Terroir Influence on Polyphenol Metabolism from Grape Canes: A Spatial Metabolomic Study at Parcel Scale

Author:

Billet Kévin12ORCID,Salvador-Blanes Sébastien3,Dugé De Bernonville Thomas14,Delanoue Guillaume5,Hinschberger Florent3,Oudin Audrey1ORCID,Courdavault Vincent1ORCID,Pichon Olivier1,Besseau Sébastien1ORCID,Leturcq Samuel6ORCID,Giglioli-Guivarc’h Nathalie1,Lanoue Arnaud1ORCID

Affiliation:

1. EA 2106 “Biomolécules et Biotechnologies Végétales”, UFR des Sciences Pharmaceutiques, Université de Tours, 31 av. Monge, F-37200 Tours, France

2. INRAE, UR1268 BIA, Team Polyphenol, Reactivity & Processing (PRP), F-35653 Le Rheu, France

3. GéoHydrosystèmes Continentaux (GéHCO), EA 6293, Université de Tours, F-37200 Tours, France

4. Limagrain, Centre de Recherche, Route d’Ennezat, F-63720 Chappes, France

5. Institut Français de la Vigne et du Vin, F-37400 Amboise, France

6. Laboratoire CITERES, Equipe Laboratoire Archéologie et Territoires (LAT), UMR 7324 CNRS, Université de Tours, F-37200 Tours, France

Abstract

The composition of bioactive polyphenols from grape canes, an important viticultural byproduct, was shown to be varietal-dependent; however, the influence of soil-related terroir factors remains unexplored. Using spatial metabolomics and correlation-based networks, we investigated how continuous changes in soil features and topography may impact the polyphenol composition in grape canes. Soil properties, topography, and grape cane extracts were analyzed at georeferenced points over 3 consecutive years, followed by UPLC-DAD-MS-based metabolomic analysis targeting 42 metabolites. Principal component analyses on intra-vintage metabolomic data presented a good reproducibility in relation to geographic coordinates. A correlation-driven approach was used to explore the combined influence of soil and topographic variables on metabolomic responses. As a result, a metabolic cluster including flavonoids was correlated with elevation and curvature. Spatial metabolomics driven by correlation-based networks represents a powerful approach to spatialize field-omics data and may serve as new field-phenotyping tool in precision agriculture.

Funder

Region Centre-Val de Loire

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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