Author: Baker, Dannon; van den Beek, Marius; Blankenberg, Daniel; Bouvier, Dave; Chilton, John; Coraor, Nate; Coppens, Frederik; Eguinoa, Ignacio; Gladman, Simon; Grüning, Björn; Keener, Nicholas; Larivière, Delphine; Lonie, Andrew; Kosakovsky Pond, Sergei; Maier, Wolfgang; Nekrutenko, Anton; Taylor, James; Weaver, Steven
Title: No more business as usual: Agile and effective responses to emerging pathogen threats require open data and open analytics Cord-id: 3axjjvly Document date: 2020_8_13
ID: 3axjjvly
Snippet: The current state of much of the Wuhan pneumonia virus (severe acute respiratory syndrome coronavirus 2 [SARS-CoV-2]) research shows a regrettable lack of data sharing and considerable analytical obfuscation. This impedes global research cooperation, which is essential for tackling public health emergencies and requires unimpeded access to data, analysis tools, and computational infrastructure. Here, we show that community efforts in developing open analytical software tools over the past 10 yea
Document: The current state of much of the Wuhan pneumonia virus (severe acute respiratory syndrome coronavirus 2 [SARS-CoV-2]) research shows a regrettable lack of data sharing and considerable analytical obfuscation. This impedes global research cooperation, which is essential for tackling public health emergencies and requires unimpeded access to data, analysis tools, and computational infrastructure. Here, we show that community efforts in developing open analytical software tools over the past 10 years, combined with national investments into scientific computational infrastructure, can overcome these deficiencies and provide an accessible platform for tackling global health emergencies in an open and transparent manner. Specifically, we use all SARS-CoV-2 genomic data available in the public domain so far to (1) underscore the importance of access to raw data and (2) demonstrate that existing community efforts in curation and deployment of biomedical software can reliably support rapid, reproducible research during global health crises. All our analyses are fully documented at https://github.com/galaxyproject/SARS-CoV-2.
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