Obtaining of highly active streptomycin-resistant bacteriolysins’s producers of Streptomyces albus

Authors

DOI:

https://doi.org/10.15587/2312-8372.2015.40552

Keywords:

Streptomyces albus 2435, superproducer, bacteryolysins, selection, nitrozoguanidin, streptomycin

Abstract

The application of N-methyl-N'-nitro-N-nitrozoguanidin (NG), as chemical mutagen along with the use of mutations of resistance to an antibiotic streptomycin in the selection of a producer of the bacteryolytic enzyme complex of Streptomyces albus 2435 with the increased biosynthetic ability  are investigated. The conditions of NG mutagen treatment (1 mg/ml, 20 min.), allowing to obtain mutants with supersynthesis of a target product are determined.

The nitrozoguanidin-induced strains of Streptomycesalbus105 and 107, steadyto streptomycin (in concentration of 100-250 mkg/ml) with the increased (1,6 times) abilityto synthesis of bacteryolysins are received. The efficiency of the offered combination of selective factors (nitrozoguanidin  and mutation of streptomycin-resistance) for the selection of producers in the course of the supporting selection and for industrial application is shown.

The need of a producer’s supporting selection is caused by heterogeneity of cultures of streptomycetes and decrease in biosynthetic activity in the course of storage. For the development of industrial technology only the producer with supersynthesis of a product, in this case a producer of antimicrobial enzyme  preparations, can be used.

Author Biographies

Олександр Миколайович Громико, Ivan Franko National University of Lviv, Hrushvskoho str., 4, Lviv, Ukraine, 79005

Candidate of Biological Sciences, Senior Researcher

Department of genetics and biotechnology

Андрій Васильович Буцяк, Ivan Franko National University of Lviv, Hrushvskoho str., 4, Lviv, Ukraine, 79005

PhD-student

Department of genetics and biotechnology

Віктор Олександрович Федоренко, Ivan Franko National University of Lviv, Hrushvskoho str., 4, Lviv, Ukraine, 79005

Doctor of Biological Sciences, Professor, Head of the Department

Department of genetics and biotechnology

Тетяна Сергіївна Тодосійчук, National Technical University of Ukraine “Kyiv Polytechnic Institute”, Peremogy av., 37, Kiev, Ukraine, 03056

Candidate of Technical Sciences, Assistant Professor, Head of the Department

Department of industrial biotechnology

References

  1. Debabov, V. H. (2005). Selektsyia mykroorhanyzmov na zare XXI veka. Byotekhnolohyia, 4, 3–19.
  2. Hromyko, O. M., Fedorenko, V. O. (2005). Vplyv mutaheniv na antybiotychnu aktyvnist Streptomyces nogalater IMET 43360 – produtsenta protypukhlynnoho antybiotyka nohalamitsynu. Visnyk Lviv. un-tu. Ser. biol., 40, 16–22.
  3. Wang, X.-J., Wang, X.-C., Xiang, W.-S. (2009, February 17). Improvement of milbemycin-producing Streptomyces bingchenggensis by rational screening of ultraviolet- and chemically induced mutants. World Journal of Microbiology and Biotechnology, Vol. 25, № 6, 1051–1056. doi:10.1007/s11274-009-9986-5
  4. Gaoa, X.-G., Cao, S.-G., Zhang, K.-C. (2000, July). Production, properties and application to nonaqueous enzymatic catalysis of lipase from a newly isolated Pseudomonas strain. Enzyme and Microbial Technology, Vol. 27, № 1-2, 74–82. doi:10.1016/s0141-0229(00)00191-5
  5. Solaiman, E. A. M., Hegazy, W. K., Moharam, M. E. (2005). Induction of overproducing alkaline protease Bacillus mutants through UV irradiation. Arab. J. Biotech., Vol. 8, № 1, 49–60.
  6. Zantinge, J., Huang, H., Cheng, K.-J. (2003, February). Induction, screening and identification of Coniothyrium minitans mutants with enhanced β-glucanase activity. Enzyme and Microbial Technology, Vol. 32, № 2, 224–230. doi:10.1016/s0141-0229(02)00249-1
  7. Petruk, T. V., Kozyrytska, V. Ye., Valahurova, O. V., Mukevych, M. S. (2003). Spontanna ta induktyvna minlyvist Streptomyces avermitilis – produtsentu avermektyniv. Naukovi zapysky, 1 (20), 46–50.
  8. Karanam, S. K., Medicherla, N. R. (2008). Enhanced lipase production by mutation induced Aspergillus japonicus. African Journal of Biotechnology, Vol. 7, № 12, 2064-2067. doi:10.5897/AJB2008.000-5054
  9. Ikram-ul-Haq, Ali S., Saleem, A., Javed, M. M. (2008). Mutagenesis of Bacillus licheniformis through ethyl methanesulfonate for alpha amylase production. Pak. J. Bot., 41 (3), 1489–1498.
  10. Shafique, S., Bajwa, R. (2009). Mutation of Alternaria tenuissima FCBP-252 for hyper-active alpha-amylase. Indian J. Exp. Biol., 47 (7), 591–596.
  11. Kulykova, T. Ya., Zhernosekova, Y. V. (1994). Selektsyia produtsenta lytycheskykh fermentov s yspolzovanyem metodov protoplastyrovanyia y otbora ryfampytsynoustoichyvykh mutantov. Mikrobiolohichnyi zhurnal, 56 (2), 76.
  12. Babenko, L. P., Sokolova, I. E. (2009, March 12). Biosyntetychna aktyvnist transformanta Streptomyces recifensis. Visnyk Dnipropetrovskoho universytetu. Biolohiia. Ekolohiia, 17 (1), 10–15. doi:10.15421/010902
  13. Todosiichuk, T. S., Klochko, V. V., Zelena, L. B. (2014). Taxonomic analysis Streptomyces sp. 2435 strain, a producer of antimicrobial substances. Mikrobiolohichnyi zhurnal, 76 (1), 3–8.
  14. Shynkarenko, L. M., Zholner, L. H., Todosiichuk, T. S. (1998). Vyznachennia spektra dii fermentnoho preparatu z Str. recifensis var. lyticus 2435/M. Ekspres-novyny: nauka, tekhnika, vyrobnytstvo, 4, 49.
  15. Todosiichuk, T. S., Shynkarenko, L. M., Fedorenko, V. O., Basiliia L. I. (1998). Otrymannia mutantiv Str. recifensis var. lyticus zi zminenoiu bakteriolitychnoiu aktyvnistiu. Mikrobiolohichnyi zhurnal, 4, 49–56.
  16. Todosiichuk, T. S. (2000). Rozrobka tekhnolohii hidrolitychnoho fermentnoho preparatu Cytoretsyfen. K., 25.
  17. Ellaiah, P., Prabhakar, T., Ramakrishna, B., Taleb, A. T., Adinarayana, K. (2002). Strain improvement of Aspergillus niger for the production of lipase. Indian J. Microbiol., 42, 151-153.
  18. Bhattarai, К., Tiwari, К. В. (2007). Enhanced Antibacterial Activity of Sodium Azide Treated Mutant Streptomyces Strain. Journal of Nepal Association for Medical Laboratory Sciences, 67(1), 8.
  19. Gromyko, O., Rebets, Yu., Ostash, B., Luzhetskyy, A., Fukuhara, M., Bechthold, A., Nakamura, T., Fedorenko, V. (2004). Generation of Streptomyces globisporus SMY622 Strain with Increased Landomycin E Production and It’s Initial Characterization. The Journal of Antibiotics, Vol. 57, № 6, 383–389. doi:10.7164/antibiotics.57.383
  20. Hu, H., Ochi, K. (2001, April 1). Novel Approach for Improving the Productivity of Antibiotic-Producing Strains by Inducing Combined Resistant Mutations. Applied and Environmental Microbiology, Vol. 67, № 4, 1885–1892. doi:10.1128/aem.67.4.1885-1892.2001

Published

2015-04-02

How to Cite

Громико, О. М., Буцяк, А. В., Федоренко, В. О., & Тодосійчук, Т. С. (2015). Obtaining of highly active streptomycin-resistant bacteriolysins’s producers of Streptomyces albus. Technology Audit and Production Reserves, 2(4(22), 44–50. https://doi.org/10.15587/2312-8372.2015.40552

Issue

Section

Technologies of food, light and chemical industry