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Metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance

Metagenomic next-generation sequencing (mNGS), the shotgun sequencing of RNA and DNA from clinical samples, has proved useful for broad-spectrum pathogen detection and the genomic surveillance of viral outbreaks. An additional target enrichment step is generally needed for high-sensitivity pathogen...

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Autores principales: Deng, Xianding, Achari, Asmeeta, Federman, Scot, Yu, Guixia, Somasekar, Sneha, Bártolo, Inês, Yagi, Shigeo, Mbala-Kingebeni, Placide, Kapetshi, Jimmy, Ahuka-Mundeke, Steve, Muyembe-Tamfum, Jean-Jacques, Ahmed, Asim A., Ganesh, Vijay, Tamhankar, Manasi, Patterson, Jean L., Ndembi, Nicaise, Mbanya, Dora, Kaptue, Lazare, McArthur, Carole, Muñoz-Medina, José E., Gonzalez-Bonilla, Cesar R., López, Susana, Arias, Carlos F., Arevalo, Shaun, Miller, Steve, Stone, Mars, Busch, Michael, Hsieh, Kristina, Messenger, Sharon, Wadford, Debra A., Rodgers, Mary, Cloherty, Gavin, Faria, Nuno R., Thézé, Julien, Pybus, Oliver G., Neto, Zoraima, Morais, Joana, Taveira, Nuno, R. Hackett, John, Chiu, Charles Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7047537/
https://www.ncbi.nlm.nih.gov/pubmed/31932713
http://dx.doi.org/10.1038/s41564-019-0637-9
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author Deng, Xianding
Achari, Asmeeta
Federman, Scot
Yu, Guixia
Somasekar, Sneha
Bártolo, Inês
Yagi, Shigeo
Mbala-Kingebeni, Placide
Kapetshi, Jimmy
Ahuka-Mundeke, Steve
Muyembe-Tamfum, Jean-Jacques
Ahmed, Asim A.
Ganesh, Vijay
Tamhankar, Manasi
Patterson, Jean L.
Ndembi, Nicaise
Mbanya, Dora
Kaptue, Lazare
McArthur, Carole
Muñoz-Medina, José E.
Gonzalez-Bonilla, Cesar R.
López, Susana
Arias, Carlos F.
Arevalo, Shaun
Miller, Steve
Stone, Mars
Busch, Michael
Hsieh, Kristina
Messenger, Sharon
Wadford, Debra A.
Rodgers, Mary
Cloherty, Gavin
Faria, Nuno R.
Thézé, Julien
Pybus, Oliver G.
Neto, Zoraima
Morais, Joana
Taveira, Nuno
R. Hackett, John
Chiu, Charles Y.
author_facet Deng, Xianding
Achari, Asmeeta
Federman, Scot
Yu, Guixia
Somasekar, Sneha
Bártolo, Inês
Yagi, Shigeo
Mbala-Kingebeni, Placide
Kapetshi, Jimmy
Ahuka-Mundeke, Steve
Muyembe-Tamfum, Jean-Jacques
Ahmed, Asim A.
Ganesh, Vijay
Tamhankar, Manasi
Patterson, Jean L.
Ndembi, Nicaise
Mbanya, Dora
Kaptue, Lazare
McArthur, Carole
Muñoz-Medina, José E.
Gonzalez-Bonilla, Cesar R.
López, Susana
Arias, Carlos F.
Arevalo, Shaun
Miller, Steve
Stone, Mars
Busch, Michael
Hsieh, Kristina
Messenger, Sharon
Wadford, Debra A.
Rodgers, Mary
Cloherty, Gavin
Faria, Nuno R.
Thézé, Julien
Pybus, Oliver G.
Neto, Zoraima
Morais, Joana
Taveira, Nuno
R. Hackett, John
Chiu, Charles Y.
author_sort Deng, Xianding
collection PubMed
description Metagenomic next-generation sequencing (mNGS), the shotgun sequencing of RNA and DNA from clinical samples, has proved useful for broad-spectrum pathogen detection and the genomic surveillance of viral outbreaks. An additional target enrichment step is generally needed for high-sensitivity pathogen identification in low-titre infections, yet available methods using PCR or capture probes can be limited by high cost, narrow scope of detection, lengthy protocols and/or cross-contamination. Here, we developed metagenomic sequencing with spiked primer enrichment (MSSPE), a method for enriching targeted RNA viral sequences while simultaneously retaining metagenomic sensitivity for other pathogens. We evaluated MSSPE for 14 different viruses, yielding a median tenfold enrichment and mean 47% (±16%) increase in the breadth of genome coverage over mNGS alone. Virus detection using MSSPE arboviral or haemorrhagic fever viral panels was comparable in sensitivity to specific PCR, demonstrating 95% accuracy for the detection of Zika, Ebola, dengue, chikungunya and yellow fever viruses in plasma samples from infected patients. Notably, sequences from re-emerging and/or co-infecting viruses that have not been specifically targeted a priori, including Powassan and Usutu, were successfully enriched using MSSPE. MSSPE is simple, low cost, fast and deployable on either benchtop or portable nanopore sequencers, making this method directly applicable for diagnostic laboratory and field use.
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spelling pubmed-70475372020-03-26 Metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance Deng, Xianding Achari, Asmeeta Federman, Scot Yu, Guixia Somasekar, Sneha Bártolo, Inês Yagi, Shigeo Mbala-Kingebeni, Placide Kapetshi, Jimmy Ahuka-Mundeke, Steve Muyembe-Tamfum, Jean-Jacques Ahmed, Asim A. Ganesh, Vijay Tamhankar, Manasi Patterson, Jean L. Ndembi, Nicaise Mbanya, Dora Kaptue, Lazare McArthur, Carole Muñoz-Medina, José E. Gonzalez-Bonilla, Cesar R. López, Susana Arias, Carlos F. Arevalo, Shaun Miller, Steve Stone, Mars Busch, Michael Hsieh, Kristina Messenger, Sharon Wadford, Debra A. Rodgers, Mary Cloherty, Gavin Faria, Nuno R. Thézé, Julien Pybus, Oliver G. Neto, Zoraima Morais, Joana Taveira, Nuno R. Hackett, John Chiu, Charles Y. Nat Microbiol Article Metagenomic next-generation sequencing (mNGS), the shotgun sequencing of RNA and DNA from clinical samples, has proved useful for broad-spectrum pathogen detection and the genomic surveillance of viral outbreaks. An additional target enrichment step is generally needed for high-sensitivity pathogen identification in low-titre infections, yet available methods using PCR or capture probes can be limited by high cost, narrow scope of detection, lengthy protocols and/or cross-contamination. Here, we developed metagenomic sequencing with spiked primer enrichment (MSSPE), a method for enriching targeted RNA viral sequences while simultaneously retaining metagenomic sensitivity for other pathogens. We evaluated MSSPE for 14 different viruses, yielding a median tenfold enrichment and mean 47% (±16%) increase in the breadth of genome coverage over mNGS alone. Virus detection using MSSPE arboviral or haemorrhagic fever viral panels was comparable in sensitivity to specific PCR, demonstrating 95% accuracy for the detection of Zika, Ebola, dengue, chikungunya and yellow fever viruses in plasma samples from infected patients. Notably, sequences from re-emerging and/or co-infecting viruses that have not been specifically targeted a priori, including Powassan and Usutu, were successfully enriched using MSSPE. MSSPE is simple, low cost, fast and deployable on either benchtop or portable nanopore sequencers, making this method directly applicable for diagnostic laboratory and field use. Nature Publishing Group UK 2020-01-13 2020 /pmc/articles/PMC7047537/ /pubmed/31932713 http://dx.doi.org/10.1038/s41564-019-0637-9 Text en © The Author(s), under exclusive licence to Springer Nature Limited 2020 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Article
Deng, Xianding
Achari, Asmeeta
Federman, Scot
Yu, Guixia
Somasekar, Sneha
Bártolo, Inês
Yagi, Shigeo
Mbala-Kingebeni, Placide
Kapetshi, Jimmy
Ahuka-Mundeke, Steve
Muyembe-Tamfum, Jean-Jacques
Ahmed, Asim A.
Ganesh, Vijay
Tamhankar, Manasi
Patterson, Jean L.
Ndembi, Nicaise
Mbanya, Dora
Kaptue, Lazare
McArthur, Carole
Muñoz-Medina, José E.
Gonzalez-Bonilla, Cesar R.
López, Susana
Arias, Carlos F.
Arevalo, Shaun
Miller, Steve
Stone, Mars
Busch, Michael
Hsieh, Kristina
Messenger, Sharon
Wadford, Debra A.
Rodgers, Mary
Cloherty, Gavin
Faria, Nuno R.
Thézé, Julien
Pybus, Oliver G.
Neto, Zoraima
Morais, Joana
Taveira, Nuno
R. Hackett, John
Chiu, Charles Y.
Metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance
title Metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance
title_full Metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance
title_fullStr Metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance
title_full_unstemmed Metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance
title_short Metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance
title_sort metagenomic sequencing with spiked primer enrichment for viral diagnostics and genomic surveillance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7047537/
https://www.ncbi.nlm.nih.gov/pubmed/31932713
http://dx.doi.org/10.1038/s41564-019-0637-9
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