Hydraulics of plants that have different strategies of stomatal regulation under water stress are relatively poorly understood. We explore how root and shoot hydraulics, stomatal conductance ( ), leaf and root aquaporin (AQP) expression, and abscisic acid (ABA) concentration in leaf xylem sap ([ABA]) may be coordinated under mild water stress and exogenous ABA applications in two L. cultivars traditionally classified as near-isohydric (Grenache) and near-anisohydric (Syrah). Under water stress, Grenache exhibited stronger adjustments of plant and root hydraulic conductances and greater stomatal sensitivity to [ABA] than Syrah resulting in greater conservation of soil moisture but not necessarily more isohydric behavior. Correlations between leaf (Ψ) and predawn (Ψ) water potentials between cultivars suggested a "hydrodynamic" behavior rather than a particular iso-anisohydric classification. A significant decrease of Ψ in well-watered ABA-fed vines supported a role of ABA in the soil-leaf hydraulic pathway to regulate . Correlations between leaf and root AQPs expression levels under water deficit could explain the response of leaf ( ) and root ( ) hydraulic conductances in both cultivars. Additional studies under a wider range of soil water deficits are required to explore the possible differential regulation of and plant hydraulics in different cultivars and experimental conditions.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7316991PMC
http://dx.doi.org/10.3389/fpls.2020.00705DOI Listing

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