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Viability and growth characteristics of Lactobacillus in soymilk supplemented with B-vitamins

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Pages 87-107 | Received 28 Jul 2009, Accepted 02 Sep 2009, Published online: 06 Dec 2009

References

  • Abdouli H, Schaefer DM. 1985. Niacin saturation constants for Lactobacillus plantarum and Treponema bryantii. J Dairy Sci 68:2372–2376.
  • Altermann E, Russell WM, Azcarate-Peril MA, Barrangou R, Buck BL, McAuliffe O, Souther N, Dobson A, Duong T, Callanan M, 2005. Complete genome sequence of the probiotic lactic acid bacterium Lactobacillus acidophilus NCFM. Proc Natl Acad Sci USA 102:3906–3912.
  • Azcarate-Peril MA, Altermann E, Goh YJ, Tallon R, Sanozky-Dawes RB, Pfeiler EA, O’Flaherty S, Buck BL, Dobson A, Duong T, 2008. Analysis of the genome sequence of Lactobacillus gasseri ATCC 33323 reveals the molecular basis of an autochthonous intestinal organism. Appl Environ Microbiol 74:4610–4625.
  • Bezkorovainy A1985. Nutrition and metabolism of bifidobacteria. In Biochemistry and physiology of Bifidobacteria. CRC Press, Boca Raton, Florida. pp 94–125.
  • Biavati B, Mattarelli P. 2002. The family Bifidobacteriaceae. Prokaryotes 3:322–382.
  • Bruckner R, Titgemeyer F. 2002. Carbon catabolite repression in bacteria: Choice of carbon source and autoregulatory limitation of sugar utilization. FEMS Microbiol Lett 209:141–148.
  • Cerning J, Renard CMGC, Thibault JF, Bouillanne C, Landon M, Desmazeaud M, Topisirovic L. 1994. Carbon source requirement for exopolysaccharide production by Lactobacillus casei CG11 and partial structure analysis of the polymer. Appl Environ Microbiol 60:3914–3919.
  • Chou CC, Hou JW. 2000. Growth of bifidobacteria in soymilk and their survival in the fermented soymilk drink during storage. Int J Food Microbiol 56:113–121.
  • Deguchi Y, Morishita T, Mutai M. 1985. Comparative studies on synthesis of water-soluble vitamins among human species of bifidobacteria. J Agric Biol Chem 49:13–19.
  • Fung WY, Woo YP, Liong MT. 2008. Optimization of growth of Lactobacillus acidophilus FTCC 0291 and evaluation of growth characteristics in soy whey medium: a response surface methodology approach. J Agric Food Chem 56:7910–18.
  • Garro MS, de Valdez GF, Oliver G, de Giori GS. 1998. Growth characteristics and fermentation products of Streptococcus salivarius subsp. thermophilus, Lactobacillus casei and L. fermentum in soymilk. Z Lebensm Unters Forsch A206:72–75.
  • Gomes AMP, Malcata FX. 1999. Bifidobacterium spp. and Lactobacillus acidophilus: Biological, biochemical, technological and therapeutical properties relevant for use as probiotics. Trends Food Sci Tech 10:139–157.
  • Gomis DB, Alvarez MDG, Alonso JJM, Vallina AN. 1988. Determination of sugars and alcohols in apple juice and cider by high performance liquid chromatography. Chromatographia 25:701–706.
  • Heudi O, Kilinc T, Fontannaz P, Marley E. 2006. Determination of Vitamin B12 in food products and in premixes by reversed-phased high performance liquid chromatography and immunoaffinity extraction. J Chromatogr A 1101:63–68.
  • Hou JW, Yu RC, Chou CC. 2000. Changes in some components of soymilk during fermentation with bifidobacteria. Food Res Int 33:393–397.
  • Hsieh ML, Chou CC. 2006. Mutagenicity and antimutagenic effect of soymilk fermented with lactic acid bacteria and bifidobacteria. Int J Microbiol 111:43–47.
  • Hugenholtz J, Kleerebezem M. 1999. Metabolic engineering of lactic acid bacteria: Overview of the approaches and results of pathway rerouting involved in food fermentations. Curr Opin Biotech 10:492–497.
  • Klaenhammer TR, Azcarate-Peril MA, Altermann E, Barrangou R. 2007. Influence of the dairy environment on gene expression and substrate utilization in lactic acid bacteria. J Nutr 137:748S–750S.
  • Kleerebezem M, Hugenholtz J. 2003. Metabolic pathway engineering in lactic acid bacteria. Curr Opin Biotech 14:232–237.
  • Kojic M, Vujcic M, Banina A, Cocconcelli P, Cerning J, Topisirovic L. 1992. Analysis of exopolysaccharide production by Lactobacillus casei CG11 isolated from cheese. Appl Environ Microbiol 58:4086–4088.
  • Kwon S, Lee PC, Lee EG, Chang YK, Chang N. 2006. Production of lactic acid by Lactobacillus rhamnosus with vitamin-supplemented soybean hydrolysate. Enzym Microb Tech 26:209–215.
  • Lahély S, Ndaw S, Arella F, Hasselmann C. 1999. Determination of biotin in foods by high-performance liquid chromatography with post-column derivatization and fluorimetric detection. Food Chem 65:253–258.
  • Lin MY, Young CM. 2000. Folate levels in cultures of lactic acid bacteria. Int Dairy J 10:409–413.
  • Liong MT. 2007. Probiotics: A critical review of their potential role as antihypertensives, immune modulators, hypocholesterolemics, and perimenopausal treatments. Nutr Rev 65:316–328.
  • Liong MT, Shah NP. 2005. Optimization of growth of Lactobacillus caesi ASCC 292 and production of short-chain fatty acid in the presence of fructooligosaccharide and maltodextrin. J Food Sci 70:M113–M120.
  • Liong MT, Azhar ME, Lim PT, Kang JY. 2009. Survival, growth characteristics and bioactive potential of Lactobacillus acidophilus in a soy-based cream cheese. J Sci Food Agric 89:1382–1391.
  • Liu JR, Chen MJ, Lin CW. 2002. Characterization of polysaccharide and volatile compounds produced by kefir grains in soymilk. J Food Sci 67:104–108.
  • Liu K1997. Soybeans: Chemistry, technology and utilization. New York: Chapman and Hall. pp 415–418.
  • Mandelstam J, Mcquillen K1976. Class II reactions: Synthesis of small molecules. In: Biochemistry of bacterial growth. 2nd ed. New York: Wiley. pp 202–250.
  • Matthews RG1996. One-carbon metabolism. In Neidhardt FC, Curtiss R, Ingraham JL, Lin ECC, Low KB, Magasanik B, Reznikoff WS, Riley M, Schaechter M, Umbarger HE, editors. Escherichia coli and salmonella: Cellular and molecular biology. 2nd ed. Washington, DC: ASM Press. pp 600–611.
  • Mulimani VH, Thippeswamy S, Ramalingam S. 1997. Enzymatic degradation of oligosaccharides in soybean flours. Food Chem 59:279–282.
  • Ndaw S, Bergaentzlé M, Aoudé-Werner D, Hasselmann C. 2000. Extraction procedures for the liquid chromatographic determination of thiamin, riboflavin and vitamin B6 in foodstuffs. Food Chem 71:129–138.
  • Ng KH, Lye HS, Easa AM, Liong MT. 2008. Growth characteristics and bioactivity of probiotics in tofu-based medium during storage. Annals Microbiol 58:477–487.
  • Rogosa M1974. Lactobacillus. In Buchanan RE, Gibbons NE, editors. Bergeys's manual of determinative bacteriology 8th ed. Baltimore, MD: Williams & Wilkins Co Publishers. pp 576–593.
  • Sauer U, Cameron DC, Bailey JE. 1998. Metabolic capacity of Bacillus subtilis for the production of purine nucleotides, riboflavin, and folic acid. Biotechnol Bioeng 59:227–238.
  • Scalabrini P, Rossi M, Spettoli P, Matteuzzi D. 1998. Characterization of Bifidobacterium strains for use in soymilk fermentation. Int J Food Microbiol 39:213–219.
  • Schellenberger A. 1998. Sixty years of thiamine diphosphate biochemistry. Biochem Biophysic Acta 1385:177–186.
  • Schenk G, Duggleby RG, Nixon PF. 1998. Properties and functions of the thiamin diphosphate dependent enzyme transketolase. Int J Biochem Cell Biol 30:369–378.
  • Tamine AY, Marshall VME, Robinson RK. 1995. Microbiological and technological aspects of milk fermented by Bifidobacteria. J Dairy Res 62:151–187.
  • Tsangalis D, Shah NP. 2004. Metabolism of oligosaccharides and aldehydes and production of organic acids in soymilk by probiotic bifidobacteria. Int J Food Sci Tech 39:1–14.
  • Vasiljevic T, Shah NP. 2008. Probiotics─From Metchnikoff to bioactives. Int Dairy J 18:714–728.
  • Wang YC, Yu RC, Chou CC. 2002. Growth and survival of bifidobacteria and lactic acid bacteria during the fermentation and storage of cultured milk drinks. Food Microbiol 19:501–508.
  • Wang YC, Yu RC, Yang HY, Chou CC. 2003. Sugar and acid contents in soymilk fermented with lactic acid bacteria alone or simultaneously with bifidobacteria. Food Microbiol 20:333–338.
  • Woollard DC, Indyk HE, Christiansen SK. 2000. The analysis of pantothenic acid in milk and infant formulas by HPLC. Food Chem 69:201–208.
  • Xu GQ, Chu J, Zhuang YP, Wang YH, Zhang SL. 2008. Effects of vitamins on the lactic acid biosynthesis of Lactobacillus paracasei NERCB 0401. Biochem Eng J 38:189–197.
  • Yoo IK, Chang HN, Lee EG, Chang YK, Moon SH. 1997. Effect of B vitamin supplementation on lactic acid production by Lactobacillus casei. J Ferment Bioeng 84:172–175.
  • Yoon MY, Hwang HJ. 2008. Reduction og soybean oligosaccharides and properties of α-galactosidase from Lactobacillus curvatus R08 and Leuconostoc mesenteriodes JK55. Food Microbiol 25:815–823.

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