We describe an analysis, applicable to any spotted microarray dataset produced using genomic DNA as a reference, that quantifies prokaryotic levels of mRNA on a genome-wide scale. Applying this to Mycobacterium tuberculosis, we validate the technique, show a correlation between level of expression and biological importance, define the complement of invariant genes and analyze absolute levels of expression by functional class to develop ways of understanding an organism's biology without comparison to another growth condition
Background: Microarray analysis is a powerful technique for investigating changes in gene expression...
To construct a regulatory map of the genome of the human pathogen, Mycobacterium tuberculosis, we ap...
Whole blood transcriptional signatures distinguishing active tuberculosis patients from asymptomatic...
We describe an analysis, applicable to any spotted microarray dataset produced using genomic DNA as ...
DNA microarray technology represents an extremely powerful tool to understand the biology of Myobact...
A fundamental problem in DNA microarray analysis is the lack of a common standard to compare the exp...
DNA microarray technology represents an extremely powerful tool to understand the biology of Myobact...
Background:Microarray analysis is a powerful technique for investigating changes in gene expression....
Deciphering physiological changes that mediate transition of Mycobacterium tuberculosis between repl...
SummaryDeciphering physiological changes that mediate transition of Mycobacterium tuberculosis betwe...
BACKGROUND: The amplification of bacterial RNA is required if complex host-pathogen interactions are...
Genome sequencing has identified an extensive repertoire of single nucleotide polymorphisms among cl...
RNA sequencing provides a new perspective on the genome of Mycobacterium tuberculosis by revealing a...
BACKGROUND: Microarray analysis is a powerful technique for investigating changes in gene expression...
Transcriptional profiling has revealed that Mycobacterium tuberculosis adapts both its metabolic and...
Background: Microarray analysis is a powerful technique for investigating changes in gene expression...
To construct a regulatory map of the genome of the human pathogen, Mycobacterium tuberculosis, we ap...
Whole blood transcriptional signatures distinguishing active tuberculosis patients from asymptomatic...
We describe an analysis, applicable to any spotted microarray dataset produced using genomic DNA as ...
DNA microarray technology represents an extremely powerful tool to understand the biology of Myobact...
A fundamental problem in DNA microarray analysis is the lack of a common standard to compare the exp...
DNA microarray technology represents an extremely powerful tool to understand the biology of Myobact...
Background:Microarray analysis is a powerful technique for investigating changes in gene expression....
Deciphering physiological changes that mediate transition of Mycobacterium tuberculosis between repl...
SummaryDeciphering physiological changes that mediate transition of Mycobacterium tuberculosis betwe...
BACKGROUND: The amplification of bacterial RNA is required if complex host-pathogen interactions are...
Genome sequencing has identified an extensive repertoire of single nucleotide polymorphisms among cl...
RNA sequencing provides a new perspective on the genome of Mycobacterium tuberculosis by revealing a...
BACKGROUND: Microarray analysis is a powerful technique for investigating changes in gene expression...
Transcriptional profiling has revealed that Mycobacterium tuberculosis adapts both its metabolic and...
Background: Microarray analysis is a powerful technique for investigating changes in gene expression...
To construct a regulatory map of the genome of the human pathogen, Mycobacterium tuberculosis, we ap...
Whole blood transcriptional signatures distinguishing active tuberculosis patients from asymptomatic...