limited the accumulation of either primary metabolites (till-70%), anthocyanins (till-70%) and GAPs (till-81%) per plant, with a huge production shortfall of molecules of interest per cultivated area unit.
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hal-04189368 , version 1 (28-08-2023)

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Hubert Alem, Laurent Torregrosa, Peggy Rigou, Rémi Schneider, Hernán Ojeda. Effect of the plant sink/source balance on the metabolic content of the Vitis vinifera L. red grape. European Journal of Agronomy, 2021, 122, pp.126168. ⟨10.1016/j.eja.2020.126168⟩. ⟨hal-04189368⟩
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