Potential of Seriales, Flacourtia jangomas (Lour.) Raeusch, fruit for wine production
Lynette C Cimafranca | Erlinda I. Dizon
Abstract:
, locally known as is one of the indigenous tree species in the island of Leyte, Philippines that is neglected and underutilized. To maximize its utilization, the potential of the commodity for wine-making was explored using the Placket-Burman (PB) experiment, which was carried out to identify the most significant factors affecting the quality of the wine. There were seven variables (n=7) identified, namely; fermentation temperature, contact time, sugar level, dilution, microbial strain and two dummy variables with a total of eight runs. Results show that fermentation temperature, contact time, sugar level and microbial culture significantly affected the sensory quality of wine.
References:
- Aleixandre-Tudo JL, Weightman C, Panzeri V, Nieuwoudt HH & du Toit WJ. 2015. Effect of skin contact before and during alcoholic fermentation on the chemical and sensory profile of South African Chenin Blanc White Wines. South African Journal for Enology and Viticulture, 36(3):366-377
- Belina-Aldemita MA, Sabularse VC, Dizon El, Hurtada WA & Torio MO. 2013. Physicochemical properties of bignay [Antidesma bunius (L.)) wine at different. stages of processing. Philippine Science Letters, 6(2):249
- Blackman J, Saliba A & Schmidtke L. 2010. Sweetness acceptance of novices, experienced consumers and winemakers in Hunter Valley Semillon wines. Food Quality and Preference, 21(7):679-683
- Buglass AJ. 2011. Handbook of Alcoholic Beverages: technical, analytical and nutritional aspects. John Wiley & Sons
- Busse-Valverde N, Gomez-Plaza E, Lopez-Roca JM, Gil-Muñoz R & Bautista-Ortin AB. 2011. The extraction of anthocyanins and proanthocyanidins from grapes to wine during fermentative maceration is affected by the enological technique. Journal of Agricultural and Food Chemistry, 59(10):5450-5455
- Cheng GW and Crisosto CH. 1995. Browning potential, phenolic composition, and polyphenoloxidase activity of buffer extracts of peach and nectarine skin tissue. Journal of the American Society for Horticultural Science, 120(5):835-838
- Cimafranca LC. 2017. Physico-chemical properties, phytochemical components, antioxidant and antimicrobial activities of fresh and processed seriales [Flacourtia jangomas (Lour.) Raeusch) fruit (PhD Thesis). University of the Philippines-Los Baños, Laguna
- Darias-Martin JJ, Rodriguez O, Diaz E & Lamuela-Raventos RM. 2000. Effect of skin contact on the antioxidant phenolics in white wine. Food Chemistry, 71(4):483-487
- Eglinton, McWilliam LS, Fogarty M, Francis L, Kwiatkowsli M, Hoj P& Henschke P. 2000. The effect of Saccharomyces bayanus mediated fermentation on the chemical composition and aroma profile of Chardonnay wine. Australian Journal of Grape and Wine Research, 6(3):190-196
- Fennema OR. 1996. Food Chemistry. Marcel Dekker, New York
- Gomez-Plaza E, Gil-Muñoz R, Lopez Roca JM, Martinez-Cutillas A & Fernandez- Fernandez Jl. 2001. Phenolic compounds and color stability of red wines. Effect of skin maceration time. American Journal of Enology and Viticulture, 52(3):266-270
- He F, Liang NN, Mu L, Pan QH, Wang J, Reeves MJ & Duan CQ. 2012. Anthocyanins and their variation in red wines I. Monomeric anthocyanins and their color expression. Molecules, 17(2):1571-1601
- Joshi VK and Sandhu DK. 2000. Influence of ethanol concentration, addition of spices extract, and level of sweetness on physico-chemical characteristics and sensory quality of apple vermouth. Brazilian Archives of Biology and Technology, 43(5):537-545
- Kennedy JA and Peyrot Des Gachons C. 2003. Phenolic extraction in red wine production. Practical Winery & Vineyard, July/August 2003:1-5
- Kermasha S, Bathakur NN, Mohan NK & Arnold NP. 1987. Chemical composition and proposed use of two semi-wild tropical fruits. Food Chemistry, 26(4):253-259
- King ES, Kievit RL, Curtin C, Swiegers JH, Pretorins IS, Bastian SEP & Francis IL. 2010. The effect of multiple yeasts co-inoculations on Sauvignon Blanc wine aroma composition. Sensory properties and consumer preference. Food Chemistry, 122(3):618-626
- Laleh GH, Frydoonfar H, Heidary R, Jameei R & Zare S. 2006. The effect of light, temperature, pH and species on stability of anthocyanin pigments in four Berberis species. Pakistan Journal of Nutrition, 5(1):90-92
- Malundo TMM, Shewfelt RL, Ware GO & Baldwin EA. 2001. Sugars and acids influence flavor properties of mango (Mangifera indica). Journal of American Society for Horticultural Science, 126(1): 115-121
- Ough CS. 1992. Wine making basics. Food Product Press. New York
- Parvin S, Kader A, Sarkar GC & Bin Hosain S. 2011. In-vitro study of antibacterial and cytotoxic properties of Flacourtia jangomas. International Journal of
- Pharmaceutical Sciences and Research, 2(11):2786-2790 Reddy LV and Reddy OVS. 2009. Production, optimization and characterization of wine from mango (Mangifera indica Linn.). Natural Product Radiance,
- 8(4):426-435 Reynolds AG. 2010. Managing Wine Quality:Viticulture and Wine Quality. Woodhead Publishing Limited, United Kingdom
- Ribereau-Gayon P, Dubourdieu D, Doneche B & Lonvaud A. 2006. Handbook of Enology, The Microbiology of Wine and Vinifications (2nd edn). John Wiley & Sons Ltd, England
- Rossiter KL, Young H, Walker SB, Miller M & Dawson DM. 2000. The effects of sugars and acids on consumer acceptability of kiwifruit. Journal of Sensory Studies, 15(3):241- 250
- Schmidt JO and Noble AC. 1983. Investigation of the effect of skin contact time on wine flavor. American Society for Enology and Viticulture, 34:135-138
- Sims CA and Morris JR. 1986. Effects of acetaldehyde and tannins on the color and chemical age of red muscadine (Vitis rotundifolia) wine. American Journal of Enology and Viticulture. January 1986.37:163-165
- Singh AK and Singh J. 2010. Evaluation of anti-diabetic potential of leaves and stem of Flacourtia jangomas in streptozotocin-induced diabetic rats. Indian Journal of Pharmacology, 42(5):301
- Sipiora MJ and Granda M.JG. 1998. Effects of pre-veraison irrigation cut off and skin contact time on the composition of color and phenolic content of young cabernet sauvignon wines in Spain. American Journal of Enology and Viticulture, 49(2):152-162
- Soufleros EG, Pissa 1, Petridis D, Lygerakis M, Mermelas K, Boukouvalas G & Tsimitakis
E. 2001. Instrumental analysis of volatile and other compounds of Greek kiwi wine; sensory evaluation and optimization of its composition. Food Chemistry, 75(4):487-500
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