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This image compares three DNA sequencing technologies: Sanger sequencing, Massively Parallel DNA sequencing, and Nanopore DNA sequencing. Sanger sequencing (left) sequences 500-700 bases per reaction ...
Next-generation DNA sequencing has started a revolution in ... He notes that although it could work for niche applications, the method will be difficult to parallelize, and it takes time to ...
An INRS research team has identified a new family of enzymes that can make precise cuts in single-stranded DNA. A few years ...
Genome Research publishes Part 2 of the Special Issue on Long-read DNA and RNA Sequencing Applications in Biology and Medicine, a diverse collection of research, methods, and review articles offering ...
A biomolecular engineering course has recently been redesigned to give students experience with the entire process of DNA ...
A few years ago, the advent of technology known as CRISPR was a major breakthrough in the scientific world. Developed from a ...
"New DNA sequencing technologies like NGS and third-generation sequencing are changing genomics research, clinical diagnostics, and personalized medicine. The global market is growing rapidly, ...
The gold standard technology that scientists use to detect DNA methylation is bisulfite genomic sequencing. It is a qualitative, quantitative, and efficient approach to identify methylated cytosine at ...
A team of scientists has created a new guide to advance standards for collecting and cataloging DNA from marine species, ...
First, short DNA sequence tags called unique molecular ... so DNA microscopy could help unravel those genetic mechanisms. Such applications could in turn guide more precise immunotherapy for ...