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Oxford Nanopore R10.4 long-read sequencing enables near-perfect bacterial genomes from pure cultures and metagenomes without short-read or reference polishing
View ORCID ProfileMantas Sereika, View ORCID ProfileRasmus Hansen Kirkegaard, View ORCID ProfileSøren Michael Karst, View ORCID ProfileThomas Yssing Michaelsen, View ORCID ProfileEmil Aarre Sørensen, View ORCID ProfileRasmus Dam Wollenberg, View ORCID ProfileMads Albertsen
doi: https://doi.org/10.1101/2021.10.27.466057
Mantas Sereika
aCenter for microbial communities, Aalborg University, Denmark
Rasmus Hansen Kirkegaard
aCenter for microbial communities, Aalborg University, Denmark
bJoint Microbiome Facility, University of Vienna, Austria
Søren Michael Karst
aCenter for microbial communities, Aalborg University, Denmark
Thomas Yssing Michaelsen
aCenter for microbial communities, Aalborg University, Denmark
Emil Aarre Sørensen
aCenter for microbial communities, Aalborg University, Denmark
Rasmus Dam Wollenberg
cDNASense ApS, Denmark
Mads Albertsen
aCenter for microbial communities, Aalborg University, Denmark

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Posted November 10, 2021.
Oxford Nanopore R10.4 long-read sequencing enables near-perfect bacterial genomes from pure cultures and metagenomes without short-read or reference polishing
Mantas Sereika, Rasmus Hansen Kirkegaard, Søren Michael Karst, Thomas Yssing Michaelsen, Emil Aarre Sørensen, Rasmus Dam Wollenberg, Mads Albertsen
bioRxiv 2021.10.27.466057; doi: https://doi.org/10.1101/2021.10.27.466057
Oxford Nanopore R10.4 long-read sequencing enables near-perfect bacterial genomes from pure cultures and metagenomes without short-read or reference polishing
Mantas Sereika, Rasmus Hansen Kirkegaard, Søren Michael Karst, Thomas Yssing Michaelsen, Emil Aarre Sørensen, Rasmus Dam Wollenberg, Mads Albertsen
bioRxiv 2021.10.27.466057; doi: https://doi.org/10.1101/2021.10.27.466057
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