Real-time, portable genome sequencing for Ebola surveillance

A nanopore DNA sequencer is used for real-time genomic surveillance of the Ebola virus epidemic in the field in Guinea; the authors demonstrate that it is possible to pack a genomic surveillance laboratory in a suitcase and transport it to the field for on-site virus sequencing, generating results w...

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Veröffentlicht in:Nature (London) 2016-02, Vol.530 (7589), p.228-232
Hauptverfasser: Quick, Joshua, Loman, Nicholas J., Duraffour, Sophie, Simpson, Jared T., Severi, Ettore, Cowley, Lauren, Bore, Joseph Akoi, Koundouno, Raymond, Dudas, Gytis, Mikhail, Amy, Ouédraogo, Nobila, Afrough, Babak, Bah, Amadou, Baum, Jonathan H. J., Becker-Ziaja, Beate, Boettcher, Jan Peter, Cabeza-Cabrerizo, Mar, Camino-Sánchez, Álvaro, Carter, Lisa L., Doerrbecker, Juliane, Enkirch, Theresa, Dorival, Isabel García-, Hetzelt, Nicole, Hinzmann, Julia, Holm, Tobias, Kafetzopoulou, Liana Eleni, Koropogui, Michel, Kosgey, Abigael, Kuisma, Eeva, Logue, Christopher H., Mazzarelli, Antonio, Meisel, Sarah, Mertens, Marc, Michel, Janine, Ngabo, Didier, Nitzsche, Katja, Pallasch, Elisa, Patrono, Livia Victoria, Portmann, Jasmine, Repits, Johanna Gabriella, Rickett, Natasha Y., Sachse, Andreas, Singethan, Katrin, Vitoriano, Inês, Yemanaberhan, Rahel L., Zekeng, Elsa G., Racine, Trina, Bello, Alexander, Sall, Amadou Alpha, Faye, Ousmane, Faye, Oumar, Magassouba, N’Faly, Williams, Cecelia V., Amburgey, Victoria, Winona, Linda, Davis, Emily, Gerlach, Jon, Washington, Frank, Monteil, Vanessa, Jourdain, Marine, Bererd, Marion, Camara, Alimou, Somlare, Hermann, Camara, Abdoulaye, Gerard, Marianne, Bado, Guillaume, Baillet, Bernard, Delaune, Déborah, Nebie, Koumpingnin Yacouba, Diarra, Abdoulaye, Savane, Yacouba, Pallawo, Raymond Bernard, Gutierrez, Giovanna Jaramillo, Milhano, Natacha, Roger, Isabelle, Williams, Christopher J., Yattara, Facinet, Lewandowski, Kuiama, Taylor, James, Rachwal, Phillip, J. Turner, Daniel, Pollakis, Georgios, Matthews, David A., Shea, Matthew K. O’, Johnston, Andrew McD, Wilson, Duncan, Hutley, Emma, Smit, Erasmus, Wölfel, Roman, Stoecker, Kilian, Fleischmann, Erna, Gabriel, Martin, Weller, Simon A., Koivogui, Lamine, Diallo, Boubacar, Keïta, Sakoba, Rambaut, Andrew, Formenty, Pierre, Günther, Stephan, Carroll, Miles W.
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Zusammenfassung:A nanopore DNA sequencer is used for real-time genomic surveillance of the Ebola virus epidemic in the field in Guinea; the authors demonstrate that it is possible to pack a genomic surveillance laboratory in a suitcase and transport it to the field for on-site virus sequencing, generating results within 24 hours of sample collection. Ebola virus genomics surveillance This paper reports the use of nanopore DNA sequencers (known as MinIONs) for real-time genomic surveillance of the Ebola virus epidemic, in the field in Guinea. The authors demonstrate that it is possible to pack a genomic surveillance laboratory in a suitcase and transport it to the field for on-site virus sequencing, generating results within 24 hours of sample collection. The Ebola virus disease epidemic in West Africa is the largest on record, responsible for over 28,599 cases and more than 11,299 deaths 1 . Genome sequencing in viral outbreaks is desirable to characterize the infectious agent and determine its evolutionary rate. Genome sequencing also allows the identification of signatures of host adaptation, identification and monitoring of diagnostic targets, and characterization of responses to vaccines and treatments. The Ebola virus (EBOV) genome substitution rate in the Makona strain has been estimated at between 0.87 × 10 −3 and 1.42 × 10 −3 mutations per site per year. This is equivalent to 16–27 mutations in each genome, meaning that sequences diverge rapidly enough to identify distinct sub-lineages during a prolonged epidemic 2 , 3 , 4 , 5 , 6 , 7 . Genome sequencing provides a high-resolution view of pathogen evolution and is increasingly sought after for outbreak surveillance. Sequence data may be used to guide control measures, but only if the results are generated quickly enough to inform interventions 8 . Genomic surveillance during the epidemic has been sporadic owing to a lack of local sequencing capacity coupled with practical difficulties transporting samples to remote sequencing facilities 9 . To address this problem, here we devise a genomic surveillance system that utilizes a novel nanopore DNA sequencing instrument. In April 2015 this system was transported in standard airline luggage to Guinea and used for real-time genomic surveillance of the ongoing epidemic. We present sequence data and analysis of 142 EBOV samples collected during the period March to October 2015. We were able to generate results less than 24 h after receiving an Ebola-positive sample, with t
ISSN:0028-0836
1476-4687
DOI:10.1038/nature16996