Grape Composition under Abiotic Constrains: Water Stress and Salinity
- PMID: 28611795
- PMCID: PMC5447678
- DOI: 10.3389/fpls.2017.00851
Grape Composition under Abiotic Constrains: Water Stress and Salinity
Abstract
Water stress and increasing soil salt concentration represent the most common abiotic constrains that exert a negative impact on Mediterranean vineyards performance. However, several studies have proven that deficit irrigation strategies are able to improve grape composition. In contrast, irrigation with saline waters negatively affected yield and grape composition, although the magnitude of these effects depended on the cultivar, rootstock, phenological stage when water was applied, as well as on the salt concentration in the irrigation water. In this context, agronomic practices that minimize these effects on berry composition and, consequently, on wine quality must be achieved. In this paper, we briefly reviewed the main findings obtained regarding the effects of deficit irrigation strategies, as well as irrigation with saline water, on the berry composition of both red and white cultivars, as well as on the final wine. A meta-analysis was performed using published data for red and white varieties; a general liner model accounting for the effects of cultivar, rootstock, and midday stem water potential was able to explain up to 90% of the variability in the dataset, depending on the selected variable. In both red and white cultivars, berry weight, must titratable acidity and pH were fairly well simulated, whereas the goodness-of-fit for wine attributes was better for white cultivars.
Keywords: Vitis vinifera L.; anthocyanins; deficit irrigation; saline water; sugars; titratable acidity; wine.
References
-
- Acevedo-Opazo C., Ortega-Farias S., Fuentes S. (2010). Effects of grapevine (Vitis vinifera L.) water status on water consumption, vegetative growth and grape quality: an irrigation scheduling application to achieve regulated deficit irrigation. Agric. Water Manage. 97 956–964. 10.1016/j.agwat.2010.01.025 - DOI
-
- Balint G., Reynolds A. G. (2013). Effects of different irrigation strategies on vine physiology, yield, grape composition and sensory profile of Sauvignon blanc (Vitis vinifera L.) in a cool climate area. J. Int. Sci. Vigne Vin 47 159–181. 10.20870/oeno-one.2013.47.3.1547 - DOI
-
- Balint G., Reynolds A. G. (2017). Irrigation level and time of imposition impact vine physiology, yield components, fruit composition and wine quality of Ontario Chardonnay. Sci. Hortic. 214 252–272. 10.1016/j.scienta.2016.11.052 - DOI
-
- Bindon K., Dry P., Loveys B. (2008). Influence of partial rootzone drying on the composition and accumulation of anthocyanins in grape berries (Vitis vinifera c. Cabernet Sauvignon). Aust. J. Grape Wine Res. 14 91–103. 10.1111/j.1755-0238.2008.00009.x - DOI
-
- Bindon K., Myburgh P., Oberholster A., Roux K., Du Toit C. (2011). Response of grape and wine phenolic composition in Vitis vinifera L. cv. Merlot to variation in grapevine water status. S. Afr. J. Enol. Vitic. 32 71–88.
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