DNAnexus Launches First Complete Cloud-Based Solution for Genomic Variation Identification

3 Feb 2011
Sarah Sarah
Marketing / Sales

Product news

DNAnexus, Inc. announces the availability of a comprehensive set of new informatics tools that enable life science researchers to efficiently analyze and manage large-scale genomic variation datasets in a cloud-based workflow. DNAnexus will discuss results from a study using this solution at the 12th annual Advances in Genome Biology and Technology (AGBT) meeting in Marco Island, Florida.

Resequencing for variant detection is a key application enabled by low-cost next-generation sequencing. With an estimated 5 million variants in the human genome, analyzing these complex data sets requires significant computational infrastructure and staff time to manually validate and correlate findings. To streamline this process, researchers need an efficient way to narrow these data down to a manageable size for analysis - ideally to less than a few hundred variants.

By leveraging a unique cloud-based approach, DNAnexus provides a comprehensive variation identification workflow that joins a scalable computational infrastructure with an integrated suite of sophisticated filtering and analysis technologies. Together, they simplify the variation analysis workflow and enable life scientists to better manage and interrogate these complex data from any web browser.

"Datasets associated with genomic variation are often huge and cumbersome, making it difficult to identify the variations that have a real and measurable impact and help explain, for example, a disease or drug response," said Andreas Sundquist, Co-Founder and President of DNAnexus. "As with all our solutions, the variation workflow provides researchers and sequencing centers instant access to a virtually limitless computing infrastructure as well as a suite of sophisticated visualization tools that allow them to quickly home in on the most relevant variants. Whether they are working with a specific gene, a coding region, or entire chromosomes, the result is less time spent analyzing the data, quicker insights and faster decision making."

The complete DNAnexus Variation Identification workflow combines a new population allele frequency analysis application with a nucleotide-level variation analysis to enable the rapid identification of alleles and their frequencies across different populations. A flexible query tool provides further filtering capabilities to streamline the identification of biologically interesting and relevant variants. "Gene Info" pages provide an overview of each gene as well as integrated links to third-party data sources for further investigation and validation and disease impact analysis.

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Genome AnalysisGenomics, the study of genomes, includes functional genomics, evolutionary genomics and comparative genomics. There are many genomic technologies such as DNA sequencing of whole genomes, computational biology and bioinformatics. DNA and nucleic acids must be isolated and concentrated from cells for analysis with kits, automated analyzers and software. Other useful technologies for studying genomics include PCR, microarrays and electrophoresis.Data AnalysisData analysis hardware and software is available to make data processing straight-forward yet powerful. Data software can be used for math and stats, technical graphing and image analysis. In addition, software is available for specific data analysis of electrophoresis, densitometry, ELISA and DNA sequencing.Chem / BioinformaticsCheminformatics and bioinformatics are computational techniques used in chemistry and biology, respectively, for data acquisition, processing and storage. Cheminformatics focuses on compound information, whereas bioinformatics is mainly applied to analysis and modeling of genomics, genetic and sequencing information. Hardware and software is available for data acquisition, analysis, management and storage.DNA SequencingDNA sequencing, such as sanger sequencing, is a biological technique that determines the precise order of nucleotide bases in a fragment or template of DNA. DNA sequencers and genetic analyzers are based on capillary electrophoresis, where labeled DNA fragments are electrophoretically separated by size as they migrate through a polymer. Find the best DNA sequencing products, including DNA sequencing kits, genomic libraries and genetic identity kits in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.
DNAnexus Launches First Complete Cloud-Based Solution for Genomic Variation Identification