PRESENCE OF YERSINIA ENTEROCOLITICA IN CONDITIONS OF AGRO COMPLEX


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Abstract

Aim. Detection of duration of existence of Yersinia enterocolitica in substrates of agro complex and formation of biofilms by causative agent during artificial semination of forage and meat products. Materials and methods. Y. enterocolitica O9 strain and its rifampicin-resistant (Rmr) mutant were used. Microbial landscape of samples was studied by seeding on selective media (HiMedia), biochemical properties of isolates were controlled on API test-systems (Bio-Merieux). The presence of yopA gene localized on virulence plasmid pCad was determined in PCR. Vital staining of biofilms was carried out by Live/Dead stain (Invitrogen, USA). Visualization of the data was registered by using GMS-510 (USA) microscope with digital camera and Skope Photo software (USA). Formation of yersinia bacterial biofilms was confirmed by using scanning electron microscope (SEM) JSM6380 (Japan). Results. Prolonged duration of existence of Y. enterocolitica in substrates of agro complex with conservation of pCad virulence plasmid by causative agent was detected. SEM demonstrated stages of biofilm formation during artificial semination of animal forage, meat products and materials of food equipment in a wide range of temperatures from 10 to 30° C, and vital stain detected viable yersinia in mature biofilms. Conclusion. Agro complexes are a variant of technogenic foci where ecological conditions for prolonged existence of saprono-sis are formed.

About the authors

M. A Yurova

Gamaleya Research Institute of Epidemiology and Microbiology, Moscow, Russia

V. I Pushkareva

Gamaleya Research Institute of Epidemiology and Microbiology, Moscow, Russia

V. Yu Polyakov

Belozersky Research Institute of Physical-Chemical Biology, Moscow, Russia

References

  1. Дробященко М.А., Пушкарева В.И., Поляков В.Ю. Ультраструктурные основы существования кишечных иерсиний в мясных продуктах и кормах. Мясная индустрия. 2010, 10: 30-32.
  2. Дробященко М.А., Пушкарева В.И., Юров Д.С. и др. Колонизация и размножение Yersinia enterocolitica О9 в пищевых продуктах, изготовленных в современных технологических условиях. Эпидемиология и вакцинопрофилактика. 2010, 4: 51-57.
  3. Литвин В.Ю., Сомов Г.П., Пушкарева В.И. Сапронозы как природно-очаговые болезни. Эпидемиол. и вакцинопрофил. 2010,1:10-16.
  4. Мамлеева Д. А. Эпизоотологическое проявление паразитарных систем сапронозов в отдельных регионах РФ (на модели иерсиниоза). Дис.д-ра.вет.наук. Н.Новгород., 2008.
  5. Пушкарева В.И., Литвин В.Ю., Дробященко М.А. и др. Эпидемиологическая опасность формирования биопленок в условиях пищевого производства. Эпидемиол. и вакцино-профил. 2011, 2: 17-23.
  6. Рыбальченко О.В., Бондаренко В.М., Добрица В.П. Атлас ультраструктуры микробиоты кишечника человека. СПб, ВМА, 2008.
  7. Annous B.A., Fratamico P.M., Smith J.L. Quorum sensing in biofilms: why bacteria behave the way do. J. Food Science. 2009, 74 (1): 24-37.
  8. Atkinson S., Sockett R.E., Camara M. et al. Quorum sensing and the lifestyle ofY^rsinia. Curr. Issues Mol. Biol. 2009, 8: 1-10.
  9. Beenken K.E., Dunman P.M., McAleese F. et al. Global gene expression in Staphylococus aureus biofilms. J. Bacteriol. 2004, 186: 4665-4684.
  10. Bhaduri S., Wesley I.V., Bush E.J. Prevalence of pathogenic Yersinia enterocolitica strains in pigs in the United States. Appl. Environ. Microbiol. 2005, 11: 7117-7121.
  11. Costerton J.W., Veeh R., Shirtliff M. et al. The application of biofilm science to the study and control of chronic bacterial infections. J. Clin. Invest. 2003, 112 (10): 1466-1477.
  12. Duffy E.A., Belk K.E., Sofos J.N. et al. Extent of microbial contamination in United States retail pork products. J. Food Protect. 2001,64: 172-178.
  13. Frederiksson-Ahoma M., Korte T., Korkeala H. Contamination of carcasses, offals, and the environment with yadA-positive Yersinia enterocolitica in a pig slaughterhouse. J.Food Protect. 2000, 63: 31-35.
  14. Gazzola S., Cocconcelli P.S. Vancomycin heteroresistance and biofilm formation in Staphylococcus epidermidis from food. Microbiology. 2008, 154: 3224-3231.
  15. Grahek-Ogden D., Schimmer В., Kofitsyo S. et al. Outbreak of Yersinia enterocolitica sero-group O:9 infection and processed pork Norway. Emerg. Infect. Dis. 2007, 13 (5): 754-756.
  16. Houdt Van R., Michiels C.W. Biofilm formation and the food industry, a focus on the bacterial outer surface. J. Appl. Microbiol. 2010, 109 (4): 1117-1131.
  17. Kim T.J., Young B.M., Young G.M. Effect of flagellar mutations on Yersinia enterocolitica biofilm formation. Appl. Environ. Microbiol. 2008, 74 (17): 5466-5474.
  18. Lake R. J., Baker M.G., Garrett N. et al. Estimated number of cases foodborne infectious disease in New Zealand. New Zealand Med. J. 2000, 113: 278-281.
  19. Laukkanen R., Martinez P. O., Siekkinen K. M. et al. Contamination of carcasses with human pathogenic Yersinia enterocolitica 4/O:3 originates from pigs infected on farms. Foodborne Pathogen. Dis. 2009, 6: 681-688.
  20. Martinez P. O., Fredriksson-Ahomaa M., Pallotti A. et al. Variation in the prevalence of en-teropathogenic Yersinia in slaughter pigs from Belgium, Italy, and Spain. Foodborne Pathogens Disease. 2011, 8: 445-450.
  21. Pan J., Ren D. Quorum sensing inhibitors: a patent overview. Expert. Opin. Ther. Pat. 2009, 19: 1581-1601.
  22. Pushkareva V.I., Ermolaeva SA. Listeria monocytogenes virulence factor Listeriolysin O favors bacterial growth in co-culture with the ciliate Tetrahymena pyriformis, causes protozoan en-cystment and promotes bacterial survival inside cysts. BMC Microbiol. 2010, 10: 10-26.
  23. Pushkareva V.I , Ermolaeva S., Litvin V.Yu. Hydrobionts as reservoir hosts for infectious agents of sapronoses. Biology Bulletin. 2010, 37: 1-10.
  24. Rosner B. M., Stark K., Werber D. Epidemiology of reported Yersinia enterocolitica infections in Germany, 2001 - 2008. BMC Public Health. 2010, 10: 337.
  25. Watnick P., Kolter R. Minireview biofilm, city of microbes. J.Bacteriol. 2000, 182 (10): 26752679.

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Copyright (c) 2013 Yurova M.A., Pushkareva V.I., Polyakov V.Y.

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