Pomegranate and sweet orange juice have been rigorously examined in the present study as a substrate in the context of distinctive wine production research. An optimization investigation was conducted utilizing the Box-Behnken Response Surface Method (RSM) design. The influences of fermentation parameters, including the ratio of sweet orange in the mixed fruit juice must (SW), fermentation temperature (TF), inoculum size (IS), and ?Brix (BX), on total phenolic concentration (TPC), antioxidant activity (AA), total anthocyanin concentration (ACN), and ascorbic acid equivalent (AAE) were systematically assessed. The findings of the study indicated that a 20% proportion of sweet oranges, with a ?Brix of 23, a fermentation temperature of 26?C, and an inoculum size of 10%, constituted the optimal conditions for the production of high-quality pomegranate-sweet orange mixed fruit juice wine. The results obtained underscore the potential of sweet orange fruit in the advancement of premium pomegranate-sweet orange wine.
References
[1]
Dutoit, W. and Oberholster, A. (2014) Processing and Impact on Anti-Oxidants in Beverages. Elsevier.
[2]
Avellone, G., Di Garbo, V., Campisi, D., De Simone, R., Raneli, G., Scaglione, R., et al. (2005) Effects of Moderate Sicilian Red Wine Consumption on Inflammatory Biomarkers of Atherosclerosis. EuropeanJournalofClinicalNutrition, 60, 41-47. https://doi.org/10.1038/sj.ejcn.1602265
[3]
Cordova, A. and Sumpio, B. (2009) Polyphenols Are Medicine: Is It Time to Prescribe Red Wine for Our Patients? InternationalJournalofAngiology, 18, 111-117. https://doi.org/10.1055/s-0031-1278336
[4]
NRCP (2008) Annual Report 2007-2008. National Research Centre on Pomegranate, Solapur, Maharashtra, India. 1-23.
[5]
Patil, M.B. and Panchal, V.M. (2016) Comparative Studies on ‘Nucellar’, ‘Sathgudi’ and ‘Local’ Sweet Orange (Mosambi) (Citrus Sinensis Osbeck.) under Marathwada Conditions. JournalofHorticulturalSciences, 11, 44-46. https://doi.org/10.24154/jhs.v11i1.102
[6]
Shahrajabian, M.H., Sun, W. and Cheng, Q. (2021) Pomegranate, Fruit of the Desert, a Functional Food, and a Healthy Diet. NotulaeScientiaBiologicae, 13, 11085. https://doi.org/10.15835/nsb13311085
[7]
Bhardwaj, R.L., Nandal, U., Pal, A. and Jain, S. (2014) Bioactive Compounds and Medicinal Properties of Fruit Juices. Fruits, 69, 391-412. https://doi.org/10.1051/fruits/2014027
[8]
Liang, C. (1999) An Industrial Analysis of the United States wine Industry, World Wine Industry, and China Wine Industry. Master’s Thesis, University of Wisconsin—Stout.
[9]
Petrova, N. and Stefanova, A. (2020) Theoretical Overview of the Factors Affecting Wine Production. TrakiaJournalofSciences, 18, 619-624. https://doi.org/10.15547/tjs.2020.s.01.099
[10]
Market-Growth, G. (2019) Trends, and Forecast (2020-2025). Mordor Intelligence.
[11]
Asgary, S., Zarfeshany, A. and Javanmard, S. (2014) Potent Health Effects of Pomegranate. AdvancedBiomedicalResearch, 3, 100. https://doi.org/10.4103/2277-9175.129371
[12]
Tsegay, Z.T. and Lemma, S.M. (2020) Response Surface Optimization of Cactus Pear (OpuntiaFicus-Indica) with Lantana Camara (L.camara) Fruit Fermentation Process for Quality Wine Production. InternationalJournalofFoodScience, 2020, Article ID: 8647262. https://doi.org/10.1155/2020/8647262
[13]
Bhoite, A.A., Gaikwad, N.N., Sathe, S.J., Banerjee, K. and Dhanshetty, P.M. (2019) Fermentation Studies on Pomegranate and Sweet Orange Blended Juice. Annals Food Science and Technology, 20, 735-745.
[14]
Bruns, R.E., Scarmino, I.S. and Barros Neto, B. (2006) Statistical Design—Chemometrics. Elsevier.
[15]
Vohra, A. and Satyanarayana, T. (2002) Statistical Optimization of the Medium Components by Response Surface Methodology to Enhance Phytase Production by Pichia Anomala. ProcessBiochemistry, 37, 999-1004. https://doi.org/10.1016/s0032-9592(01)00308-9
[16]
Harris, L.J. and Ray, S.N. (1935) Determination of Plasma Ascorbic Acid by 2, 6-Dichlorophenol Indophenol Titration.
[17]
Singleton, V.L. and Rossi, J.A. (1965) Colorimetry of Total Phenolics with Phosphomolybdic-Phosphotungstic Acid Reagents. AmericanJournalofEnologyandViticulture, 16, 144-158. https://doi.org/10.5344/ajev.1965.16.3.144
[18]
Wrolstad, R.E., Durst, R.W. and Lee, J. (2005) Tracking Color and Pigment Changes in Anthocyanin Products. TrendsinFoodScience&Technology, 16, 423-428. https://doi.org/10.1016/j.tifs.2005.03.019
[19]
Benzie, I.F.F. and Strain, J.J. (1996) The Ferric Reducing Ability of Plasma (FRAP) as a Measure of “Antioxidant Power”: The FRAP Assay. AnalyticalBiochemistry, 239, 70-76. https://doi.org/10.1006/abio.1996.0292
[20]
Montgomery, D.C. (2017) Design and Analysis of Experiments. John Wiley & Sons.
[21]
Peng, Z., Duncan, B., Pocock, K.F. and Sefton, M.A. (1998) The Effect of Ascorbic Acid on Oxidative Browning of White Wines and Model Wines. AustralianJournalofGrapeandWineResearch, 4, 127-135. https://doi.org/10.1111/j.1755-0238.1998.tb00141.x
[22]
Tchabo, W., Ma, Y., Kwaw, E., Zhang, H. and Li, X. (2017) Influence of Fermentation Parameters on Phytochemical Profile and Volatile Properties of Mulberry (Morusnigra) Wine. JournaloftheInstituteofBrewing, 123, 151-158. https://doi.org/10.1002/jib.401
[23]
Valentine, G.D.S., Walker, M.E., Gardner, J.M., Schmid, F. and Jiranek, V. (2018) Brief Temperature Extremes during Wine Fermentation: Effect on Yeast Viability and Fermentation Progress. AustralianJournalofGrapeandWineResearch, 25, 62-69. https://doi.org/10.1111/ajgw.12365
[24]
Plamada, D., Nemes, A.S., Teleky, B.E., Pascuta, M.S., Odocheanu, R., Mitrea, L., et al. (2024) Microbial Production of Aromatic Phenolic Compounds. In: Jafari, S.M., Harzevili, F.D., Eds., MicrobialProductionofFoodBioactiveCompounds, Springer, 1-24. https://doi.org/10.1007/978-3-030-81403-8_53-1
[25]
Messens, W. and De Vuyst, L. (2002) Inhibitory Substances Produced by Lactobacilli Isolated from Sourdoughs—A Review. InternationalJournalofFoodMicrobiology, 72, 31-43. https://doi.org/10.1016/s0168-1605(01)00611-0
[26]
Othman, N.B., Roblain, D., Chammen, N., Thonart, P. and Hamdi, M. (2009) Antioxidant Phenolic Compounds Loss during the Fermentation of Chétoui Olives. FoodChemistry, 116, 662-669. https://doi.org/10.1016/j.foodchem.2009.02.084
[27]
Ng, C., Wang, C., Wang, Y., Tzeng, W. and Shyu, Y. (2011) Lactic Acid Bacterial Fermentation on the Production of Functional Antioxidant Herbal Anoectochilusformosanus Hayata. JournalofBioscienceandBioengineering, 111, 289-293. https://doi.org/10.1016/j.jbiosc.2010.11.011
[28]
Zhou, K. and Yu, L. (2004) Effects of Extraction Solvent on Wheat Bran Antioxidant Activity Estimation. LWT—FoodScienceandTechnology, 37, 717-721. https://doi.org/10.1016/j.lwt.2004.02.008
[29]
Lee, J., Kang, T.H., Um, B.H., Sohn, E., Han, W., Ji, S., et al. (2013) Evaluation of Physicochemical Properties and Fermenting Qualities of Apple Wines Added with Medicinal Herbs. FoodScienceandBiotechnology, 22, 1039-1046. https://doi.org/10.1007/s10068-013-0181-y
[30]
Li, Z., Teng, J., Lyu, Y., Hu, X., Zhao, Y. and Wang, M. (2018) Enhanced Antioxidant Activity for Apple Juice Fermented with Lactobacillus Plantarum ATCC14917. Molecules, 24, 51. https://doi.org/10.3390/molecules24010051
[31]
Gan, R., Shah, N.P., Wang, M., Lui, W. and Corke, H. (2016) Fermentation Alters Antioxidant Capacity and Polyphenol Distribution in Selected Edible Legumes. InternationalJournalofFoodScience&Technology, 51, 875-884. https://doi.org/10.1111/ijfs.13062
[32]
Călinoiu, L.F., Cătoi, A. and Vodnar, D.C. (2019) Solid-state Yeast Fermented Wheat and Oat Bran as a Route for Delivery of Antioxidants. Antioxidants, 8, Article 372. https://doi.org/10.3390/antiox8090372
[33]
Maury, C., Clark, A.C. and Scollary, G.R. (2010) Determination of the Impact of Bottle Colour and Phenolic Concentration on Pigment Development in White Wine Stored under External Conditions. AnalyticaChimicaActa, 660, 81-86. https://doi.org/10.1016/j.aca.2009.11.048
[34]
Oancea, S., Stoia, M. and Coman, D. (2012) Effects of Extraction Conditions on Bioactive Anthocyanin Content of Vacciniumcorymbosum in the Perspective of Food Applications. ProcediaEngineering, 42, 489-495. https://doi.org/10.1016/j.proeng.2012.07.440
[35]
Watanabe, Y., Yoshimoto, K., Okada, Y. and Nomura, M. (2011) Effect of Impregnation Using Sucrose Solution on Stability of Anthocyanin in Strawberry Jam. LWT—FoodScienceandTechnology, 44, 891-895. https://doi.org/10.1016/j.lwt.2010.11.003
[36]
Sui, X., Dong, X. and Zhou, W. (2014) Combined Effect of pH and High Temperature on the Stability and Antioxidant Capacity of Two Anthocyanins in Aqueous Solution. FoodChemistry, 163, 163-170. https://doi.org/10.1016/j.foodchem.2014.04.075
[37]
He, F., Liang, N., Mu, L., Pan, Q., Wang, J., Reeves, M.J., et al. (2012) Anthocyanins and Their Variation in Red Wines I. Monomeric Anthocyanins and Their Color Expression. Molecules, 17, 1571-1601. https://doi.org/10.3390/molecules17021571
[38]
Marquez, A., Serratosa, M.P. and Merida, J. (2013) Pyranoanthocyanin Derived Pigments in Wine: Structure and Formation during Winemaking. JournalofChemistry, 2013, Article ID: 713028. https://doi.org/10.1155/2013/713028
[39]
Morata, A., Gómez-Cordovés, M.C., Calderón, F. and Suárez, J.A. (2006) Effects of pH, Temperature and SO2 on the Formation of Pyranoanthocyanins during Red Wine Fermentation with Two Species of Saccharomyces. InternationalJournalofFoodMicrobiology, 106, 123-129. https://doi.org/10.1016/j.ijfoodmicro.2005.05.019
[40]
María, M. and Begona, B. (2009) Anthocyanins and Anthocyanin Derived Compounds. In: Moreno-Arribas, M.V.P. and Carmen, M., Eds., WineChemistryandBiochemistry, Springer, 439-462.
[41]
Peng, B., Lei, Y., Zhao, H. and Cui, L. (2015) Response Surface Methodology for Optimization of Fermentation Process Parameters for Improving Apple Wine Quality. JournalofFoodScienceandTechnology, 52, 7513-7518. https://doi.org/10.1007/s13197-015-1872-6
[42]
Schvab, M.D.C., Ferreyra, M.M., Davies, C.V., Stefani, A., Cayetano, M.C., Gerard, L.M., et al. (2015) Effects of Orange Winemaking Variables on Antioxidant Activity and Bioactive Compounds. FoodScienceandTechnology, 35, 407-413. https://doi.org/10.1590/1678-457x.6571
[43]
Hsu, H., Tsai, Y., Fu, C. and Wu, J.S. (2012) Degradation of Ascorbic Acid in Ethanolic Solutions. JournalofAgriculturalandFoodChemistry, 60, 10696-10701. https://doi.org/10.1021/jf3032342
[44]
Chuang, P., Shen, S. and Wu, J.S. (2011) Browning in Ethanolic Solutions of Ascorbic Acid and Catechin. JournalofAgriculturalandFoodChemistry, 59, 7818-7824. https://doi.org/10.1021/jf200817e
[45]
Jagadeesh, U., Mythra, R., Prathima, M.N., Bhagyashree, K.B., Ashoka, S., Srikanth, G.S., et al. (2022) Effect of Fermentation Period on Alcohol Content, pH, TSS and Titrable Acidity during Microbial Processing of Coconut Water for the Development of Coconut Wine. AsianJournalofDairyandFoodResearch. https://doi.org/10.18805/ajdfr.dr-1962