Multilocus sequence analysis of Borrelia burgdorferi sensu lato isolates from Western Siberia, Russia and Northern Mongolia.

[1]  T. Schwan,et al.  Borrelia lanei sp. nov. extends the diversity of Borrelia species in California. , 2017, International journal of systematic and evolutionary microbiology.

[2]  C. Strube,et al.  Lyme borreliae prevalence and genospecies distribution in ticks removed from humans. , 2017, Ticks and tick-borne diseases.

[3]  N. Tikunova,et al.  Detection and genetic characterization of a wide range of infectious agents in Ixodes pavlovskyi ticks in Western Siberia, Russia , 2017, Parasites & Vectors.

[4]  K. Takumi,et al.  Imbalanced presence of Borrelia burgdorferi s.l. multilocus sequence types in clinical manifestations of Lyme borreliosis. , 2016, Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases.

[5]  W. Liu,et al.  Genomic Characteristics of Chinese Borrelia burgdorferi Isolates , 2016, PloS one.

[6]  Sudhir Kumar,et al.  MEGA7: Molecular Evolutionary Genetics Analysis Version 7.0 for Bigger Datasets. , 2016, Molecular biology and evolution.

[7]  E. Feil,et al.  Evidence for Host-Genotype Associations of Borrelia burgdorferi Sensu Stricto , 2016, PloS one.

[8]  A. Sing,et al.  Borrelia burgdorferi sensu stricto and Borrelia afzelii: Population structure and differential pathogenicity. , 2015, International journal of medical microbiology : IJMM.

[9]  W. Cao,et al.  Borrelia yangtzensis sp. nov., a rodent-associated species in Asia, is related to Borrelia valaisiana. , 2015, International journal of systematic and evolutionary microbiology.

[10]  N. Takada,et al.  PCR detection of Anaplasma phagocytophilum and Borrelia burgdorferi in Ixodes persulcatus ticks in Mongolia. , 2014, Japanese journal of infectious diseases.

[11]  A. Sing,et al.  Borrelia bavariensis sp. nov. is widely distributed in Europe and Asia. , 2013, International journal of systematic and evolutionary microbiology.

[12]  G. Wormser,et al.  Multilocus Sequence Typing of Borrelia burgdorferi Suggests Existence of Lineages with Differential Pathogenic Properties in Humans , 2013, PloS one.

[13]  S. Kovalev,et al.  Multilocus sequence analysis of Borrelia burgdorferi s.l. in Russia. , 2013, Ticks and tick-borne diseases.

[14]  K. Ohashi,et al.  Prevalence of Lyme borrelia in Ixodes persulcatus ticks from an area with a confirmed case of Lyme disease. , 2013, The Journal of veterinary medical science.

[15]  R. Wölfel,et al.  High prevalence of genetically diverse Borrelia bavariensis-like strains in Ixodes persulcatus from Selenge Aimag, Mongolia. , 2013, Ticks and tick-borne diseases.

[16]  K. Pfister,et al.  Prevalence of Borrelia burgdorferi s. l. in Ixodes ricinus ticks from four localities in Bavaria, Germany. , 2012, Berliner und Munchener tierarztliche Wochenschrift.

[17]  N. Rudenko,et al.  Updates on Borrelia burgdorferi sensu lato complex with respect to public health. , 2011, Ticks and tick-borne diseases.

[18]  A. Vladimirescu,et al.  Ixodes ricinus ticks (Acari: Ixodidae): vectors for Lyme disease spirochetes in Romania , 2011, Experimental and Applied Acarology.

[19]  Haruo Watanabe,et al.  Multilocus Sequence Typing Implicates Rodents as the Main Reservoir Host of Human-Pathogenic Borrelia garinii in Japan , 2011, Journal of Clinical Microbiology.

[20]  D. Fish,et al.  Multilocus sequence analysis of Borrelia bissettii strains from North America reveals a new Borrelia species, Borrelia kurtenbachii. , 2010, Ticks and tick-borne diseases.

[21]  K. Wan,et al.  Distribution of Borrelia burgdorferi Sensu Lato in China , 2010, Journal of Clinical Microbiology.

[22]  E. Korenberg,et al.  Genetic variants of Borrelia garinii, a widespread Eurasian pathogen of ixodic tick borreliosis , 2010, Molecular Genetics, Microbiology and Virology.

[23]  M. Drancourt,et al.  A New Borrelia Species Defined by Multilocus Sequence Analysis of Housekeeping Genes , 2009, Applied and Environmental Microbiology.

[24]  Pablo Librado,et al.  DnaSP v5: a software for comprehensive analysis of DNA polymorphism data , 2009, Bioinform..

[25]  N. Fomenko,et al.  [The heterogeneity of the ospa gene of Borrelia garinii and Borrelia afzelii in western Siberia and Mongolia]. , 2009, Molekuliarnaia genetika, mikrobiologiia i virusologiia.

[26]  M. Hurn,et al.  MLST of housekeeping genes captures geographic population structure and suggests a European origin of Borrelia burgdorferi , 2008, Proceedings of the National Academy of Sciences.

[27]  N. Fomenko,et al.  [Heterogeneity of the gene P83/100 of Borrelia borrelia burgdorferi sensu lato complex]. , 2007, Molekuliarnaia genetika, mikrobiologiia i virusologiia.

[28]  A. Markov,et al.  [Genetic heterogeneity of Borrelia afzelii in the natural focus of the Middle Urals]. , 2006, Zhurnal mikrobiologii, epidemiologii, i immunobiologii.

[29]  N. Fomenko,et al.  [Detection of DNA of borrelia circulating in Novosibirsk region]. , 2006, Zhurnal mikrobiologii, epidemiologii, i immunobiologii.

[30]  T. Schlott,et al.  Molecular and immunological characterization of the p83/100 protein of various Borrelia burgdorferi sensu lato strains , 1995, Medical Microbiology and Immunology.

[31]  E. Soutschek,et al.  Genetic heterogenity of the genes coding for the outer surface protein C (OspC) and the flagellin of Borrelia burgdorferi , 1993, Medical Microbiology and Immunology.

[32]  L. Schouls,et al.  Identification of Ehrlichia spp. andBorrelia burgdorferi in Ixodes Ticks in the Baltic Regions of Russia , 2001, Journal of Clinical Microbiology.

[33]  Ira Schwartz,et al.  Molecular Typing of Borrelia burgdorferiSensu Lato: Taxonomic, Epidemiological, and Clinical Implications , 1999, Clinical Microbiology Reviews.

[34]  A. Karavanov,et al.  Mixed infection by tick‐borne encephalitis virus and Borrelia in ticks , 1999, Medical and veterinary entomology.

[35]  S. Rijpkema,et al.  Clinical features of Lyme borreliosis in the middle Urals and distribution of Borrelia burgdorferi sensu lato species in local Ixodes persulcatus ticks. , 1998, Zentralblatt fur Bakteriologie : international journal of medical microbiology.

[36]  N. Takada,et al.  Lyme Disease Borrelia Species in Northeastern China Resemble Those Isolated from Far Eastern Russia and Japan , 1998, Applied and Environmental Microbiology.

[37]  S. Bergström,et al.  A Surface-Exposed Region of a Novel Outer Membrane Protein (P66) of Borrelia spp. Is Variable in Size and Sequence , 1998, Journal of bacteriology.

[38]  G. Baranton,et al.  Borrelia burgdorferi sensu lato in Russia and neighbouring countries: high incidence of mixed isolates. , 1997, Research in microbiology.

[39]  Boer,et al.  Genetic and phenotypic analysis of Borrelia valaisiana sp. nov. (Borrelia genomic groups VS116 and M19). , 1997, International journal of systematic bacteriology.

[40]  Y. Yanagihara,et al.  Characterization of Borrelia sp. isolated from Ixodes tanuki, I. turdus, and I. columnae in Japan by restriction fragment length polymorphism of rrf (5S)-rrl (23S) intergenic spacer amplicons. , 1996, FEMS microbiology letters.

[41]  G. Baranton,et al.  Diversity of Borrelia burgdorferi sensu lato evidenced by restriction fragment length polymorphism of rrf (5S)-rrl (23S) intergenic spacer amplicons. , 1994, International journal of systematic bacteriology.

[42]  F. Lottspeich,et al.  Molecular characterization of the p100 gene of Borrelia burgdorferi strain PKo. , 1993, FEMS microbiology letters.

[43]  U. Göbel,et al.  An OspA serotyping system for Borrelia burgdorferi based on reactivity with monoclonal antibodies and OspA sequence analysis , 1993, Journal of clinical microbiology.

[44]  Anan'eva Lp,et al.  The clinical aspects of Lyme disease , 1990 .

[45]  I. Skripnikova,et al.  [The clinical aspects of Lyme disease]. , 1990, Terapevticheskii arkhiv.

[46]  A. Barbour Isolation and cultivation of Lyme disease spirochetes. , 1984, The Yale journal of biology and medicine.