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The Involvement of Lactic Acid Bacteria in Modulating the Levels of Biogenic Amino Acids within Fermented Tarasas Products
Author(s):
1. Baraa Jameel Al-Assil: Department of Microbiology, Kurdistan Institute for Strategic Studies and Scientific Research, Sulaimaniyah,Iraq;Department of General Science, Charmo University, Chamchamal, Sulaimaniyah, Iraq;
2. Taghreed Abd Wahwah: Department of Food Sciences & Quality Control, College of Agricultural Engineering Sciences, University of Sulaimani, Sulaimaniyah, Iraq.
Abstract:
Combining turnip roots and leaves with cooked wheat grits and salt makes Tarasas, a fermented dish from Iraqi Kurdistan. The fermentation process takes 15 days, to produce a ready-to-eat dish. This study aims to identify the bacteria responsible and the role of wheat grits during the 0, 5, 10, and 15 days of fermentation for forming biogenic amines in Tarasas. The results demonstrate that pH levels during the fermentation periods decreased gradually. Microbial analysis showed an increased lactic acid bacteria count during Tarasas fermentation. The study also investigates how adding Lactobacillus plantarum, and yogurt starters (Lactobacillus bulgaricus and Streptococcus thermophilus) affects the process. The current study shows that adding yogurt starters at 3% increased biogenic amine levels, On the other side, using Lactobacillus plantarum as a starter at 3% reduced biogenic amine levels compared with treatments that ferment spontaneously. Additionally, decreasing the wheat grit content to 50% (of the total weight of wheat grits) was associated with a decrease in biogenic amines in the Tarasas. The sensory evaluation results also revealed that the treatments containing Lactobacillus plantarum were more acceptable to the consumer than the traditional treatment or the one with added yogurt.
Page(s): 855-862
Published: Journal: Journal of Global Innovations in Agricultural Sciences, Volume: 12, Issue: 3, Year: 2024
Keywords:
HPLC , Histamine , biogenic amines , Lactobacillus plantarum , fermentation , wheat grits
References:
[1] Swider O.,Wójcicki M.,Bujak M.,Juszczuk-Kubiak E.,Szczepańska M.,Roszko and M.L.,Chloride Sodium .2021 .Time Evolution of Microbial Composition and Metabolic Profile for Biogenic Amines and Free Amino Acids in a Model Cucumber Fermentation System Brined with 0.5% to 5. Molecules, 26 : 5796.
[2] Tomita S.,Nakamura T.,Okada S. .2018 .NMR-and GC/MS-based metabolomics cgaracterization of sunki, an unsalted fermented pickle of turnip leaves. Food chemistry, 258 : 25-34.
[3] Wakil S.M.,Ajayi O.O. .2013 .Production of lactic acid from starchy-based food substrates. Journal of Applied Biosciences, 71 : 5673-5681.
[4] Zhang Z.,Tsapekos P.,Alvarado-Morales M.,Zhu X.,Zervas A.,Jacobsen C.S.,Angelidaki I. .2022 .Enhanced fermentative lactic acid production from source-sorted organic household waste: Focusing on low-pH microbial adaptation and bioaugmentation strategy. Science of the Total Environment, 808 : 152129.
[5] Sun Z.,Zhang Y.,Lin X.,Zhang S.,Chen Y.,Ji C. .2023 .Inhibition mechanism of Lactiplantibacillus plantarum on the growth and biogenic amine production in Morganella morganii. Foods, 12 : 3625.
[6] SPSS. .2011 .Statistics for windows version 20.0. , : .
[7] Smith J.A.,Johnson B.C. .2014 .Microbial diversity in environmental samples. Applied and Environmental Microbiology, 80 : 2206-2215.
[8] Slizewska K.,Chlebicz-Wojcik A. .2020 .Growth kinetics of probiotic Lactobacillus strains in the alternative,cost-efficient semi-solid fermentation medium. Biology, 9 : 423.
[9] Shori A.B.,Baba A.S. .2012 .Viability of lactic acid bacteria and sensory evaluation in Cinnamomum verum and Allium sativum-bio-yogurts made from camel and cow milk. Journal of the Association of Arab Universities for Basic and Applied Sciences, 11 : 50-55.
[10] Senanayake D.,Torley P.J.,Chandrapala J.,Terefe N.S. .2023 .Microbial fermentation for improving the sensory, nutritional and functional attributes of legumes. Fermentation, 9 : 635.
[11] Rêgo I.O.P.,L.D.M. Menezes T.C.,Figueiredo D.D.,Oliveira J.S.R.,Rocha L.J.C.,Lara A.L.,Lima M.R.,Souza S.V.,Cancado S.V. .2014 .Bioactive amines and microbiological quality in pasteurized and refrigerated liquid whole egg. Poultry Science, 93 : 1018-1022.
[12] Oh Y.J.,Kim T.S.,Moon H.W.,Lee S.Y.,Ji G.E.,Hwang K.T. .2020 .Lactobacillus plantarum PMO 08 as a Probiotic Starter Culture for Plant-Based Fermented Beverages. Molecules, 25 : 5056.
[13] Muyzer G. .1999 .DGGE/TGGE a method for identifying genes from natural ecosystems. Current Opinion in Microbiology, 2 : 317-322.
[14] Li J.,Jiang K.,Huang H.Z.,Ye X.Q.,Zhi Z.J. .2020 .Process improvement to prevent the formation of biogenic amines during soy sauce brewing. Food Chemistry, 331 : 127347.
[15] Lane R.H. .1995 .Association of official agricultural chemists. Methods of analysis of AOAC International. 16. Ed. Arlington: AOAC 777-801., : .
[16] Kim S.S.,Heo J.,Kim Y.,Kim M.J.,Kwak H.S. .2020 .Salt contents and aging period effects on the physicochemical properties and sensory quality of Korean traditional fermented soybean paste (doenjang). Food Bioscience, 36 : 100645.
[17] Kieliszek M.,Pobiega K.,Piwowarek K.,Kot A.M. .1858 .Characteristics of the proteolytic enzymes produced by lactic acid bacteria. Molecules, 26 : .
[18] Islam S.,Biswas T.,Jabin M.,Moniruzzaman J.,Biswas M.S.,Uddin M.S. .2023 .Probiotic potential of Lactobacillus plantarum DMR14 for preserving and extending shelf life of fruits and fruit juice. Heliyon, 9 : 17382.
[19] Gezgin Y.,Akyol I.,Kuley E.,Ozogul F. .2013 .Biogenic amines formation in Streptococcus thermophilus isolated from home-made natural yogurt. Food Chemistry, 138 : 655-662.
[20] Gammone M.A.,Vicentini A.,M. De Girolamo A.,A. D'Aulerio and N. D'Orazio A. .2019 .Food-related atrial fibrillation? the potential role of biogenic amines in "Nutri-Arrhythmias" genesis. Reports, 2 : 1.
[21] Fong F.L.Y.,Lam K.Y.,Ho K.H.,Kan Y.H. .2020 .Reduction in biogenic amines in douche fermented by probiotic bacteria. Plos One, 15 : 0230916.
[22] Fernández M.,M. Zúňiga M. .2006 .Amino Acid Catabolic Pathways of Lactic Acid Bacteria. Critical Reviews in Microbiology, 32 : 155-183.
[23] Duncan D.B. .1955 .The multiple-range and F test. Biometrics, 11 : 1-45.
[24] Capozzi V.,Russo P.,Ladero V.,Fernandez M.,Fiocco D.,Alvarez M.A. .2012 .Biogenic amines degradation by Lactobacillus plantarum: toward a potential application in wine. Frontiers in microbiology 3, : 122.
[25] Bukvicki D.,Siroli L.,M. D'Alessandro S.,Cosentino I.,Fliss L.B.,Said L.B. .1815 .Unraveling the potential of Lactococcus lactis strains to be used in cheesemaking production as biocontrol agents. Foods, 9 : .
[26] Aysun M.,Serap C.,Omca D.,Kamuran A. .2017 .Amino acid decarboxylase activities and biogenic amine formation abilities of lactic acid bacteria isolated from shalgam. International Journal of Food Properties, 20 : 171-178.
[27] Al-kaabi H.Q.M.,Chelab R.L. .2024 .Whole genome sequence of Lactiplantibacillus plantarum strain HA9 isolated from conventional Iraqi cheese: First report. Advancements in Life Sciences, 11 : 438-443.
[28] Adesulu-Dahunsi S.O.,Dahunsi T.A.,Ajayeoba T.A. .2022 .Co-occurrence of Lactobacillus species during fermentation of african indigenous foods: Impact on food safety and shelf-life extension. Frontiers in Microbiology, 13 : 684-730.
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