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Original Articles

Breeding of a 5-Fluorouridine-resistant Mutant with Increased Cellulose Production from Acetobacter xylinum subsp. nonacetoxidans

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Pages 1388-1391 | Received 06 Feb 1988, Published online: 22 May 2014

  • 1) Ross P., Mayer R., and Benziman M., Cellulose biosynthesis and function in bacteria., Microbiol. Rev., 55, 35-58 (1991).
  • 2) Yoshinaga F., Tonouchi N., and Watanabe K., Research progress in production of bacterial cellulose by aeration and agitation culture and its application as a new industrial material., Biosci. Biotech. Biochem., 61, 219-224 (1997).
  • 3) Seto A., Kojima Y., Tonouchi N., Tsuchida T., and Yoshinaga F., Screening of bacterial cellulose-producing Acetobacter strains suitable for sucrose as carbon source., Biosci. Biotech. Biochem., 61, 735-736 (1997).
  • 4) Kojima Y., Tonouchi N., Tsuchida T., Yoshinaga F., and Yamada Y, The characterization of acetic acid bacteria efficiently producing bacterial cellulose from sucrose: The proposal of Acetobacter xylinum subsp. nonacetoxidans subsp. Nov., 62, 185-187 (1998)
  • . 1986. p. 3- 13.
  • 6) Ishikawa A., Matsuoka M., Tsuchida T., and Yoshinaga F., Increase in cellulose production by sulfaguanidine-resistant mutants derived from Acetobacter xylinum subsp. sucrofermentans., Biosci. Biotech. Biochem., 59, 2259-2262 (1995).
  • 7) Wong H. C., Fear A. L., Calhoon R. D., Eichinger G. H., Mayer R., Amikam D., Benziman M., Gelfand D. H., Meade J. H., Emerick A. W., Bruner R., Ben-Bassat A., and Tal R., Genetic organization of the cellulose synthase operon in Acetobacter xylinum., Proc. Natl. Sci. U.S.A., 87, 8130-8134 (1990).
  • 8) Bertocchi C., Delneri D., Signore S. Weng Z., Characterization of microbial cellulose from a high-producing mutagenized Acetobacter pasteurianus strain., Biochim. Biophysi. Acta., 1336, 211-217 (1997)
  • 9) Tonouchi N., Tsuchida T., Yoshinaga F., Beppu T., and Horinouchi S., Characterization of biosynthesis pathway of cellulose from glucose and fructose in Acetobacter xylinum., Biosci. Biotech. Biochem., 60, 1377-379 (1996).
  • 10) Toyosaki H., Naritomi T., Seto A., Matsuoka M., Tsuchida T., and Yoshinaga F., Screening of bacterial cellulose-producing Acetobacter strains suitable for agitated culture., Biosci. Biotech. Biochem., 59, 1498-1502 (1995).
  • 11) Ishikawa A., Tsuchida T., and Yoshinaga F., Relationship between sulfaguanidine resistance and increased cellulose production in BPR3001E., Biosci. Biotech. Biochem. (in press).
  • 12) Morimoto K., Tagawa K., Hayama T., Watanabe F., and Mogami H., Cellular level of purine compounds in ischemic gerbil brain by high performance lipid chromatography., J. Neurochem., 38, 833-835 (1982).
  • 13) Tanaka T., Muroi H., Sunaga C., Tanigawa M., and Oi S., Determination of effector molecules in L-arabinose-induced bulge formation and lysis of Eschericha coli IFO 3545, J. Gen. Microbiol., 137, 1163-1169 (1991).
  • 14) Paulus T. J., and Switer R. L., Characterization of pyrimidine-repressible and arginine-repressible carbamyl phosphate synthetases from Bacillus., J. Bacteriol., 137, 82-91, (1979).
  • 15) Paulus T. J., McGarry T. J., Shekelle P. G., Rosenzweig S., and Switer R. L., Coordinate synthesis of the enzymes of pyrimidine biosynthesis in Bacillus subtilis., J. Bacteriol., 149, 775-778, (1982).
  • 16) Potvin B. W., Kelleher, R. J. and Gooder H. Jr., Pyrimidine biosynthetic pathway of Bacillus subtilis., J. Bacteriol., 123, 604-615, (1975).
  • 17) Doi M., Asahi S., Tsunemi Y., and Akiyama S., Mechanism of uridine production by Bacillus subtilis mutants, Appl. Microbiol. Biotechnol., 30, 234-238 (1989).
  • 18) Jaquet L., Lollier M., Souciet J. L., and Potier S., Genetic analysis of yeast strains lacking negative feedback control: a one-step method for positive selection and cloning of carbamoylphosphate synthease-aspartate transcarbamoylase mutants unable to respond to UTP., Mol. Gen. Genet., 241, 81-88, (1993).
  • 19) Sakano Y., Microbial enzyme relating to hydrolysis and synthesis of α 1,4-:-1,6-glucan, J. Jpn. Soc. Starch Sci., 33, 65-70, (1986).
  • 20) Ielpi L., Couso R. O., and Dankert M. A., Xanthan gum biosynthesis. Acetylation occurs at the prenyl-phosphate-sugar stage., Biohem. Int., 6, 323-333, (1983).

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