Whole transcriptome analysis to investigate differential gene expression and regulatory adaption can be carried out on two different technological platforms: by probe hybridisation to microarrays or by RNAseq for deep sequencing. Since there are difference in terms of their genome coverage, sensitivity and cost, there is a requirement for robust comparisons to determine the platform of choice. Here, we present datasets for the whole transcriptional response verocytoxigenic Escherichia coli (VTEC) obtained from RNA-seq and microarray platforms in response to spinach, together with a comparison between the datasets (available at Array Express: E-MTAB-3249, E-MTAB-4120, E-MTAB-7441).</p
With the fast development of high-throughput sequencing technologies, a new generation of genome-wid...
RNA-seq has matured and become an important tool for studying RNA biology. Here we compared two RNA-...
Gene expression and its regulation are very important to understand the behavior of cells under diff...
Whole transcriptome analysis to investigate differential gene expression and regulatory adaption can...
A high-throughput positive-selection approach was taken to generate a dataset of Shigatoxigenic Esch...
RNA-seq, has recently become an attractive method of choice in the studies of transcriptomes, promis...
Verocytotoxigenic Escherichia coli (VTEC) can contaminate crop plants, potentially using them as sec...
Background: Transcriptomics analyses of bacteria (and other organisms) provide global as well as det...
Transcriptomics is part of a family of disciplines focussing on high throughput molecular biology ex...
Genome-wide studies of bacterial gene expression are shifting from microarray technology to second g...
Sequencing the human genome empowers translational medicine, facilitating transcriptome-wide molecul...
Item does not contain fulltextRNA sequencing is starting to compete with the use of DNA microarrays ...
Background: High-throughput systems for gene expression profiling have been developed and have matur...
With the fast development of high-throughput sequencing technologies, a new generation of genome-wid...
RNA-seq has matured and become an important tool for studying RNA biology. Here we compared two RNA-...
Gene expression and its regulation are very important to understand the behavior of cells under diff...
Whole transcriptome analysis to investigate differential gene expression and regulatory adaption can...
A high-throughput positive-selection approach was taken to generate a dataset of Shigatoxigenic Esch...
RNA-seq, has recently become an attractive method of choice in the studies of transcriptomes, promis...
Verocytotoxigenic Escherichia coli (VTEC) can contaminate crop plants, potentially using them as sec...
Background: Transcriptomics analyses of bacteria (and other organisms) provide global as well as det...
Transcriptomics is part of a family of disciplines focussing on high throughput molecular biology ex...
Genome-wide studies of bacterial gene expression are shifting from microarray technology to second g...
Sequencing the human genome empowers translational medicine, facilitating transcriptome-wide molecul...
Item does not contain fulltextRNA sequencing is starting to compete with the use of DNA microarrays ...
Background: High-throughput systems for gene expression profiling have been developed and have matur...
With the fast development of high-throughput sequencing technologies, a new generation of genome-wid...
RNA-seq has matured and become an important tool for studying RNA biology. Here we compared two RNA-...
Gene expression and its regulation are very important to understand the behavior of cells under diff...