Literature DB >> 15246505

Identification of Bacillus anthracis by multiprobe microarray hybridization.

Dmitriy Volokhov1, Andrei Pomerantsev, Violetta Kivovich, Avraham Rasooly, Vladimir Chizhikov.   

Abstract

We have developed a rapid assay based on microarray analysis of amplified genetic markers for reliable identification of Bacillus anthracis and its discrimination from other closely related bacterial species of the Bacillus cereus group. By combining polymerase chain reaction (PCR) amplification of six B. anthracis-specific genes (plasmid-associated genes encoding virulence factors (cyaA, pagA, lef, and capA, capB, capC) and one chromosomal marker BA-5449) with analysis of amplicons by microarray hybridization, we were able to unambiguously identify and discriminate B. anthracis among other closely related species. Bacillus identification relied on hybridization with multiple individual microarray oligonucleotide probes (oligoprobes) specific to each target B. anthracis gene. Evaluation of the assay was conducted using several B. anthracis strains (with or without pXO1 and pXO2 plasmids) as well as over 50 other species phylogenetically related to B. anthracis, including B. cereus, B. thuringiensis, B. mycoides, and B. subtilis. The developed microarray analysis of amplified genetic markers protocol provides an efficient method for (i) unambiguous identification and discrimination of B. anthracis from other Bacillus species and (ii) distinguishing between plasmid-containing and plasmid-free Bacillus anthracis strains.

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Year:  2004        PMID: 15246505     DOI: 10.1016/j.diagmicrobio.2004.03.015

Source DB:  PubMed          Journal:  Diagn Microbiol Infect Dis        ISSN: 0732-8893            Impact factor:   2.803


  10 in total

1.  Food microbial pathogen detection and analysis using DNA microarray technologies.

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Journal:  Foodborne Pathog Dis       Date:  2008-08       Impact factor: 3.171

2.  Multiplex PCR for species-level identification of Bacillus anthracis and detection of pXO1, pXO2, and related plasmids.

Authors:  Marco A Riojas; Katalin Kiss; Marian L McKee; Manzour Hernando Hazbón
Journal:  Health Secur       Date:  2015-03-20

3.  Discrimination of Bacillus anthracis and closely related microorganisms by analysis of 16S and 23S rRNA with oligonucleotide microarray.

Authors:  Sergei G Bavykin; Vladimir M Mikhailovich; Vladimir M Zakharyev; Yuri P Lysov; John J Kelly; Oleg S Alferov; Igor M Gavin; Alexander V Kukhtin; Joany Jackman; David A Stahl; Darrell Chandler; Andrei D Mirzabekov
Journal:  Chem Biol Interact       Date:  2007-09-12       Impact factor: 5.192

4.  Rapid DNA amplification using a battery-powered thin-film resistive thermocycler.

Authors:  Keith E Herold; Nikolay Sergeev; Andriy Matviyenko; Avraham Rasooly
Journal:  Methods Mol Biol       Date:  2009

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Journal:  PLoS Comput Biol       Date:  2007-04-20       Impact factor: 4.475

7.  A high-throughput pipeline for designing microarray-based pathogen diagnostic assays.

Authors:  Ravi Vijaya Satya; Nela Zavaljevski; Kamal Kumar; Jaques Reifman
Journal:  BMC Bioinformatics       Date:  2008-04-10       Impact factor: 3.169

8.  DNA Persistence in a Sink Drain Environment.

Authors:  Eric M Winder; George T Bonheyo
Journal:  PLoS One       Date:  2015-07-31       Impact factor: 3.240

Review 9.  Detection and Identification of Bacillus anthracis: From Conventional to Molecular Microbiology Methods.

Authors:  Aleksandra A Zasada
Journal:  Microorganisms       Date:  2020-01-16

10.  Duplex Electrochemical DNA Sensor to Detect Bacillus anthracis CAP and PAG DNA Targets Based on the Incorporation of Tailed Primers and Ferrocene-Labeled dATP.

Authors:  Ivan Magriñá; Miriam Jauset-Rubio; Mayreli Ortiz; Herbert Tomaso; Anna Simonova; Michal Hocek; Ciara K O'Sullivan
Journal:  ACS Omega       Date:  2019-12-11
  10 in total

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