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Generated by using either gene-expression microarrays or “next-generation” DNA sequencing (an application called “RNA-Seq”), transcriptome data can be used to pinpoint genes whose expression levels ...
This study generated two million short DNA sequences, known as signature sequences or sequence tags, to identify and quantify both known and novel small RNA molecules. with the Breaking Science News ...
In a microarray experiment the glass slide with the labeled DNA of interest ... the use of a reference RNA; instead, oligonucleotides containing one mismatch in their sequence are used to correct ...
By using one fluorescent color for the tube of normal RNA ... pieces of DNA attached to it. Each single strand represents a specific gene sequence. After the cDNA is applied to the microarray ...
Papers in this issue focus on original research offering novel biological and clinical insights gained using long-read DNA and RNA sequencing technologies and other long molecule approaches.
Here, the unit's primary focus is on the technique known as Sanger sequencing, wherein DNA replication is used ... Lastly, the unit concludes with a look at microarray analysis, a technique ...
We also offer RNA integrity, DNA fragment and sequencing library analysis using our Bioanalyser. Initially set up as an Affymetrix-accredited laboratory to run an Affymetrix Gene Chip Microarray ...
To do so, they used a detergent that leaves RNA polymerase intact while removing all histones attached to DNA ... of microarrays, which often allowed scientists to identify only large genomic changes.
We aim to combine data from different sources, e.g, TF binding data (ChIP-seq and ChIP-chip), gene expression data (microarray and RNA-seq), with computational ... We aim to understand the functions ...
Rubicon Genomics will develop the TransPlex™ WTA technology which can be used for amplifying total RNA from a variety of sample sources. Max Planck will use Roche’s Genome Sequencer 20 system to ...