Application of Kaolin and Italian Natural Chabasite-Rich Zeolitite to Mitigate the Effect of Global Warming in Vitis vinifera L. cv. Sangiovese

Author:

Valentini Gabriele,Pastore Chiara,Allegro GianlucaORCID,Muzzi EnricoORCID,Seghetti Leonardo,Filippetti Ilaria

Abstract

High temperatures and the anomalous distribution of rainfall during the growing season may have a negative impact on grapevine yield and berry composition. In recent years, many studies have focused on the application of agronomical techniques to reduce the negative impact of heat waves on secondary metabolites such as phenols. In particular, treatments with kaolin have shown positive effects on reducing canopy temperatures, enhancing the accumulation of anthocyanins. In regard to the above, three treatments were evaluated: untreated control (C), kaolin (CAO), and chabasite-rich zeolitites (ZEO) applications on cv. Sangiovese in order to verify the cooling effects on leaves and bunches, and the impact on gas exchange, yield parameters, berry composition, and on both chemical and sensory notes of wine. Minerals were sprayed twice around the veraison on the entire canopy at a 3% concentration. The results showed that the application of the minerals was able to reduce the berry temperatures in both years of the trial as compared to the untreated control (C), without affecting vine gas exchange, yield, and soluble solid accumulation. Furthermore, the cooling effect determined an increase in anthocyanin on both the grapes and the wine. At testing, CAO and ZEO wines stood out regarding greater color intensity and were preferred by the judges.

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference71 articles.

1. Statistical Report on World Vitiviniculture,2019

2. Distribution of the World’s Grapevine Varieties,2017

3. Analysis of meteo-climatic variability effects on quality of Brunello di Montalcino wine;Orlandini;Riv. Ital. Agrometeorol.,2005

4. Metabolite Profiling of Grape:  Flavonols and Anthocyanins

5. A Review of the Potential Climate Change Impacts and Adaptation Options for European Viticulture

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