Whole genome sequencing of Borrelia miyamotoi isolate Izh-4: reference for a complex bacterial genome

被引:25
作者
Kuleshov, Konstantin V. [1 ,2 ]
Margos, Gabriele [3 ]
Fingerle, Volker [3 ]
Koetsveld, Joris [4 ]
Goptar, Irina A. [5 ]
Markelov, Mikhail L. [5 ]
Kolyasnikova, Nadezhda M. [1 ,6 ]
Sarksyan, Denis S. [4 ,7 ]
Kirdyashkina, Nina P. [5 ]
Shipulin, German A. [8 ]
Hovius, Joppe W. [4 ]
Platonov, Alexander E. [1 ]
机构
[1] Cent Res Inst Epidemiol, Moscow 111123, Russia
[2] Fed State Budget Sci Inst, Fed Sci Ctr VIEV, Moscow, Russia
[3] German Natl Reference Ctr Borrelia, Bavarian Hlth & Food Safety Author, Vet Str 2, D-85764 Oberschleissheim, Germany
[4] Univ Amsterdam, Amsterdam Univ Med Ctr, Locat Acad Med Ctr, Amsterdam, Netherlands
[5] Izmerov Res Inst Occupat Hlth, Moscow, Russia
[6] Russian Acad Sci, Chumakov Fed Sci Ctr Res & Dev Immune & Biol Prod, Moscow, Russia
[7] Izhevsk State Med Acad, Izhevsk, Russia
[8] Minist Hlth, Ctr Strateg Planning & Management Biomed Hlth Ris, Moscow, Russia
基金
俄罗斯科学基金会;
关键词
Borrelia miyamotoi; Plasmids; Reference genome; Whole genome sequencing; Long-read sequencing; LYME-DISEASE; CLINICAL PRESENTATION; IXODES-PERSULCATUS; TELOMERE RESOLVASE; LINEAR REPLICONS; TICK; BURGDORFERI; PREVALENCE; MENINGOENCEPHALITIS; SURVEILLANCE;
D O I
10.1186/s12864-019-6388-4
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background The genus Borrelia comprises spirochaetal bacteria maintained in natural transmission cycles by tick vectors and vertebrate reservoir hosts. The main groups are represented by a species complex including the causative agents of Lyme borreliosis and relapsing fever group Borrelia. Borrelia miyamotoi belongs to the relapsing fever group of spirochetes and forms distinct populations in North America, Asia, and Europe. As all Borrelia species B. miyamotoi possess an unusual and complex genome consisting of a linear chromosome and a number of linear and circular plasmids. The species is considered an emerging human pathogen and an increasing number of human cases are being described in the Northern hemisphere. The aim of this study was to produce a high quality reference genome that will facilitate future studies into genetic differences between different populations and the genome plasticity of B. miyamotoi. Results We used multiple available sequencing methods, including Pacific Bioscience single-molecule real-time technology (SMRT) and Oxford Nanopore technology (ONT) supplemented with highly accurate Illumina sequences, to explore the suitability for whole genome assembly of the Russian B. miyamotoi isolate, Izh-4. Plasmids were typed according to their potential plasmid partitioning genes (PF32, 49, 50, 57/62). Comparing and combining results of both long-read (SMRT and ONT) and short-read methods (Illumina), we determined that the genome of the isolate Izh-4 consisted of one linear chromosome, 12 linear and two circular plasmids. Whilst the majority of plasmids had corresponding contigs in the Asian B. miyamotoi isolate FR64b, there were only four that matched plasmids of the North American isolate CT13-2396, indicating differences between B. miyamotoi populations. Several plasmids, e.g. lp41, lp29, lp23, and lp24, were found to carry variable major proteins. Amongst those were variable large proteins (Vlp) subtype Vlp-alpha, Vlp-gamma, Vlp-delta and also Vlp-beta. Phylogenetic analysis of common plasmids types showed the uniqueness in Russian/Asian isolates of B. miyamotoi compared to other isolates. Conclusions We here describe the genome of a Russian B. miyamotoi clinical isolate, providing a solid basis for future comparative genomics of B. miyamotoi isolates. This will be a great impetus for further basic, molecular and epidemiological research on this emerging tick-borne pathogen.
引用
收藏
页数:18
相关论文
共 50 条
  • [1] Whole genome sequencing of Borrelia miyamotoi isolate Izh-4: reference for a complex bacterial genome
    Konstantin V. Kuleshov
    Gabriele Margos
    Volker Fingerle
    Joris Koetsveld
    Irina A. Goptar
    Mikhail L. Markelov
    Nadezhda M. Kolyasnikova
    Denis S. Sarksyan
    Nina P. Kirdyashkina
    German A. Shipulin
    Joppe W. Hovius
    Alexander E. Platonov
    BMC Genomics, 21
  • [2] Isolate-Based Surveillance of Listeria monocytogenes by Whole Genome Sequencing in Austria
    Cabal, Adriana
    Pietzka, Arians
    Huhulescu, Steliana
    Allerberger, Franz
    Ruppitsch, Werner
    Schmid, Daniela
    FRONTIERS IN MICROBIOLOGY, 2019, 10
  • [3] Public perceptions of bacterial whole-genome sequencing for tuberculosis
    Davies, Anna
    Scott, Stephen
    Badger, Shirlene
    Toeroek, M. Estee
    Peacock, Sharon J.
    TRENDS IN GENETICS, 2015, 31 (02) : 58 - 60
  • [4] Whole Genome Sequencing and Comparative Analysis of the First Ehrlichia canis Isolate in China
    Zhang, Jilei
    Wang, Jiawei
    Wang, Chengming
    MICROORGANISMS, 2024, 12 (01)
  • [5] Detecting complex infections in trypanosomatids using whole genome sequencing
    Reis-Cunha, Joao Luis
    Jeffares, Daniel Charlton
    BMC GENOMICS, 2024, 25 (01):
  • [6] Evaluating the use of whole-genome sequencing for outbreak investigations in the lack of closely related reference genome
    Abdelbary, Mohamed M. H.
    Senn, Laurence
    Moulin, Estelle
    Prod'hom, Guy
    Croxatto, Antony
    Greub, Gilbert
    Blanc, Dominique S.
    INFECTION GENETICS AND EVOLUTION, 2018, 59 : 1 - 6
  • [7] Exploring bacterial resistome and resistance dessemination: an approach of whole genome sequencing
    Beg, Ayesha Zainab
    Khan, Asad U.
    FUTURE MEDICINAL CHEMISTRY, 2019, 11 (03) : 247 - 260
  • [8] Identification of an Aerococcus urinaeequi isolate by whole genome sequencing and average nucleotide identity analysis
    Zhou, Wanqing
    Gao, Shuo
    Zheng, Jie
    Zhang, Yan
    Zhou, Hui
    Zhang, Zhifeng
    Cao, Xiaoli
    Shen, Han
    JOURNAL OF GLOBAL ANTIMICROBIAL RESISTANCE, 2022, 29 : 353 - 359
  • [9] Antimicrobial resistance analysis and whole-genome sequencing of Salmonella enterica serovar Indiana isolate from ducks
    Yu, Kun
    Wang, Haoyu
    Cao, Zhongzan
    Gai, Yedan
    Liu, Mei
    Li, Guoqin
    Lu, Lizhi
    Luan, Xinhong
    JOURNAL OF GLOBAL ANTIMICROBIAL RESISTANCE, 2022, 28 : 78 - 83
  • [10] Whole-Genome Sequencing of Bacterial Pathogens: the Future of Nosocomial Outbreak Analysis
    Quainoo, Scott
    Coolen, Jordy P. M.
    van Hijum, Sacha A. F. T.
    Huynen, Martijn A.
    Melchers, Willem J. G.
    van Schaik, Willem
    Wertheim, Heiman F. L.
    CLINICAL MICROBIOLOGY REVIEWS, 2017, 30 (04) : 1015 - 1063