Fine-Tuning Grape Phytochemistry: Examining the Distinct Influence of Oak Ash and Potassium Carbonate Pre-Treatments on Essential Components

Author:

Kaya Ozkan12ORCID,Delavar Hava1,Ates Fadime3ORCID,Yilmaz Turhan4,Sahin Muge5ORCID,Keskin Nurhan6

Affiliation:

1. Department of Plant Sciences, North Dakota State University, Fargo, ND 58102, USA

2. Erzincan Horticultural Research Institute, Republic of Turkey Ministry of Agriculture and Forestry, 24060 Erzincan, Turkey

3. Manisa Viticulture Research Institute, Republic of Turkey Ministry of Agriculture and Forestry, 45125 Manisa, Turkey

4. Faculty of Agriculture, Department of Horticulture, Kahramanmaras Sutcu Imam University, 46040 Kahramanmaras, Turkey

5. Aegean Agricultural Research Institute, Republic of Turkey Ministry of Agriculture and Forestry, 35660 Izmir, Turkey

6. Faculty of Agriculture, Department of Horticulture, Van Yuzuncu Yıl University, 65090 Van, Turkey

Abstract

Understanding the impact of pre-treatment methods on the phytochemical composition of grapes is essential for optimizing grape quality and producing raisins with desirable characteristics. Therefore, this study meticulously analyzed the impact of two distinct pre-treatment methods, oak ash and potassium carbonate (K2CO3), on the composition of essential phytochemical components in grapes. This research encompassed phenolic compounds, anthocyanins, phenolic acids, flavonoids, and phytoalexins. This study investigates the impact of pre-treatment methods, oak ash and K2CO3, on the phytochemical composition of grapes. Significant differences were observed in anthocyanins, flavonoids, phytoalexins, and phenolic acids between the treatments. Oak ash exhibited advantages in preserving specific compounds, including higher levels of anthocyanins, flavonols, flavones, flavanones, catechins, resveratrol, pterostilbene, and viniferin, compared to K2CO3. Notably, the delphinidin-3-O-glycoside content was significantly higher in the oak ash treatment. An analysis of phenolic compounds revealed distinctions in hydroxycinnamic acids, hydroxybenzoic acids, benzaldehyde, and phenylacetaldehyde. Additionally, gallic acid, vanillic acid, trans-caffeic acid, trans-p-coumaric acid, and (-)-epicatechin were significantly more prevalent in the K2CO3 treatment, while ferulic acid and quercetin were more prevalent in the oak ash treatment. These findings underscore the pivotal role of pre-treatment methods in shaping the phytochemical content of grapes, thus holding critical implications for grape-derived products’ quality and potential health benefits.

Publisher

MDPI AG

Reference36 articles.

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5. World Health Organization (2022, May 20). Fruit and Vegetable Promotion Initiative, Available online: https://www.who.int/dietphysicalactivity/publications/trs916/intro/en/.

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