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Genome Biology|June 10, 2004
Microarray-based genomic surveying of gene polymorphisms in Chlamydia trachomatisBrian W Brunelle, Tracy L Nicholson, Richard S StephensMethods in Molecular Biology (Clifton, N.J.)|November 21, 2007
Microarray-based approach for genome-wide survey of nucleotide polymorphismsBrian W Brunelle, Tracy L NicholsonJournal of Microbiological Methods|August 21, 2016
Comparison of ribotyping and sequence-based typing for discriminating among isolates of Bordetella bronchisepticaKaren B Register, Tracy L Nicholson, Brian W BrunelleInfection and Immunity|June 24, 2004
Chlamydia trachomatis lacks an adaptive response to changes in carbon source availabilityTracy L Nicholson, Karen Chiu, Richard S StephensPlos One|November 2, 2018
Comparative genomic and methylome analysis of non-virulent D74 and virulent Nagasaki Haemophilus parasuis isolatesTracy L Nicholson, Brian W Brunelle, Darrell O Bayles, et al.Journal of Bacteriology|May 6, 2003
Global stage-specific gene regulation during the developmental cycle of Chlamydia trachomatisTracy L Nicholson, Lynn Olinger, Kimberley Chong, et al.BMC Genomics|July 10, 2007
Construction and validation of a first-generation Bordetella bronchiseptica long-oligonucleotide microarray by transcriptional profiling the Bvg regulonTracy L NicholsonInfection and Immunity|December 22, 2005
The ompA gene in Chlamydia trachomatis differs in phylogeny and rate of evolution from other regions of the genomeBrian W Brunelle, George F SensabaughInternational Journal of Antimicrobial Agents|June 17, 2015
Fluoroquinolone induction of phage-mediated gene transfer in multidrug-resistant SalmonellaBradley L Bearson, Brian W BrunelleBMC Research Notes|January 24, 2012
Nucleotide and phylogenetic analyses of the Chlamydia trachomatis ompA gene indicates it is a hotspot for mutationBrian W Brunelle, George F SensabaughPageof 13