Physicochemical and nutritional composition of raisin made from different grape varieties

Published

2025-12-31

DOI:

https://doi.org/10.58993/ijh/2025.82.4.13

Keywords:

Vitis vinifera, dried grapes, minerals, physicochemical parameters, health benefits
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Authors

  • R G Somkuwar ICAR-National Research Centre for Grapes, Pune, Maharashtra 412307, India
  • R.D. Nale Department of Horticulture, Mahatma Phule Krishi Vidyapeeth, Rahuri, Maharashtra 413722
  • Ajay Kumar Upadhyay ICAR-National Research Centre for Grapes, Pune, Maharashtra 412307, India
  • A. K. Sharma ICAR-National Research Centre for Grapes, Pune, Maharashtra 412307, India

Abstract

Raisins are dried grapes consumed globally that contain essential nutrient components for human health and their ability to reduce the risk of several chronic diseases. The quality of raisin is important as it has direct impact on consumer’s health. We aimed to study physiochemical and nutritional traits of seeded raisin varieties. Physicochemical parameters such as raisin weight, raisin recovery, pH, moisture, ash content and mineral content such as potassium, phosphorus, calcium, magnesium, sodium, copper, iron and zinc were assessed. Results revealed that Red Globe had maximum raisin weight and diameters while Black Champa has maximum raisin recovery. Highest calcium, iron and copper content was noted in E5/20 (Anab-E-Shahi × Black Champa). Maximum potassium and phosphorus content was noted in Muscat Hamburg. The consumer acceptability score of both raisins was found at par.

How to Cite

Somkuwar, R. G., Nale, R., Upadhyay, A. K., & Sharma, A. K. (2025). Physicochemical and nutritional composition of raisin made from different grape varieties. Indian Journal of Horticulture, 82(04), 465–470. https://doi.org/10.58993/ijh/2025.82.4.13

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References

1. Ahamad, S., Asrey, R., Menaka, M., Vinod, B. R., Kumar, D. and Balubhai, T. P. 2025. 24- Epibrassinolide treatment boosts bioactive compound preservation, delays softening and extends shelf life of cherry tomatoes during storage. Food Chem. 145051.

2. Ahamad, S., Asrey, R., Singh, A. K., Sethi, S., Joshi, A., Vinod, B. R. and Choupdar, G. K. 2024. Melatonin treatment enhances bioactive compound retention, antioxidant activity and shelf-life of bell pepper (Capsicum annuum L.) during cold storage. Int. J. Food Sci. Technol., 59(10): 7918-7931.

3. Ahamad, S., Asrey, R., Vinod, B. R., Meena, N. K., Menaka, M., Prajapati, U. and Saurabh, V. 2024. Maintaining postharvest quality and enhancing shelf-life of bell pepper (Capsicum annuum L.) using brassinosteroids: A novel approach. S. Afr.J. Bot. 169: 402-412.

4. Ahamad, S., Sagar, V. R., Asrey, R., Islam, S., Tomar, B. S., Vinod, B. R. and Kumar, A. 2024. Nutritional retention and browning minimisation in dehydrated onion slices through potassium metabisulphite and sodium chloride pre-treatments. Int. J. Food Sci.Technol. 59(8): 5794-5805.

5. Gary, W. and Arianna, C. 2010. Polyphenol content and health benefits of raisins. Nutr. Res. 30(8): 511–519.

6. Ghrairi, F., Lahouar, L., Brahmi, F., Ferchichi, A., Achour, L. and Said, S. 2013. Physicochemical composition of different varieties of raisins (Vitis vinifera L.) from Tunisia. Ind. Crops Prod. 43:73-77.

7. Goldstein, D.S. 2019. How does homeostasis happen? Integrative physiological, systems biological, and evolutionary perspectives. Am.J. Physiol. Regul. Integr. Comp. Physiol. 316:301–317.

8. Haryanto, B., Suksmasari, T., Wintergerst, E.S. and Maggini, S. 2015 Multivitamin supplementation supports immune function and ameliorates conditions triggered by reduced air quality. Vitam. Miner., 4: 2376-1318.

9. He, F. and MacGregor, G. 2008. Beneficial effects of potassium on human health. J. Plant. Biol. 133: 725–735.

10. Jeszka-Skowron, M. and Czarczynska-Goslinska, B. 2020. Raisins and the other dried fruits: Chemical profile and health benefits. In The Mediterranean Diet (pp. 229-238). Academic Press.

11. Li, Y.O. and Komarek, A. R. 2017. Dietary fibre basics: Health, nutrition, analysis, and applications. Food Qual. Saf. 1: 47–59.

12. Lim, K., Riddell, J., Nowson, A., Booth, O. and Szymlek-Gay, A. 2013. Iron and zinc nutrition in the economically-developed world: A Review. Nutrients. 5(8): 3184-3211.

13. Maki, R. R. and Yasin, S. S. 2023. A study of the chemical composition, vitamins and minerals of four varieties of raisins. In IOP Conference Series: Earth and Environmental Science (Vol. 1262, No. 6, p. 062026). IOP Publishing.

14. Niketh, S. A. and Keshamma E. 2024. Study of the proximate and mineral composition of commercial raisin (Vitis vinifera L.) varieties. Afr. J. Bio. Sc. 6(9): 3544-3552.

15. Olivati, C., de Oliveira Nishiyama, Y. P., de Souza, R. T., Janzantti, N. S., Mauro, M. A., Gomes, E. and Lago-Vanzela, E. S. 2019. Effect of the pretreatment and the drying process on the phenolic composition of raisins produced with a seedless Brazilian grape cultivar. Food Res. Int. 116: 190-199.

16. Olmo-Cunillera, A., Escobar-Avello, D., Perez, A. J., Marhuenda-Munoz, M., Lamuela-Raventos, R. M. and Vallverdu-Queralt, A. 2019. Is eating raisins healthy? Nutrients, 12(1): 54.

17. Sharma, J., Upadhyay, A. K., Sawant, S. D. and Sawant, I. S. 2009. Studies on shiny spot symptom development on grapevine leaves and its effect on fruitfulness, disease incidence and vine yield. Ind. J. Horti. 66(1): 48-52.

18. Somkuwar, R. G., Bondage, D. D., Surange, M., Navale, S. and Sharma, A. K. 2013. Yield, raisin recovery and biochemical characters of fresh and dried grapes (raisin) of Thompson Seedless grapes (Vitis vinifera) as influenced by different rootstocks. Ind. J. Agril. Sci, 83: 924-927.

19. Somkuwar, R. G., Ghule, V. S., Sharma, A. K. and Naik, S. 2023. Evaluation of grape varieties for raisin purposes under tropical conditions of India. Grape Insight, 75-80.

20. Somkuwar, R. G., Kad, S., Naik, S., Sharma, A. K., Bhange, M. A. and Bhongale, A. K. 2020. Study on quality parameters of grapes (Vitis vinifera) and raisins affected by grape type. Ind.J. Agril. Sci. 90(6): 1072-1075.

21. Somkuwar, R. G., Kakade, P. B., Ghule, V. S. and Sharma, A. K. 2024. Performance of grape varieties for raisin recovery and raisin quality under semi-arid tropics. Plant Arch. 24: 61-66.

22. Somkuwar, R. G., Naik, S., Sharma, A. K. and Bhange, M. A. 2019. Performance of grape varieties grown under tropical regions for raisin yield and quality. Ind. J. Horti. 76(2): 355-357.

23. Tardy, A. L., Pouteau, E., Marquez, D., Yilmaz, C. and Scholey, A. 2020. Vitamins and minerals for energy, fatigue, and cognition: a narrative review of the biochemical and clinical evidence. Nutrients, 12(1): 228.

24. Whelton, P., He, J., Cutler, J., Brancati, F., Appel, L., Follmann, D. and Kleg, M. 1997. Effects of oral potassium on blood pressure. Metaanalysis of randomized controlled clinical trials. J. Am. Med. Assoc. 277: 1624–163.

25. Zemni, H., Sghaier, A. and Khiari, R. 2017. Physicochemical, phytochemical and mycological characteristics of italia muscat raisins obtained using different pre-treatments and drying techniques. Food Bioprocess Technol. 10: 479–490.

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