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Water deficit alters differentially metabolic pathways affecting important flavor and quality traits in grape berries of Cabernet Sauvignon and Chardonnay

BMC Genomics · 2009 · Vol. 10(1) · pp. 212–212
Laurent DelucDavid R. QuiliciAlain DécenditJérôme GrimpletMatthew D. WheatleyKaren SchlauchJean‐Michel MérillonJohn C. CushmanGrant R. Cramer

Abstract

The metabolic responses of grapes to water deficit varied with the cultivar and fruit pigmentation. Chardonnay berries, which lack any significant anthocyanin content, exhibited increased photoprotection mechanisms under water deficit conditions. Water deficit increased ABA, proline, sugar and anthocyanin concentrations in Cabernet Sauvignon, but not Chardonnay berries, consistent with the hypothesis that ABA enhanced accumulation of these compounds. Water deficit increased the transcript abundance of lipoxygenase and hydroperoxide lyase in fatty metabolism, a pathway known to affect berry and wine aromas. These changes in metabolism have important impacts on berry flavor and quality characteristics. Several of these metabolites are known to contribute to increased human-health benefits.

Horticultural and Viticultural ResearchPlant biochemistry and biosynthesisFermentation and Sensory AnalysisPhenylpropanoidBerryVeraisonMetabolic pathwayBiologyWine grapeAbscisic acidWinemakingPrimary metaboliteRipening

MeSH terms

Abscisic AcidAldehyde-LyasesAnthocyaninsCarotenoidsCytochrome P-450 Enzyme SystemFruitGenotypeLipoxygenaseOdorantsWaterWineGenes, PlantGene Expression Regulation, PlantRNA, PlantOligonucleotide Array Sequence Analysis

Funding

  • National Science Foundation
  • National Institutes of Health
  • National Center for Research Resources
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