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Effect of crude extract of Lactobacillus in increasing the amino N and acetaldehyde levels in yogurt

Published online by Cambridge University Press:  01 June 2009

Lydia Grozeva
Affiliation:
Laboratory of Enzyme Engineering, Institute of Organic Chemistry, Bulgarian Academy of Sciences, Sofia 1113, Bulgaria
Bojidar Tchorbanov*
Affiliation:
Laboratory of Enzyme Engineering, Institute of Organic Chemistry, Bulgarian Academy of Sciences, Sofia 1113, Bulgaria
Bojana Gyosheva
Affiliation:
ELBY Engineering G Company, 134 Czar Boris HI Boulevarde, Sofia 1618, Bulgaria
*
* For correspondence.

Abstract

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Type
Short communications
Copyright
Copyright © Proprietors of Journal of Dairy Research 1994

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References

REFERENCES

Adler-Nissen, J. 1979 Determination of the degree of hydrolysis of food protein hydrolysates by trinitrobenzenesulfonic acid. Journal of Agricultural and Food Chemistry 27 12561262Google Scholar
Blanc, B., Laloi, P., Atlan, D., Gilbert, C. & Portalier, B. 1993 Two cell-wall-associated aminopeptidases from Lactobacillus helveticus and the purification and characterization of APII from the strain ITGL1. Journal of General Microbiology 139 14411448Google Scholar
El Soda, M., Desmazeaud, M. J. & Bergère, J.-L. 1978 Peptide hydrolases of Lactobacillus casei: isolation and general properties of various peptidase activities. Journal of Dairy Research 45 445455CrossRefGoogle ScholarPubMed
Gyosheva, B. H. 1982 Compounds forming the aroma complex in Bulgarian sour milk. Milchwissenschaft 37 267269Google Scholar
Kalantzopoulos, G., Tsakalidou, E. & Manalopoulou, E. 1990 Proteinase, peptidase and esterase activities of cell-free extracts from wild strains of Lactobacillus delbrueckii subsp. bulgaricus and Streptococcus salivarius subsp. thermophilus isolated from traditional Greek yogurt. Journal of Dairy Research 57 593601CrossRefGoogle Scholar
Kondratenko, M., Mutafova, K., Gyosheva, B., Saeva-Kondratenko, S., Shishkova, I., Koleva, B. & Kamenova, I. 1992 Bulgarian Patent 93958/12.3.1992Google Scholar
Kondratenko, M. S., Saeva, S. S., Iwanowa, P. D. & Bankova, N. 1989 New starters for Bulgarian yogurt. Deutsche Molkerei-Zeitung 31 978980Google Scholar
Lees, G. J. & Jago, G. R. 1978 a Role of acetaldehyde in metabolism: a review. 1. Enzymes catalyzing reactions involving acetaldehyde. Journal of Dairy Science 61 12051215CrossRefGoogle Scholar
Lees, G. J. & Jago, G. R. 1978 b Role of acetaldehyde in metabolism: a review. 2. The metabolism of acetaldehyde in cultured dairy products. Journal of Dairy Science 61 12161224CrossRefGoogle Scholar
Miteva, V. I., Abadjieva, A. N. & Stefanova, T. T. 1992 M13 DNA fingerprinting, a new tool for classification and identification of Lactobacillus spp. Journal of Applied Bacteriology 73 349354CrossRefGoogle ScholarPubMed
Miteva, V., Pavlova, S., Stefanova, T., Gancheva, A. & Ljubenov, M. 1993 Differentiation of Lactobacillus strains by M13 DNA fingerprinting. Proceedings of Fourth Symposium on Lactic Acid Bacteria. Genetics, Metabolism and Application. Noordwilkerhout, The Netherlands. FEMS Microbiology 12 P156 H15Google Scholar
Robinson, R. K. & Tamime, A. Y. 1986 The role of protein in yogurt. In Developments in Food Proteins—4, pp. 135 (Ed. Hudson, B. J. F.). London: Elsevier Applied ScienceGoogle Scholar
Saeva-Kondratenko, S., Gyosheva, B. & Mutafchieva, M. 1992 “Yana” yoghurt studies–production, quality and storage. Biotechnology and Biotechnological Equipment (Sofia) 6 (4) Appendix 3–5Google Scholar