Bioscience and Bioengineering
Articles Information
Bioscience and Bioengineering, Vol.4, No.1, Mar. 2018, Pub. Date: Oct. 25, 2018
Effects of Thermal Processing and Fermentation on African Oilbean (Pentaclethra Macrophylla) Seeds During Ugba Production
Pages: 41-51 Views: 915 Downloads: 386
Authors
[01] Obi Clifford Nkemnaso, Department of Microbiology, College of Natural Sciences, Michael Okpara University of Agriculture, Umudike, Nigeria.
Abstract
Boiled slices of African oil bean (Pentaclethra macrophylla) seeds were subjected to a 72-hour traditional fermentation to produce ugba for the evaluation of the effect of boiling and fermentation on the nutritional status of the seeds. Bacterial isolates recovered from the fermenting substrate include Bacillus, Streptococcus, Salmonella, Escherichia coli, Pseudomonas, Staphylococcus, Klebsiella, Micrococcus, Lactobacillus and Proteus species while Saccharomyces cerevisiae, Penicillium, Aspergillus, Fusarium and Rhizopus spp were the fungi isolated. Bacillus and Lactobacillus spp were the predominant bacterial starter cultures because they persisted from the beginning till the end of the fermentation. Saccharomyces cerevisiae was the predominant fungus. Fermentation and boiling improved the nutritional values of the protein, fat, fibre, moisture and ash contents of the ugba samples after 72 hours offermentation with an increase in pH value towards alkalinity. However, both processes decreased the carbohydrate content of the ugba. Sensory evaluation showed that the laboratory-produced ugba sample compared with the local market sourced ugba in sensory properties. At the end of the fermentation, food borne spoilers and pathogens that were part of the contaminants of the fermenting samples were eliminated by the microbial metabolites thus making ugba safe for human consumption. The ugba can also stay for some days without spoilage in the absence of refrigeration.
Keywords
Boiling, Fermentation, Nutritional Status, Oil Beanseed, Ugba
References
[01] Enujiugha, V. N., and Akanbi, C. T. (2005). Compositional changes in African oil bean (Pentaclethra macrophylla benth) seeds during thermal processing. Pakistan Journal. of Nutrition. 4, 27–31.
[02] Okafor, J. C., U. C Okolonkwo and M. A. N. Ejiofor, 1991. Evaluation of oils from fermentedand unfermented seeds of the African oil bean tree pentaclethra macrophylla. International. Tree Crops Journal., 7; 95-101.
[03] Mbajunwa, O. K., Akingbala, J. O., Mulongoy, K., Oguntimein, G. (1998). Starter CultureEvaluation for the Production of ugba from African oil bean seed (Pentaclethra macrophylla). Jjournal of. Sci.ence Food. Agric.ulture77: 127- 132.
[04] Njoku,H. O. and Okemadu C. (1989) Biochemical changes during the Natural Fementations of the African oil bean (Penthaclethra Macropylla) for the production of Ugba. Journal of Science in Food Agriculture. 49: 457-465.
[05] Enujiugha, V. N. and J. O. Agbede. (2000). Nutritional and anti-nutritional characteristics of African oil bean (Pentaclethra macrophylla benth). Seeds. Appl. ication in Tropical. Agriculture. 5: 11- 15
[06] Enujiugha, V. N. (2003). Nutrient changes during the fermentation of African oil bean (Penttoclethra macrophylla benth) seeds. Pakistan J.journal of Nutrition.2, 320–323. doi: 10.3923/pjn.2003.320.323.
[07] Achinewhu, S. C. (1986). The effect of fermentation on carbohydrate and fatty acidComposition of the African oil bean (Pentaclethra macrophylla) seed. Food Chemistry. 19, 105–116. doi: 10.1016/0308-8146(86)90104-4.
[08] Enujiugha and Olagundoye (2001) Chemical composition, functional and sensory properties of maize-based snack (Elekute) enriched with African oil bean seed (Pentaclethra macrophylla benth) African Journal of Food Science. 10(12): 379-384.
[09] Enujiugha, V. N. and J. O. Agbede, 2000. Nutritional and anti-nutritionalcharacteristics of African oil bean (Pentaclethra macrophylla Benth) seeds. Application of Tropical. Agricuture, 5: 11-14.
[10] Obeta, J (1983) A note on the (Pentaclethra macrophylla). Journal. of Applied Bacteriology. 1983; 54:433-433.
[11] Odunfa, S. A. and Oyeyiola, G. F. (1985). Microbiological study of the fermentation of ugba, a Nigerian indigenous fermented food flavour.Journal on Plant Foods, 6: 155- 163.
[12] Mbata, T. and M. U. Orji. (2008). Process optimization in the production and Preservation of Ugba, A Nigerian fermented food. International. Journal of Microbiology. 4: 2-6.
[13] Enujiugha, V. N., and Akanbi, C. T. (2008). Quality evaluation of canned fermented African oil bean seed slices during ambient storage. African. Journal Food Science. 2, 54–59.
[14] Dhakal, S., Aryal, P., Aryal, S., Bashyal D and Khadka D (2016) Phytochemical and antioxidant studies of methanol and chloroform extract from leaves of Azadirachta indica A. Juss. in Tropical region of Nepal. Journal of pharmacognosy and phytotherapy. 8(12): 203-208.
[15] Rachael and Oluwamodupe (2012). Effect of fermentation on nutritional and anti-nutritional properties of fermenting Soy beans and the antagonistic effect of the fermenting organism on selected pathogens. Int. Res. J. Microbiol. 3(10): 333-338.
[16] Cowan, C. L and Steel, K. J. (1974) Manual of identification of medical bacteria. 3rdEdition.Cambridge University Press, London, UK.
[17] Agbulu, C. O., Gberikon, G. M and Ajine, B. O (2015) Isolation and characterization of microorganisms associated with second hand female undergarments and children wear sold in Makurdi MetropolisInt. J. Curr. Microbiol. App. Sci. 4(1): 716-724.
[18] Cheesbrough M. (2006) District laboratory practical in tropical countries part 2.Cambridge University Press London. Pp 28-39.
[19] AOAC, (2010) Official method of analysis. 18thediton. Association of Official Analytical Chemist, Washington DC.
[20] Eze, V. C., Onwuakor, C. E., and Ukeka, E. (2014). Proximate composition, biochemical and microbiological changes associated with fermenting African oil bean (Pentaclethra macrophylla Benth) seeds. Amer.Ivan J. journal of Microbiol.ogy 2, 674–681.
[21] Fogarty, W.M., Griffin, P.J. and Joyce, A.M. (1974) Enzymes of Bacillus species-Part 1. Process Biochemistry July/August: 11–24.
[22] Isu, N. R. and H. O. Njoku, 1997. An evaluation of the microfloraassociated with fermented African oil bean (Pentaclethra macrophylla Benth) seeds during ugba production. Plant Foods for Human Nutrition, 51: 145-157.
[23] Olasupo, NA, Okorie, CP and Oguntoyinbo FA (2016). The Biotechnology of Ugba, a Nigerian Traditional Fermented Food Condiment. Frontiers in Microbiology. 7:1153.
[24] Onwuakor, C., Nwaugo, V. O., Nnadi, C. J and Emetole, J. M (2014) Effect of Varied Culture Conditions on Crude Supernatant (Bacteriocin) Production from Four Lactobacillus Species Isolated from Locally Fermented Maize (Ogi). American Journal of Microbiological Research, 2(5): 125-130.
[25] Odunfa SA, Oyewole OB (1986) Identification of Bacillus species from iru, fermented African locust bean product. J Basic Microbiol 26:101–108.
[26] Daeschel F, Torriani S (1987). Physiological characters and distribution of Lactic acid bacteria isolated from maize silage. J. Appl. Bacteriol., 60: 83-92.
[27] Oguoke, C. C and Aririatu, L.E.(2004) Microbial and organoleptic changes associated with Ugba stored at ambient temperature. Nigeria. Food Journal. 2004, 22: 133-140.
[28] Jideani, I. A. O and Okereke, C. R. (1991). Comparative studies of microorganisms and Sensory attributes of condiments from the fermentation of different seeds. Plant food Human Nutrition, 41: 27-34.
[29] Mulyowidarso, R. K., Fleet, G. H. and Buckle, K. A (1990) Association of bacteria with the fungal fermentation of soybean tempe. Journal oj Applied Bacteriology. 68: 43-47.
[30] Achi, O. K. (1992). Microorganisms associated with natural fermentation of Prosopis africana seeds for the production of okpehe. Plant. Foods Human Nutrition. 42, 304–309.
[31] Alinnor, I. J. and R. Oze, (2011). Chemical evaluation of nutritive value of Pentaclethra macrophylla Benth (African oilbean) seeds. Pakistan Journal Of Nutrition.10(4): 355- 359.
[32] Ikhuoria. U. Esther., Anthony E. Aiwonegbe., Peace Okoli and Macdonald Idu(2008).Characteristics and Composition of African Oil Bean Seed (Pentaclethra macrophylla Benth). Journal of Applied Sciences, 8: 1337- 1339.
[33] Oseni, A and Ekpeigin, M (2007) Studies on biochemical changes in maize wastes fermented with Aspergillus niger. Biokemistri. 19(2):75-79.
[34] Oladele, E. O. P. and Oshodi, A. A. (2008) Effect of Fermentation on Some chemical and nutritive properties of Berlandier nettle Spurge (Jatropha cathartica) and physic nut (Jatropha curcas) seeds. Pakistan Journal of Nutrition 7: 292-296.
[35] Oseni, O. A and A. A. Akindahunsi. (2011). Some phytochemical properties of the effect of fermentation on the seed of Jatropha Curcas L. American Journal of Food Technology. 6: 158- 165.
[36] Jonathan, S. G.; Ajayi, I. and Omitade, Y. (2011) Nutritional compositions, fungi and aflatoxins detection in stored ‘gbodo’ fermented (Dioscorea rotundata) and ‘elubo ogede’ fermented (Musa parasidiaca) from south western Nigeria. African Journal of Food Science 5(2):105-110.
[37] Augustin, J., Johnson, S. R., Teitzel, C., Toma, R. B., Shaw, R. L., True, R. H. and Hogan, J. M (1978) Vitamin composition of freshly harvested and stored potatoes. Journal of Food Science. 43(5): 1566-1570.
[38] Norman, N. P. and H. H. Joseph. (1995). Food science.5thedn., Chapman and hall publishers, New York, pp: 55.
[39] Omafuvbe BO, Olumuyiwa SF, Osuntogun BA, Adewusi SRA (2004) Chemical and biochemical changes in African locust bean ( Parkia biglobosa) and melon (Citrullus vulgaris) seeds during fermentation to condiments. Pak J Nutr 3(3):140–145.
[40] Aderibigbe, E. Y and Odunfa, S. A, (1990). Growth and extra cellular enzyme Production by strains of Bacillus species isolated from fermenting African locust bean, iru. Journal of Application in Bacteriology 69: 662-671.
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