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Targeted genomic sequencing with probe capture for discovery and surveillance of coronaviruses in bats
by
LeBreton, Matthew
, Atibu Losoma, Joseph
, Ngay Lukusa, Ipos
, Sies, Ashton N
, Cameron, Andrew DS
, Joly, Damien O
, Kumakamba, Charles
, Monagin, Corina
, Kuchinski, Kevin S
, Wolfe, Nathan D
, Mbala Kingebeni, Placide
, Muyembe, Francisca
, McIver, David J
, Makuwa, Maria
, Suchan, Danae M
, Lange, Christian E
, Lerminiaux, Nicole A
, Prystajecky, Natalie A
, Russell, Jennifer N
, Ayukekbong, James A
, Saylors, Karen
, N’Kawa, Frida
, Rubin, Edward M
, Loos, Kara D
, Gillis, Amethyst
, Muyembe Tamfum, Jean J
in
Animals
/ bat
/ Chiroptera
/ Coronaviridae
/ coronavirus
/ Coronaviruses
/ COVID-19
/ DNA probes
/ DNA sequencing
/ Genetic factors
/ Genetic Variation
/ genome
/ Genome, Viral - genetics
/ Genomes
/ Genomics
/ Health aspects
/ High-Throughput Nucleotide Sequencing
/ Hybridization
/ Influenza
/ Information management
/ Investigations
/ Laboratories
/ Microbiology and Infectious Disease
/ Middle East respiratory syndrome
/ Nucleotide sequence
/ Pandemics
/ Phylogenetics
/ Phylogeny
/ probe capture
/ Public health
/ RNA polymerase
/ Sequence Analysis, DNA
/ Severe acute respiratory syndrome coronavirus 2
/ Viral genetics
/ Whole genome sequencing
/ Zoonoses
2022
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Targeted genomic sequencing with probe capture for discovery and surveillance of coronaviruses in bats
by
LeBreton, Matthew
, Atibu Losoma, Joseph
, Ngay Lukusa, Ipos
, Sies, Ashton N
, Cameron, Andrew DS
, Joly, Damien O
, Kumakamba, Charles
, Monagin, Corina
, Kuchinski, Kevin S
, Wolfe, Nathan D
, Mbala Kingebeni, Placide
, Muyembe, Francisca
, McIver, David J
, Makuwa, Maria
, Suchan, Danae M
, Lange, Christian E
, Lerminiaux, Nicole A
, Prystajecky, Natalie A
, Russell, Jennifer N
, Ayukekbong, James A
, Saylors, Karen
, N’Kawa, Frida
, Rubin, Edward M
, Loos, Kara D
, Gillis, Amethyst
, Muyembe Tamfum, Jean J
in
Animals
/ bat
/ Chiroptera
/ Coronaviridae
/ coronavirus
/ Coronaviruses
/ COVID-19
/ DNA probes
/ DNA sequencing
/ Genetic factors
/ Genetic Variation
/ genome
/ Genome, Viral - genetics
/ Genomes
/ Genomics
/ Health aspects
/ High-Throughput Nucleotide Sequencing
/ Hybridization
/ Influenza
/ Information management
/ Investigations
/ Laboratories
/ Microbiology and Infectious Disease
/ Middle East respiratory syndrome
/ Nucleotide sequence
/ Pandemics
/ Phylogenetics
/ Phylogeny
/ probe capture
/ Public health
/ RNA polymerase
/ Sequence Analysis, DNA
/ Severe acute respiratory syndrome coronavirus 2
/ Viral genetics
/ Whole genome sequencing
/ Zoonoses
2022
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Targeted genomic sequencing with probe capture for discovery and surveillance of coronaviruses in bats
by
LeBreton, Matthew
, Atibu Losoma, Joseph
, Ngay Lukusa, Ipos
, Sies, Ashton N
, Cameron, Andrew DS
, Joly, Damien O
, Kumakamba, Charles
, Monagin, Corina
, Kuchinski, Kevin S
, Wolfe, Nathan D
, Mbala Kingebeni, Placide
, Muyembe, Francisca
, McIver, David J
, Makuwa, Maria
, Suchan, Danae M
, Lange, Christian E
, Lerminiaux, Nicole A
, Prystajecky, Natalie A
, Russell, Jennifer N
, Ayukekbong, James A
, Saylors, Karen
, N’Kawa, Frida
, Rubin, Edward M
, Loos, Kara D
, Gillis, Amethyst
, Muyembe Tamfum, Jean J
in
Animals
/ bat
/ Chiroptera
/ Coronaviridae
/ coronavirus
/ Coronaviruses
/ COVID-19
/ DNA probes
/ DNA sequencing
/ Genetic factors
/ Genetic Variation
/ genome
/ Genome, Viral - genetics
/ Genomes
/ Genomics
/ Health aspects
/ High-Throughput Nucleotide Sequencing
/ Hybridization
/ Influenza
/ Information management
/ Investigations
/ Laboratories
/ Microbiology and Infectious Disease
/ Middle East respiratory syndrome
/ Nucleotide sequence
/ Pandemics
/ Phylogenetics
/ Phylogeny
/ probe capture
/ Public health
/ RNA polymerase
/ Sequence Analysis, DNA
/ Severe acute respiratory syndrome coronavirus 2
/ Viral genetics
/ Whole genome sequencing
/ Zoonoses
2022
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Targeted genomic sequencing with probe capture for discovery and surveillance of coronaviruses in bats
Journal Article
Targeted genomic sequencing with probe capture for discovery and surveillance of coronaviruses in bats
2022
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Overview
Public health emergencies like SARS, MERS, and COVID-19 have prioritized surveillance of zoonotic coronaviruses, resulting in extensive genomic characterization of coronavirus diversity in bats. Sequencing viral genomes directly from animal specimens remains a laboratory challenge, however, and most bat coronaviruses have been characterized solely by PCR amplification of small regions from the best-conserved gene. This has resulted in limited phylogenetic resolution and left viral genetic factors relevant to threat assessment undescribed. In this study, we evaluated whether a technique called hybridization probe capture can achieve more extensive genome recovery from surveillance specimens. Using a custom panel of 20,000 probes, we captured and sequenced coronavirus genomic material in 21 swab specimens collected from bats in the Democratic Republic of the Congo. For 15 of these specimens, probe capture recovered more genome sequence than had been previously generated with standard amplicon sequencing protocols, providing a median 6.1-fold improvement (ranging up to 69.1-fold). Probe capture data also identified five novel alpha- and betacoronaviruses in these specimens, and their full genomes were recovered with additional deep sequencing. Based on these experiences, we discuss how probe capture could be effectively operationalized alongside other sequencing technologies for high-throughput, genomics-based discovery and surveillance of bat coronaviruses.
Publisher
eLife Science Publications, Ltd,eLife Sciences Publications Ltd,eLife Sciences Publications, Ltd
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