Choosing a proper approach for isolating bacteriophages specific to Flavobacterium genus bacteria

Cover Page


Cite item

Full Text

Abstract

The article presents results of research related to the selection of an effective method for isolating bacteriophages active against bacteria of the genus Flavobacterium. The number of bacterial strains used in the work — 3. All strains cultures were obtained from the museum of the department of microbiology, virology, epizootiology and veterinary-sanitary examination of federal state budgetary educational institution of higher education Ulyanovsk «State Agricultural University named after PA Stolypin» and have tinctorial and biochemical properties characteristic for this genus (and species). The studies consisted of 4 series of experiments. The first series of experiments was connected with the approbation of a technique for isolating a bacteriophage without using an influencing factor. As a result, the desired bacteriophages were not isolated. The second series of experiments consisted in testing the isolation method using an inducing factorultraviolet irradiation. The distance to the objects of irradiation is0.3 m. Exposure time: 1 min, 3 min, 5 min, 10 min, 15 min. The third series of experiments was also associated with the use of inducing factor X-ray irradiation. In the course of the work, three operating modes were determined, each of which differed in the duration of the exposure, the periodicity of the exposure, and the dose received. As a result of studies related to the use of inducing factors, the desired bacteriophages were not identified. The last series of experiments was to allocate bacteriophages from the objects of the natural places сommemorative (possible) existence of the «owner» (the studied microorganism) and viruses (bacteriophage desired). Three phage isolates were isolated from environmental objects: FL-j-1, FL-pec-2, FL-aq-3. Bacteriophage FL-j-1 is active against a strain of F. johnsoniae VKM B-1426 bacteriophage FL-pec-2 is active against strain F. pectinovorum VKM B-1171 bacteriophage FL-aq-3 strain active against F. aquatile VKPM B-8534. Further studies may be related to study properties of the isolated phages: study of the specificity in respect of this kind of sensitivity study, the study and higher lytic activity, selection of the most promising strains phages further selection of selected phages, as well as studying the possibility of bacteriophages from use in the method of the reaction increase titer phage for the purpose of indicating the microorganism being studied. 

About the authors

A. G. Semanin

Ulyanovsk State Agrarian University named after P.A. Stolypin

Email: anton-vet@mail.ru

PhD Student, Department of Microbiology, Virology, Epizootology and Veterinary Sanitation Inspection

Contacts: Anton G. Semanin 433430, Russian Federation, Ulyanovsk region, Cherdaklinskii district, Oktjabrski village, Studencheskaia str., 8, Ulyanovsk State Agrarian University named after P.A. Stolypin

 

Russian Federation

G. R. Sadrtdinova

Ulyanovsk State Agrarian University named after P.A. Stolypin

Author for correspondence.
Email: sadrtdinova-guzlik@yandex.ru
PhD (Biology), Assistant Professor, Department of Microbiology, Virology, Epizootology and Veterinary Sanitation Inspection Russian Federation

References

  1. Бульканова Е.А., Золотухин С.Н. Выделение бактериофагов рода Klebsiella из сточных вод //Вестник Ульяновской государственной сельскохозяйственной академии. 2004. № 12. С. 40–42.
  2. Васильев Д.А., Золотухин С.Н., Садртдинова Г.Р. Сравнительная эффективность методов выделения бактериофагов Klebsiella oxytoca //Вестник Ульяновской государственной сельскохозяйственной академии. 2015. № 4 (32). С. 68–72. doi: 10.18286/1816-4501-2015-4-68-72
  3. Васильев Д.А. Пульчеровская Л.П., Золотухин С.Н., Садртдинова Г.Р. Бактериофаги рода Citrobacter //Вестник Ульянов ской государственной сельскохозяйственной академии. 2017. № 3 (39). С. 40–45. doi: 10.18286/18164501-2017-3-40-44
  4. Катмакова Н.П., Золотухин С.Н., Васильев Д.А. Поиск и селекция псевдотуберкулезных бактериофагов //Ветеринарная медицина. 2009. № 4. С. 19–20.
  5. Christiansen R.H., Madsen L., Dalsgaard I., Castillo D., Kalatzis P.G., Middelboe M. Effect of bacteriophages on the growth of Flavobacterium psychrophilum and development of phage-resistant strains. Microbial Ecology, 2016, vol. 71, no. 4, pp. 845–859.
  6. Efreitorova E.O., Pulcherovskaya L.P. Indication of Citrobacter bacterias in the environment using bacteriophages in the phage titer increase reaction. Russian Journal of Agricultural and Socio-Economic Sciences, 2016, no. 10, pp. 193–196. doi: 10.18551/rjoas.2016-10.22
  7. Nakai T., Park S.C. Bacteriophage therapy of infectious diseases in aquaculture. Res. Microbiol., 2002, vol. 153, iss. 1, pp. 13–18.

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2019 Semanin A.G., Sadrtdinova G.R.

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

СМИ зарегистрировано Федеральной службой по надзору в сфере связи, информационных технологий и массовых коммуникаций (Роскомнадзор).
Регистрационный номер и дата принятия решения о регистрации СМИ: серия ПИ № ФС 77 - 64788 от 02.02.2016.


This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies