Literature DB >> 24957089

Using multilocus sequence typing to study bacterial variation: prospects in the genomic era.

Keith A Jolley1, Martin C J Maiden.   

Abstract

Multilocus sequence typing (MLST) indexes the sequence variation present in a small number (usually seven) of housekeeping gene fragments located around the bacterial genome. Unique alleles at these loci are assigned arbitrary integer identifiers, which effectively summarizes the variation present in several thousand base pairs of genome sequence information as a series of numbers. Comparing bacterial isolates using allele-based methods efficiently corrects for the effects of lateral gene transfer present in many bacterial populations and is computationally efficient. This 'gene-by-gene' approach can be applied to larger collections of loci, such as the ribosomal protein genes used in ribosomal MLST (rMLST), up to and including the complete set of coding sequences present in a genome, whole-genome MLST (wgMLST), providing scalable, efficient and readily interpreted genome analysis.

Keywords:  MLST; clonal complex; gene-by-gene; ribosomal MLST; whole-genome MLST

Mesh:

Year:  2014        PMID: 24957089     DOI: 10.2217/fmb.14.24

Source DB:  PubMed          Journal:  Future Microbiol        ISSN: 1746-0913            Impact factor:   3.165


  35 in total

1.  Molecular Assay Validation Using Genomic Sequence Databases.

Authors:  John P Dekker
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Authors:  John P Dekker; Karen M Frank
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Review 4.  Microbial sequence typing in the genomic era.

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Journal:  Infect Genet Evol       Date:  2017-09-21       Impact factor: 3.342

Review 5.  The evolution of Campylobacter jejuni and Campylobacter coli.

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8.  Whole genome multilocus sequence typing as an epidemiologic tool for Yersinia pestis.

Authors:  Luke C Kingry; Lori A Rowe; Laurel B Respicio-Kingry; Charles B Beard; Martin E Schriefer; Jeannine M Petersen
Journal:  Diagn Microbiol Infect Dis       Date:  2015-12-12       Impact factor: 2.803

9.  Genomic Analysis of Serogroup Y Neisseria meningitidis Isolates Reveals Extensive Similarities Between Carriage-Associated and Disease-Associated Organisms.

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10.  Genome Sequence of Escherichia coli Isolated from an Adult in Kibera, an Urban Informal Settlement in Nairobi, Kenya.

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