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Grapevine under deficit irrigation: hints from physiological and molecular data

Annals of Botany · 2010 · Vol. 105(5) · pp. 661–676
M. M. ChavesOlfa ZarroukRita FranciscoJ.M. CostaT. P. dos SantosAna RegaladoM. L. RodriguesCarlos M. Lopes

Abstract

How the whole plant acclimatizes to water scarcity and how short- and long-distance chemical and hydraulic signals intervene are reviewed. Chemical compounds synthesized in drying roots are shown to act as long-distance signals inducing leaf stomatal closure and/or restricting leaf growth. This explains why some plants endure soil drying without significant changes in shoot water status. The control of plant water potential by stomatal aperture via feed-forward mechanisms is associated with 'isohydric' behaviour in contrast to 'anysohydric' behaviour in which lower plant water potentials are attained. This review discusses differences in this respect between grapevines varieties and experimental conditions. Mild water deficits also exert direct and/or indirect (via the light environment around grape clusters) effects on berry development and composition; a higher content of skin-based constituents (e.g. tannins and anthocyanins) has generally being reported. Regulation under water deficit of genes and proteins of the various metabolic pathways responsible for berry composition and therefore wine quality are reviewed.

Horticultural and Viticultural ResearchPlant Water Relations and Carbon DynamicsFermentation and Sensory AnalysisDeficit irrigationIrrigationBiologyVineyardWater useAgronomyMediterranean climateYield (engineering)Water-use efficiencyIrrigation management

MeSH terms

Abscisic AcidAdaptation, PhysiologicalWaterPlant TranspirationVitis
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