Literature DB >> 24291226

Comparative genomics of oral isolates of Streptococcus mutans by in silico genome subtraction does not reveal accessory DNA associated with severe early childhood caries.

Silvia Argimón1, Kranti Konganti2, Hao Chen2, Alexander V Alekseyenko2, Stuart Brown2, Page W Caufield3.   

Abstract

Comparative genomics is a popular method for the identification of microbial virulence determinants, especially since the sequencing of a large number of whole bacterial genomes from pathogenic and non-pathogenic strains has become relatively inexpensive. The bioinformatics pipelines for comparative genomics usually include gene prediction and annotation and can require significant computer power. To circumvent this, we developed a rapid method for genome-scale in silico subtractive hybridization, based on blastn and independent of feature identification and annotation. Whole genome comparisons by in silico genome subtraction were performed to identify genetic loci specific to Streptococcus mutans strains associated with severe early childhood caries (S-ECC), compared to strains isolated from caries-free (CF) children. The genome similarity of the 20 S. mutans strains included in this study, calculated by Simrank k-mer sharing, ranged from 79.5% to 90.9%, confirming this is a genetically heterogeneous group of strains. We identified strain-specific genetic elements in 19 strains, with sizes ranging from 200 to 39 kb. These elements contained protein-coding regions with functions mostly associated with mobile DNA. We did not, however, identify any genetic loci consistently associated with dental caries, i.e., shared by all the S-ECC strains and absent in the CF strains. Conversely, we did not identify any genetic loci specific with the healthy group. Comparison of previously published genomes from pathogenic and carriage strains of Neisseria meningitidis with our in silico genome subtraction yielded the same set of genes specific to the pathogenic strains, thus validating our method. Our results suggest that S. mutans strains derived from caries active or caries free dentitions cannot be differentiated based on the presence or absence of specific genetic elements. Our in silico genome subtraction method is available as the Microbial Genome Comparison (MGC) tool, with a user-friendly JAVA graphical interface.
Copyright © 2013 The Authors. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Comparative genomics; Dental caries; Pathogenesis; Software; Streptococcus mutans; Virulence

Mesh:

Year:  2013        PMID: 24291226      PMCID: PMC3940162          DOI: 10.1016/j.meegid.2013.11.003

Source DB:  PubMed          Journal:  Infect Genet Evol        ISSN: 1567-1348            Impact factor:   3.342


  53 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2002-10-23       Impact factor: 11.205

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  9 in total

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Authors:  Peiqi Meng; Chang Lu; Qian Zhang; Jiuxiang Lin; Feng Chen
Journal:  Curr Microbiol       Date:  2017-07-17       Impact factor: 2.188

2.  The Biology of Streptococcus mutans.

Authors:  J A Lemos; S R Palmer; L Zeng; Z T Wen; J K Kajfasz; I A Freires; J Abranches; L J Brady
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3.  Genotypic diversity and phenotypic traits of Streptococcus mutans isolates and their relation to severity of early childhood caries.

Authors:  Remberto Marcelo Argandoña Valdez; Cristiane Duque; Karina Sampaio Caiaffa; Vanessa Rodrigues Dos Santos; Maria Luiza de Aguiar Loesch; Natalia Helena Colombo; Rodrigo Alex Arthur; Thais de Cássia Negrini; Marcelo Fabiano Gomes Boriollo; Alberto Carlos Botazzo Delbem
Journal:  BMC Oral Health       Date:  2017-07-14       Impact factor: 2.757

4.  A Core Genome Multilocus Sequence Typing Scheme for Streptococcus mutans.

Authors:  Shanshan Liu; Xiaoliang Li; Zhenfei Guo; Hongsheng Liu; Yu Sun; Yudong Liu; Qinglong Wang; Shengkai Liao; Kai Zhang
Journal:  mSphere       Date:  2020-07-08       Impact factor: 4.389

5.  mucG, mucH, and mucI Modulate Production of Mutanocyclin and Reutericyclins in Streptococcus mutans B04Sm5.

Authors:  Jonathon L Baker; Xiaoyu Tang; Sandra LaBonte; Carla Uranga; Anna Edlund
Journal:  J Bacteriol       Date:  2022-04-11       Impact factor: 3.476

6.  StreptoBase: An Oral Streptococcus mitis Group Genomic Resource and Analysis Platform.

Authors:  Wenning Zheng; Tze King Tan; Ian C Paterson; Naresh V R Mutha; Cheuk Chuen Siow; Shi Yang Tan; Lesley A Old; Nicholas S Jakubovics; Siew Woh Choo
Journal:  PLoS One       Date:  2016-05-03       Impact factor: 3.240

7.  Comparative analysis of prophages in Streptococcus mutans genomes.

Authors:  Tiwei Fu; Xiangyu Fan; Quanxin Long; Wanyan Deng; Jinlin Song; Enyi Huang
Journal:  PeerJ       Date:  2017-11-17       Impact factor: 2.984

8.  Cariogenic Streptococcus mutans Produces Tetramic Acid Strain-Specific Antibiotics That Impair Commensal Colonization.

Authors:  Xiaoyu Tang; Yuta Kudo; Jonathon L Baker; Sandra LaBonte; Peter A Jordan; Shaun M K McKinnie; Jian Guo; Tao Huan; Bradley S Moore; Anna Edlund
Journal:  ACS Infect Dis       Date:  2020-01-10       Impact factor: 5.084

9.  Composite Long- and Short-Read Sequencing Delivers a Complete Genome Sequence of B04Sm5, a Reutericyclin- and Mutanocyclin-Producing Strain of Streptococcus mutans.

Authors:  Jonathon L Baker; Anna Edlund
Journal:  Microbiol Resour Announc       Date:  2020-11-19
  9 in total

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