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Similar articles for PubMed (Select 15184437)

1.

Multiplex PCR for distinguishing the most common phase-1 flagellar antigens of Salmonella spp.

Herrera-León S, McQuiston JR, Usera MA, Fields PI, Garaizar J, Echeita MA.

J Clin Microbiol. 2004 Jun;42(6):2581-6.

2.

Multiplex PCR-based detection and identification of the most common Salmonella second-phase flagellar antigens.

Echeita MA, Herrera S, Garaizar J, Usera MA.

Res Microbiol. 2002 Mar;153(2):107-13.

PMID:
11900263
3.

Blind comparison of traditional serotyping with three multiplex PCRs for the identification of Salmonella serotypes.

Herrera-León S, Ramiro R, Arroyo M, Díez R, Usera MA, Echeita MA.

Res Microbiol. 2007 Mar;158(2):122-7. Epub 2006 Dec 20.

PMID:
17258433
4.
5.

Detection and identification of Salmonella Typhimurium in bovine diarrhoeic fecal samples by immunomagnetic separation and multiplex PCR assay.

Salehi TZ, Tadjbakhsh H, Atashparvar N, Nadalian MG, Mahzounieh MR.

Zoonoses Public Health. 2007;54(6-7):231-6.

PMID:
17803511
6.
7.

A real-time multiplex SYBR Green I polymerase chain reaction assay for rapid screening of salmonella serotypes prevalent in the European Union.

Rajtak U, Leonard N, Bolton D, Fanning S.

Foodborne Pathog Dis. 2011 Jul;8(7):769-80. doi: 10.1089/fpd.2010.0768. Epub 2011 Mar 7.

PMID:
21381925
8.

Sequencing and comparative analysis of flagellin genes fliC, fljB, and flpA from Salmonella.

McQuiston JR, Parrenas R, Ortiz-Rivera M, Gheesling L, Brenner F, Fields PI.

J Clin Microbiol. 2004 May;42(5):1923-32.

9.

Relationship between genotype and phenotype of flagellin C in Salmonella.

Ji WS, Hu JL, Qiu JW, Pan BR, Peng DR, Shi BL, Zhou SJ, Wu KC, Fan DM.

World J Gastroenterol. 2001 Dec;7(6):864-7.

11.
12.

Restriction fragment length polymorphism analysis of some flagellin genes of Salmonella enterica.

Dauga C, Zabrovskaia A, Grimont PA.

J Clin Microbiol. 1998 Oct;36(10):2835-43.

13.

Conversion of the Salmonella phase 1 flagellin gene fliC to the phase 2 gene fljB on the Escherichia coli K-12 chromosome.

Okazaki N, Matsuo S, Saito K, Tominaga A, Enomoto M.

J Bacteriol. 1993 Feb;175(3):758-66.

14.

Methodologies towards the development of an oligonucleotide microarray for determination of Salmonella serotypes.

Yoshida C, Franklin K, Konczy P, McQuiston JR, Fields PI, Nash JH, Taboada EN, Rahn K.

J Microbiol Methods. 2007 Aug;70(2):261-71. Epub 2007 Jun 7.

PMID:
17555834
15.

Sequence diversity of Bacillus thuringiensis flagellin (H antigen) protein at the intra-H serotype level.

Xu D, Côté JC.

Appl Environ Microbiol. 2008 Sep;74(17):5524-32. doi: 10.1128/AEM.00951-08. Epub 2008 Jun 27.

16.

Identification of EPEC and non-EPEC serotypes in the EPEC O serogroups by PCR-RFLP analysis of the fliC gene.

Botelho BA, Bando SY, Trabulsi LR, Moreira-Filho CA.

J Microbiol Methods. 2003 Jul;54(1):87-93.

PMID:
12732425
17.
18.

Development and evaluation of a multiplex real-time polymerase chain reaction procedure to clinically type prevalent Salmonella enterica serovars.

Muñoz N, Diaz-Osorio M, Moreno J, Sánchez-Jiménez M, Cardona-Castro N.

J Mol Diagn. 2010 Mar;12(2):220-5. doi: 10.2353/jmoldx.2010.090036. Epub 2010 Jan 28.

19.

Identification by a multiplex PCR-based assay of Salmonella typhimurium and Salmonella enteritidis strains from environmental swabs of poultry houses.

Soumet C, Ermel G, Rose V, Rose N, Drouin P, Salvat G, Colin P.

Lett Appl Microbiol. 1999 Jul;29(1):1-6.

PMID:
10432625
20.
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