Ссылки

1. Butterfield, C. T. 1935. Studies of sewage purification. 11. A zoogloea-forming organism found in activated sludge. Public Health Rep. 50:671−684.

2. Crabtree, K., and E. McCoy. 1967. Zoogloea ramigera Itzigsohn; identification and description. Int. J. Syst. Bacteriol. 17:l-10.

3. Deinema, M. H., and L. P. T. M. Zevenhuizen. 1971. Formation of cellulose fibrils by gram-negative bacteria and their role in bacterial flocculation. Arch. Mikrobiol. 78:42−57.

4. De Ley, J. 1992. The Proteobacteria: ribosomal RNA cistron similarities and bacterial taxonomy, p. 2111—2140. In A. Balow, H. G. Truper, M. Dworkin, W. Harder, and K. -H. Schleifer (ed.), The prokaryotes, 2nd ed. Springer-Verlag, New York.

5. De Vos, P., and J. De Ley. 1983. Intra- and intergeneric similarities of Pseudomonas and Xanthomonas ribosomal ribonucleic acid cistrons. Int. J. Syst. Bacteriol. 33:487−509.

6. De Vos, P., M. Goor, M. Gillis, and J. De Ley. 1985. Ribosomal ribonucleic acid cistron similarities of phytopathogenic Pseudornonas species. Int. J. Syst. Bacteriol. 35169−184.

7. Dias, F. F., and J. V. Bhat. 1964. Microbial ecology of activated sludge. I. Dominant bacteria. Appl. Microbiol. 12:412−417.

8. Dugan, P. R., D. L. Stoner, and H. M. Pickrum. 1992. The genus Zoogloea, p. 3952—3964. In A. Balow, H. G. Triiper, M. Dworkin, W. Harder, and K. -H. Schleifer (ed.), The prokaryotes, 2nd ed. Springer-Verlag, New York.

9. Ezaki, T., S. Dejsirilert, H. Yamamoto, N. Takeuchi, S. Liu, and E. Yabuuchi. 1988. Simple and rapid genetic identification of Legonella species with photobiotin-labeled DNA. J. Gen. Appl. Microbiol. 34:191−199.

10. Friedman, B. A., and P. R. Dugan. 1968. Identification of Zoogloea species and the relationship to zoogloeal matrix and floc formation. J. Bacteriol. 951903—1909.

11. Heukelekian, H., and M. L. Littman. 1939. Carbon and nitrogen transformations in the purification of sewage by the activated sludge process. 11. Morphological and biochemical studies of zoogloeal organisms. Sewage Works J. 11:752−763.

12. Higgins, D. G., A. J. Bleasby, and R. Fuchs. 1992. CLUSTAL V: improved software for multiple sequence alignment. Comput. Appl. Biosci. 8:189−191.

13. Hiraishi, A. 1992. Direct automated sequencing of 16s rDNA amplified by polymerase chain reaction from bacterial cultures without DNA purification. Lett. Appl. Microbiol. 15210−213.

14. Hiraishi, A., Y. Hoshino, and T. Satoh. 1991. Rhodoferax fernentans gen. nov., sp. nov., a phototrophic purple nonsulfur bacterium previously referred to as the Rhodocyclus gelatinosus- like group. Arch. Microbiol. 155330−336.

15. Hiraishi, A., and K. Komagata. 1989. Isolation of rhodoquinonecontaining chemoorganotrophic bacteria from activated sludge. FEMS Microbiol, Lett. 58:55−58.

16. Hiraishi, A., and K. Komagata. 1989. Effects of the growth medium composition on menaquinone homolog formation in Micrococcus luteus. J. Gen. Appl. Microbiol. 35311−318.

17. Hiraishi, A., Y. K. Shin, J. Sugiyama, and K. Komagata. 1992. Isoprenoid quinones and fatty acids of Zoogloea. Antonie van Leeuwenhoek 61:231−236.

18. Katayama-Fujimura, Y., Y. Komatsu, H. Kuraishi, and T. Kaneko. 1984. Estimation of DNA base composition by high performance liquid chromatography of its nuclease P1 hydrolysate. Agric. Biol. Chem. 48:3169—3172.

19. Kato, A., K. Izaki, and H. Takahashi. 1971. Floc-forming bacteria isolated from activated sludge. J. Gen. Appl. Microbiol. 12439.

20. Kimura, M. 1980. A simple method for estimating evolutionary rates of base substitution through comparative studies of nucleotide sequences. J. Mol. Evol. 16:111−120.

21. Kiuchi, K., H. Kuraishi, H. Murooka, K. Aida, and T. Uemura. 1968. Floc formation in activated sludge. 11. Identification of twelve representative strains isolated from activated sludge. J. Gen. Appl. Microbiol. 14:399409.

22. MacKinney, R. E., and M. P. Horwood. 1952. Fundamental approach to the activated sludge process. I. Floc-producing bacteria. Sewage Ind. Wastes 24:117−123.

23. Marmur, J. 1961. A procedure for the isolation of deoxyribonucleic acid from micro-organisms. J. Mol. Biol. 3:20&218.

24. Oyaizu-Masuchi, Y., and K. Komagata. 1988. Isolation of freeliving nitrogen fixing bacteria from the rhizosphere of rice. J. Gen. Appl. Microbiol. 34:127−164.

25. Palleroni, N. J. 1984. Family I. Pseudomonadaceae Winslow, Broadhurst, Buchanan, Krumwiede, Rogers and Smith 1917, 555AL, p. 141. In N. R. Krieg and J. G. Holt (ed.), Bergeys manual of systematic bacteriology, vol. 1. The Williams & Wilkins Co., Baltimore.

26. Palleroni, N. J. 1992. Introduction to the family Pseudomonadaceae, p. 3071—3085. In A. Balow, H. G. Triiper, M. Dworkin, W. Harder, and K. -H. Schleifer (ed.), The prokaryotes, 2nd ed. Springer-Verlag, New York.

27. Satiou, N., and M. Nei. 1987. The neighbor-joining method: a new method for reconstructing phylogenetic trees. Mol. Biol. Evol. 4:406425.

28. Stackebrandt, E., R G. E. Murray, and H. G. Triiper. 1992. Proteobacteria classis nov., a name for the phylogenetic taxon that includes the purple bacteria and their relatives. Int. J. Syst. Bacteriol. 38:321−325.

29. Strand, S. E., A. J. McDonnell, and R. F. Unz. 1988. Oxygen and nitrate reduction kinetics of a nonflocculating strain of Zoogloea ramigera. Antonie van Leeuwenhoek 54:245−255.

30. Tamaoka, J., D. -M. Ha, and K. Komagata. 1987. Reclassification of Pseudomonas acidovorans den Dooren de Jong 1926 and Pseudomonas testosteroni Marcus and Talalay 1956 as Comamonas acidovorans comb. nov. and Comamonas testosteroni comb, nov., with an emended description of the genus Comamonas. Int. J. Syst. Bacteriol. 3752−59.

31. Ueda, S., and R Earle. 1972. Microflora of activated sludge. J. Gen. Appl. Microbiol. 18:239−248.

32. Unz, R. F. 1971. Neotype strain of Zoogloea ramigera Itzigsohn. Int. J. Syst. Bacteriol. 21:91−99.

33. Unz, R. F. 1984. Genus IV. Zoogloea Itzigsohn 1868, 3PL, p. 214−219. In N. R. Krieg and J. G. Holt (ed.), Bergeys manual of systematic bacteriology, vol. 1. The Williams & Wilkins Co., Baltimore.

34. Wattie, E. 1943. Cultural characteristics of zoogloea-forming bacteria isolated from activated sludge and trickling filters. Sewage Works J. 15476−489.

35. Wayne, L. G., D. J. Brenner, R. R. Colwell, P. A. D. Grimont, 0. Kandler, M. I. Krichevsky, L. H. Moore, W. E. C. Moore, R. G. E. Murray, E. Stackebrandt, M. P. Starr, and H. G. Triiper. 1987. Report of the ad hoc committee on reconciliation of approaches to bacterial systematics. Tnt. J. Syst. Bacteriol. 37:463464.

Авторы: Йонг Кук Шин, Акира Хираиши, Джанта Сагияма


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