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Phylogeny and Characteristics of Yersinia pseudotuberculosis strains from the Aksai High-Mountain and Balkhash Desert Foci of Plague

https://doi.org/10.21055/0370-1069-2024-3-96-102

Abstract

The aim of the study is to obtain a comprehensive characterization of Yersinia pseudotuberculosis strains from the Aksai high-mountain and Balkhash desert foci of plague in Central Asia. Materials and methods. Investigation of the cultural, morphological and biochemical properties of the examined strains was carried out using conventional methods of laboratory diagnostics. Ion S5 XL System (Thermo Fischer Scientific) was used for whole-genome sequencing. Data processing and sequence assembly of raw reads de novo were performed using Ion Torrent Suite software package 5.12 and Newbler gsAssembler 2.6 (454 Life Sciences). To search for marker SNPs, the Wombac 2.0 program based on the BioLinux 8.0 operating system was applied. When constructing the dendrogram, the Maximum Likelihood method, the PhyML 3.1 program and the HKY85 model were used. Results and discussion. The studied strains from the Aksai high-mountain and Balkhash desert foci have properties characteristic of the Y. pseudotuberculosis species, are prototrophs and do not contain the pYV plasmid. According to phylogenetic analysis based on identified 109,641 core SNPs, they are closely related to strains of the pseudotuberculosis microbe from the Sarydzhaz high-mountain focus in the Kyrgyz Republic and the Republic of Kazakhstan, as well as to the O:3 serovar strain from Turkmenistan. The cluster of these Central Asian strains on the phylogenetic tree of Y. pseudotuberculosis is localized next to strains of the pseudotuberculosis microbe of O:3 serovar from various regions of the world. The results obtained testify to the circulation of a separate phylogeographic population of Y. pseudotuberculosis in the territory of natural plague foci in Central Asia. The characterized Y. pseudotuberculosis strains and their whole genome sequences can be used as reference ones for the Aksai and Balkhash natural plague foci of Central Asia.

About the Authors

G. A. Eroshenko
Russian Research Anti-Plague Institute “Microbe”
Russian Federation

46, Universitetskaya St., Saratov, 410005, Russian Federation



A. K. Dzhaparova
Republican Center for Quarantine and Particularly Dangerous Infections of the Ministry of Health of the Kyrgyz Republic
Kyrgyzstan

92, Skryabina St., Bishkek, 720005, Kyrgyz Republic



K. A. Nikiforov
Russian Research Anti-Plague Institute “Microbe”
Russian Federation

46, Universitetskaya St., Saratov, 410005, Russian Federation



A. S. Sidorin
Russian Research Anti-Plague Institute “Microbe”
Russian Federation

46, Universitetskaya St., Saratov, 410005, Russian Federation



L. M. Kukleva
Russian Research Anti-Plague Institute “Microbe”
Russian Federation

46, Universitetskaya St., Saratov, 410005, Russian Federation



N. S. Chervyakova
Russian Research Anti-Plague Institute “Microbe”
Russian Federation

46, Universitetskaya St., Saratov, 410005, Russian Federation



Ya. M. Krasnov
Russian Research Anti-Plague Institute “Microbe”
Russian Federation

46, Universitetskaya St., Saratov, 410005, Russian Federation



References

1. Somova L.M., Andryukov B.G., Plekhova N.G. [The problem of yersiniosis in the modern world]. Mezhdunarodny Zhurnal Prikladnykh i Fundamental’nykh Issledovanij [International Journal of Applied and Basic Research]. 2015; (12-4):661–7.

2. Somov G.P., Pokrovsky V.I., Besednova N.N., Antonenko F.F. [Pseudotuberculosis]. Moscow: “Medicine”; 2001. 256 p. 3. Timchenko N.F., Popov A.F. [Pseudotuberculosis: past and present]. Infektsionnye Bolezni:Novosti, Mneniya, Obuchenie [Infectious Diseases: News, Opinions, Training]. 2014; (4):51–6.

3. Lamps L.W., Madhusudhan K.T., Havens J.M., Greenson J.K., Bronner M.P., Chiles M.C., Dean P.J., Scott M.A. Pathogenic Yersinia DNA is detected in bowel and mesentericl lymph nodes from patients with Crohn’s disease. Am. J. Surg. Pathol. 2003; 27(2):220–7. DOI: 10.1097/00000478-200302000-00011.

4. Tseneva G.Ya., Chesnokova M.V., Klimov V.T., Voskresenskaya E.A., Burgasova O.A., Sayapina L.V., Tirskih K.A., Karimova T.V. Pseudotuberculosis in the Russian Federation. Adv. Exp. Med. Biol. 2012; 954:63–8. DOI: 10.1007/978-1-4614-3561-7_9.

5. Totolian A.A., editor. [Yersiniosis in the Russian Federation. News Bulletin]. Iss. 3. St. Petersburg; 2022. 44 p.

6. Eppinger M., Rosovitz M.J., Fricke W.F., Rasko D.A., Kokorina G., Fayolle C., Lindler L.E., Carniel E., Ravel J. The complete genome sequence of Yersinia pseudotuberculosis IP31758, the causative agent of Far East scarlet-like fever. PloS Genet. 2007; 3(8):e142. DOI: 10.1371/journal.pgen.0030142.

7. Chain P.S., Carniel E., Larimer F.W., Lamerdin J., Stoutland P.O., Regala W.M., Georgescu A.M., Vergez L.M., Land M.L., Motin V.L., Brubaker R.R., Fowler J., Hinnebusch J., Marceau M., Medigue C., Simonet M., Chenal-Francisque V., Souza B., Dacheux D., Elliott J.M., Derbise A., Hauser L.J., Garcia E. Insights into the evolution of Yersinia pestis through whole-genome comparison with Yersinia pseudotuberculosis. Proc. Natl Acad. Sci. USA. 2004; 101(38):13826–31. DOI: 10.1073/pnas.0404012101.

8. Gemski O.P., Lazere J.R., Casey T., Wohlhieter J.A. Presence of a virulence-associated plasmid in Yersinia pseudotuberculosis. Infect. Immun. 1980; 28(3):1044–7. DOI: 10.1128/iai.28.3.1044-1047.1980.

9. Zang Y., Murtha J., Roberts M.A. Siegel R.M., Bliska J.B. Type III secretion decreases bacterial and host survival following phagocytosis of Yersinia pseudotuberculosis by macrophages. Infect. Immun. 2008; 76(9):4299–310. DOI: 10.1128/IAI.00183-08.

10. Tsubokura M., Aleksić S. A simplified antigenic scheme for serotyping of Yersinia pseudotuberculosis: phenotypic characterization of reference strains and preparation of O and H factor sera. Contrib. Microbiol. Immunol. 1995; 13:99–105. 12. Skurnik M., Peippo A., Ervelä E. Characterization of the O-antigen gene clusters of Yersinia pseudotuberculosis and the cryptic O-antigen gene cluster of Yersinia pestis shows that the plague bacillus is most closely related to and has evolved from Y. pseudotuberculosis serotype O:1b. Mol. Microbiol. 2000; 37(2):316–30. DOI: 10.1046/ j.1365-2958.2000.01993.x.

11. Dzhaparova A.K., Eroshenko G.A., Nikiforov K.A., Kukleva L.M., Al’khova Zh.V., Berdiev S.K., Kutyrev V.V. [Characteristics and phylogenetic analysis of Yersinia pseudotuberculosis strains from the Sarydzhaz high-mountain focus in the Tien-Shan]. Problemy Osobo Opasnykh Infektsii [Problems of Particularly Dangerous Infections]. 2021; (2):87–93. DOI: 10.21055/0370-1069-2021-2-87-93.

12. Onishchenko G.G., Kutyrev V.V., editors. [Laboratory Diagnostics of Particularly Dangerous Infectious Diseases: Practice Guidelines]. Moscow: “Shiko”; 2013. 560 p.

13. Chesnokova M.V., Klimov V.T., Karimova T.V., Tirskikh K.A., Afanas’ev M.V. [Algorithm for laboratory diagnostics of yersiniosis]. Dal’nevostochny Zhurnal Infektsionnoj Patologii [Far Eastern Journal of Infectious Pathology]. 2010; (17):188–92.

14. Kado C.I., Liu S.T. Rapid procedure for detection and isolation of large and small plasmids. J. Bacteriol. 1981; 145(3):1365–73. DOI: 10.1128/jb.145.3.1365-1373.1981.

15. Platonov M.E., Blouin Y., Evseeva V.V., Afanas’ev M.V., Pourcel C., Balakhonov S.V., Vergnaud G., Anisimov A.P. Draft genome sequences of five Yersinia pseudotuberculosis ST19 isolates and one isolate variant. Genome Announc. 2013; 1(2):e0012213. DOI: 10.1128/genomeA.00122-13.


Review

For citations:


Eroshenko G.A., Dzhaparova A.K., Nikiforov K.A., Sidorin A.S., Kukleva L.M., Chervyakova N.S., Krasnov Ya.M. Phylogeny and Characteristics of Yersinia pseudotuberculosis strains from the Aksai High-Mountain and Balkhash Desert Foci of Plague. Problems of Particularly Dangerous Infections. 2024;(3):96-102. (In Russ.) https://doi.org/10.21055/0370-1069-2024-3-96-102

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