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IT divisions have to ensure that they plan for today as well as the future to meet the demanding customer SLAs.
Plan for the future: For IT departments with a longer IT procurement cycle, it is a struggle to ensure that the IT purchase process keeps up with the storage needs of the exponentially growing data produced from NGS processes. Companies performing NGS usually require sequencing to run 24/7 and it is left to the IT department to ensure that the right production performance and storage tiers are available as needed. Each of these stages has unique capacity and performance needs. Meet the performance and capacity needs: Most Life Sciences workflows containing NGS include data generation, analysis, and archiving stages. And, in this day and age of flattening IT budgets, the IT departments in these organizations cannot keep up with the pace of data generation.įor most organizations performing NGS, the IT department has to deliver on the following fronts: The improvements, particularly in NGS technology and the growing applications of NGS means that more and more organizations are using NGS services and generating data at a rate as never before. And, keep in mind each human genome needs about 100 GB of storage, so an Illumina HiSeq X Ten Systems needs about 1.8 PB of storage per year. NGS instrument such as the Illumina HiSeq X Ten Systems can now sequence over 18,000 human genomes per year which is unbelievable when you consider that it took more than a decade to sequence the entire human genome as part of the Human Genome Project. The field of Life Sciences continues to remain at the cutting edge of scientific research with improvements in technologies such as next generation sequencing (NGS), proteomics, etc. But when the Human Genome Project sequenced the entire human genome with 3.2 billion base pairs in 2001, it opened a whole new world of possibilities.ĭemands on IT divisions aka “The NGS Data Challenge” #ISILON SUPPORT FULL#
Then in 1995, the Institute for Genomic Research performed the completed genome sequencing of “Haemophilus influenza” – the first full genome sequencing of a living organism with 1.8M base pairs (Mb). In 1976, a single-stranded RNA virus named “ Bacteriophage MS2” that infects E coli became the first genome with 3569 bases to be completely sequenced. The language of A’s, T’s, C’s and G’s could explain all life forms and led to an explosion in the development of products and services in the areas of pharmaceuticals, healthcare, and agriculture. For Life Sciences, something similar happened when we unlocked the genetic code. The language of 0’s and 1’s opened the door to many new technologies including the internet, modern media platforms, telecommunications, smartphone applications and more.
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The creation and understanding of the binary code was the cornerstone of the development of the modern digital technology age. Energy, Climate Action & Sustainability.APEX Cloud Platform for Red Hat OpenShift.APEX Cloud Platform for Microsoft Azure.APEX Data Storage Services Backup Target.