3,068
Views
14
CrossRef citations to date
0
Altmetric
Original Articles

Isolation and characterisation of lactic acid bacteria from traditional koumiss and kurut

&
Pages S2441-S2449 | Received 31 May 2017, Accepted 23 Aug 2017, Published online: 03 Jan 2018

References

  • Zhang, H.; Xu, J.; Wang, J.; Sun, T.; Li, H.; Guo, M. A Survey on Chemical and Microbiological Composition of Kurut, Naturally Fermented Yak Milk from Qinghai in China. Food Control 2008, 19 (6), 578–586.
  • Özer, B.; Kirmaci, H. A. FERMENTED MILKS| Products of Eastern Europe and Asia. In Encyclopedia of Food Microbiology; Robinson, R. K., Batt, C. A., Patel, P. D., Eds.; Academic Press: London, 2000; pp. 803–804.
  • Karabulut, I.; Adnan Hayaloglu, A.; Yildirim, H. Thin‐Layer Drying Characteristics of Kurut, a Turkish Dried Dairy By‐Product. Int. J. Food Sci. Technol. 2007 1, 42 (9), 1080–1086.
  • Hao, Y.; Zhao, L.; Zhang, H.; Zhai, Z.; Huang, Y.; Liu, X.; Zhang, L. Identification of the Bacterial Biodiversity in Koumiss by Denaturing Gradient Gel Electrophoresis and Species-Specific Polymerase Chain Reaction. J. Dairy Sci. 2010, 93 (5), 1926–1933.
  • Patır, B.; Ateş, G. Investigations on Some Microbiological and Chemical Features Of. Turkish J. Vet. Anim. Sci. 2002 29, 26 (4), 785–792.
  • Dertli, E.; Colquhoun, I. J.; Gunning, A. P.; Bongaerts, R. J.; Le Gall, G.; Bonev, B. B.; Mayer, M. J.; Narbad, A. Structure and Biosynthesis of Two Exopolysaccharides Produced by Lactobacillus Johnsonii FI9785. J. Biol. Chem. 2013, 288 (44), 31938–31951.
  • Demirbaş, F.; İspirli, H.; Kurnaz, A. A.; Yilmaz, M. T.; Dertli, E. Antimicrobial and Functional Properties of Lactic Acid Bacteria Isolated from Sourdoughs. LWT-Food Sci. Technol. 2017, 79, 361–366.
  • Nueno-Palop, C.; Narbad, A. Probiotic Assessment of Enterococcus Faecalis CP58 Isolated from Human Gut. Int. J. Food Microbiol. 2011 28, 145 (2), 390–394.
  • Dertli, E.; Mercan, E.; Arıcı, M.; Yılmaz, M. T.; Sağdıç, O. Characterisation of Lactic Acid Bacteria from Turkish Sourdough and Determination of Their Exopolysaccharide (EPS) Production Characteristics. LWT-Food Sci. Technol. 2016, 71, 116–124.
  • İspirli, H.; Demirbaş, F.; Dertli, E. Characterization of Functional Properties of Enterococcus Faecium Strains Isolated from Human Gut. Can. J. Microbiol. 2015 15, 61 (11), 861–870.
  • Sun, Z.; Liu, W.; Gao, W.; Yang, M.; Zhang, J.; Wu, L.; Wang, J.; Menghe, B.; Sun, T.; Zhang, H. Identification and Characterization of the Dominant Lactic Acid Bacteria from Kurut: The Naturally Fermented Yak Milk in Qinghai, China. J. Gen. Appl. Microbiol. 2010, 56 (1), 1–10.
  • Pan, D. D.; Zeng, X. Q.; Yan, Y. T. Characterisation of Lactobacillus Fermentum SM‐7 Isolated from Koumiss, a Potential Probiotic Bacterium with Cholesterol‐Lowering Effects. J. Sci. Food Agric. 2011, 91 (3), 512–518.
  • Bilige, M.; Liu, W.; Rina, W.; Wang, L.; Sun, T.; Wang, J.; Li, H.; Zhang, H. Evaluation of Potential Probiotics Properties of the Screened Lactobacilli Isolated from Home-Made Koumiss in Mongolia. Ann. Microbiol. 2009, 59 (3), 493–498.
  • Danova, S.; Petrov, K.; Pavlov, P.; Petrova, P. Isolation and Characterization of Lactobacillus Strains Involved in Koumiss Fermentation. Int. J. Dairy Technol. 2005, 58 (2), 100–105.
  • Provencher, C.; LaPointe, G.; Sirois, S.; Van Calsteren, M. R.; Roy, D. Consensus-Degenerate Hybrid Oligonucleotide Primers for Amplification of Priming Glycosyltransferase Genes of the Exopolysaccharide Locus in Strains of the Lactobacillus Casei Group. Appl. Environ. Microbiol. 2003, 69 (6), 3299–3307.
  • Kralj, S.; Van Geel-Schutten, G. H.; Dondorff, M. M. G.; Kirsanovs, S.; Van der Maarel, M. J. E. C.; Dijkhuizen, L. Glucan Synthesis in the Genus Lactobacillus: Isolation and Characterization of Glucansucrase Genes, Enzymes and Glucan Products from Six Different Strains. Microbiology 2004, 150 (11), 3681–3690.
  • Tong, D. A. N.; Fukuda, K.; Sugai-Bannai, M.; Takakuwa, N.; Motoshima, H.; Urashima, T. Characterization and Expression Analysis of the Exopolysaccharide Gene Cluster in Lactobacillus Fermentum TDS030603. Biosci. Biotechnol. Biochem. 2009, 73 (12), 2656–2664.
  • Jolly, L.; Newell, J.; Porcelli, I.; Vincent, S. J.; Stingele, F. Lactobacillus Helveticus Glycosyltransferases: From Genes to Carbohydrate Synthesis. Glycobiology 2002, 12 (5), 319–327.
  • Dutta, A.; Das, D.; Goyal, A. Purification and Characterization of Fructan and Fructansucrase from Lactobacillus Fermentum AKJ15 Isolated from Kodokojaanr, a Fermented Beverage from North-Eastern Himalayas. Int. J. Food Sci. Nutr. 2012, 63 (2), 216–224.
  • Yadav, V.; Prappulla, S. G.; Jha, A.; Poonia, A. A Novel Exopolysaccharide from Probiotic Lactobacillus Fermentum CFR 2195: Production, Purification and Characterization. Biosci. Biotechnol. Biochem. 2011, 1, 415–421.
  • Li, W.; Xia, X.; Tang, W.; Ji, J.; Rui, X.; Chen, X.; Jiang, M.; Zhou, J.; Zhang, Q.; Dong, M. Structural Characterization and Anticancer Activity of Cell-Bound Exopolysaccharide from Lactobacillus Helveticus MB2-1. J. Agric. Food Chem. 2015, 63 (13), 3454–3463.
  • Hassan, Y. I.; Bullerman, L. B. Antifungal Activity of Lactobacillus Paracasei Ssp. Tolerans Isolated from a Sourdough Bread Culture. Int. J. Food Microbiol. 2008, 121 (1), 112–115.
  • Bao, Y.; Zhang, Y.; Zhang, Y.; Liu, Y.; Wang, S.; Dong, X.; Wang, Y.; Zhang, H. Screening of Potential Probiotic Properties of Lactobacillus Fermentum Isolated from Traditional Dairy Products. Food Control 2010, 21 (5), 695–701.
  • Joerger, M. C.; Klaenhammer, T. R. Characterization and Purification of Helveticin J and Evidence for a Chromosomally Determined Bacteriocin Produced by Lactobacillus Helveticus 481. J. Bacteriol. 1986, 167 (2), 439–446.
  • Abriouel, H.; Knapp, C. W.; Gálvez, A.; Benomar, N. Antibiotic Resistance Profile of Microbes from Traditional Fermented Foods; In: Fermented Foods in Health and Disease Prevention. Academic Press, 2017, pp. 675–704. ISBN 9780128023099.
  • Panel, EFSA FEEDAP. Guidance on the Assessment of Bacterial Susceptibility to Antimicrobials of Human and Veterinary Importance. Efsa J. 10 (6), 2012, 2740.
  • Zoumpopoulou, G.; Foligne, B.; Christodoulou, K.; Grangette, C.; Pot, B.; Tsakalidou, E. Lactobacillus Fermentum ACA-DC 179 Displays Probiotic Potential in Vitro and Protects against Trinitrobenzene Sulfonic Acid (Tnbs)-Induced Colitis and Salmonella Infection in Murine Models. Int. J. Food Microbiol. 2008, 121 (1), 18–26.
  • Egervarn, M.; Danielsen, M.; Roos, S.; Lindmark, H.; Lindgren, S. Antibiotic Susceptibility Profiles of Lactobacillus Reuteri and Lactobacillus Fermentum. J. Food Prot. 2007, 70 (2), 412–418.
  • Gueimonde, M.; Sánchez, B.; de los Reyes-Gavilán, C. G.; Margolles, A. Antibiotic Resistance in Probiotic Bacteria. Front. Microbiol. 2013 18, 4, 202.
  • Devirgiliis, C.; Zinno, P.; Perozzi, G. Update on Antibiotic Resistance in Foodborne Lactobacillus and Lactococcus Species. Front. Microbiol. 2013 8, 4, 301.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.