| [1] | A. C. de Q. Pinto et al., Annona species. International Centre for Underutilised Crops, University of Southampton, 2005. |
| |
| [2] | P. Padmanabhan and G. Paliyath, “Annonaceous Fruits,” Encyclopedia of Food and Health, pp. 169–173, Jan. 2016. |
| |
| [3] | C. Julio Márquez Cardozo and J. Régulo Cartagena Valenzuela, “Physico-chemical properties of the soursop fruit (Annona muricata L. cv. Elita) in postharvest,” 2012. |
| |
| [4] | G. Berumen-Varela, M. A. Hernández-Oñate, and M. E. Tiznado-Hernández, “Utilization of biotechnological tools in soursop (Annona muricata L.),” Scientia Horticulturae, vol. 245. Elsevier B.V., pp. 269–273, Feb. 09, 2019. |
| |
| [5] | S. B. Patel and J. Patel, “A review on a miracle fruits of Annona muricata,” J Pharmacogn Phytochem, 2016. |
| |
| [6] | S. Z. Moghadamtousi, M. Fadaeinasab, S. Nikzad, G. Mohan, H. M. Ali, and H. A. Kadir, “Annona muricata (Annonaceae): A Review of Its Traditional Uses, Isolated Acetogenins and Biological Activities,” Int J Mol Sci, vol. 16, no. 7, pp. 15625–15658, Jul. 2015. |
| |
| [7] | S. B. Sanusi and M. F. Abu Bakar, “Soursop—Annona muricata,” in Exotic Fruits Reference Guide, Elsevier, 2018, pp. 391–395. |
| |
| [8] | I. L. Santos, A. M. da C. Rodrigues, E. R. Amante, and L. H. M. da Silva, “Soursop (Annona muricata) Properties and Perspectives for Integral Valorization,” Foods, vol. 12, no. 7. MDPI, Apr. 01, 2023. |
| |
| [9] | C. W. Ho et al., “Functional beverage production using acetous fermentation of soursop: Physicochemical, toxicity and organoleptic properties,” Food Biosci, vol. 39, Feb. 2021. |
| |
| [10] | M. A. da Silva Santos, P. V. L. Ribeiro, C. P. Andrade, A. R. G. Machado, P. G. de Souza, and L. de Souza Kirsch, “Physicochemical And Sensory Analysis Of Craft Beer Made With Soursop (Annona muricata L.),” Acta Sci Pol Technol Aliment, vol. 20, no. 1, pp. 103–112, 2021. |
| |
| [11] | C. W. Ho, A. Lazim, S. Fazry, U. K. H. Hussain Zaki, S. Massa, and S. J. Lim, “Alcoholic fermentation of soursop (Annona muricata) juice via an alternative fermentation technique,” J Sci Food Agric, vol. 100, no. 3, pp. 1012–1021, Feb. 2020. |
| |
| [12] | R. N. Okigbo and O. Obire, “Mycoflora and production of wine from fruits of soursop (Annona muricata L.),” International Journal of Wine Research, vol. 1, no. 1, pp. 1–9, 2008. |
| |
| [13] | T. Bucher, K. Deroover, and C. Stockley, “Low-alcohol wine: A narrative review on consumer perception and behaviour,” Beverages, vol. 4, no. 4. MDPI AG, Dec. 01, 2018. |
| |
| [14] | L. V. A. Reddy and O. V. S. Reddy, “Effect of fermentation conditions on yeast growth and volatile composition of wine produced from mango (Mangifera indica L.) fruit juice,” Food and Bioproducts Processing, vol. 89, no. 4, pp. 487–491, Oct. 2011. |
| |
| [15] | P. R. Lee, Y. L. Ong, B. Yu, P. Curran, and S. Q. Liu, “Profile of volatile compounds during papaya juice fermentation by a mixed culture of Saccharomyces cerevisiae and Williopsis saturnus,” Food Microbiol, vol. 27, no. 7, pp. 853–861, Oct. 2010. |
| |
| [16] | P. T. Huan, N. M. Hien, and N. H. T. Anh, “Optimization of alcoholic fermentation of dragon fruit juice using response surface methodology,” Food Res, vol. 4, no. 5, pp. 1529–1536, Oct. 2020. |
| |
| [17] | N. Minh, “Production of Fermented Beverage from Soursop Fruit,” 2015. |
| |
| [18] | D. Libkind et al., “Microbe domestication and the identification of the wild genetic stock of lager-brewing yeast,” Proc Natl Acad Sci U S A, vol. 108, no. 35, pp. 14539–14544, Aug. 2011. |
| |
| [19] | C. Belloch, S. Orlic, E. Barrio, and A. Querol, “Fermentative stress adaptation of hybrids within the Saccharomyces sensu stricto complex,” Int J Food Microbiol, vol. 122, no. 1–2, pp. 188–195, Feb. 2008. |
| |
| [20] | A. Serra, P. Strehaiano, and P. Taillandier, “Influence of temperature and pH on Saccharomyces bayanus var. uvarum growth; impact of a wine yeast interspecific hybridization on these parameters,” Int J Food Microbiol, vol. 104, no. 3, pp. 257–265, Oct. 2005. |
| |
| [21] | D. D. Frey and H. Wang, “Adaptive one-factor-at-a-time experimentation and expected value of improvement,” Technometrics, vol. 48, no. 3, pp. 418–431, Aug. 2006. |
| |
| [22] | Association of Official Analytical Chemist (AOAC), “Official Methods of Analysis,” 2010. |
| |
| [23] | R. S. Kirk, Ronald. Sawyer, and H. Egan, “Pearson’s Composition and Analysis of Foods.,” p. 708, 1991. |
| |
| [24] | I. E. Mbaeyi-Nwaoha and C. N. Ajumobi, “Production and microbial evaluation of table wine from tamarind (Tamarindus indica) and soursop (Annona muricata),” J Food Sci Technol, vol. 52, no. 1, pp. 105–116, Jan. 2015. |
| |
| [25] | A. V. Gusakov, E. G. Kondratyeva, and A. P. Sinitsyn, “Comparison of Two Methods for Assaying Reducing Sugars in the Determination of Carbohydrase Activities,” Int J Anal Chem, vol. 2011, pp. 1–4. |
| |
| [26] | M. Obanda, P. O. Owuor, and S. J. Taylor, “Flavanol Composition and Caffeine Content of Green Leaf as Quality Potential Indicators of Kenyan Black Teas,” J Sci Food Agric, vol. 74, pp. 209–215, 1997. |
| |
| [27] | N. T. Hanh et al., “Removal of tannins from cashew (Anacardium occidentale L.) apple juice in Binh Phuoc (Viet Nam) by using enzymatic method,” Journal of Law and Sustainable Development, 2023. |
| |
| [28] | M. Trejo, P. Bhuyar, Y. Unpaprom, N. Dussadee, and R. Ramaraj, “Advancement of fermentable sugars from fresh elephant ear plant weed for efficient bioethanol production,” Environ Dev Sustain, vol. 24, no. 5, pp. 7377–7387, May 2022. |
| |
| [29] | M. Atanasova, G. Yordanova, R. Nenkova, Y. Ivanov, T. Godjevargova, and D. Dinev, “Brewing yeast viability measured using a novel fluorescent dye and image cytometer,” Biotechnology & Biotechnological Equipment, vol. 33, no. 1, pp. 548–558, Jan. 2019. |
| |
| [30] | I. A. Bakr, F. El-Gazzar, N. H. Gomah, T. Mohamed, and A. Moneeb, “Characteristics of sweet acidophilus milk fortified with graviola (Annona muricata) juice,” 2020. |
| |
| [31] | E. N. A. De Oliveira, D. D. C. Santos, Y. M. G. Dos Santos, P. R. Buchweitz, and J. P. Gomes, “Soursop liquor processing: influence of the process variables on the physical and chemical characteristics,” Revista Caatinga, vol. 29, no. 1, pp. 246–256, Jan. 2016. |
| |
| [32] | N. S. M. Zaini, R. N. Ng, K. J. D. Abedelazeez, H. Idris, and M. H. A. Rahim, “The Nutritional, Physico-chemical, and Antioxidant Changes during the Production of Soursop Vinegar Influenced by Yeast and Aeration,” Pertanika J Trop Agric Sci, vol. 47, no. 1, pp. 177–189, Feb. 2024. |
| |
| [33] | C. Ho et al., “Alcoholic fermentation of soursop (Annona muricata) juice through alternative fermentation technique,” Journal of the Science of Food and Agriculture, 2019. |
| |
| [34] | M. R. Pérez-Gregorio, J. Regueiro, E. Alonso-González, L. M. Pastrana-Castro, and J. Simal-Gándara, “Influence of alcoholic fermentation process on antioxidant activity and phenolic levels from mulberries (Morus nigra L.),” LWT - Food Science and Technology, vol. 44, no. 8, pp. 1793–1801, Oct. 2011. |
| |