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Oligonucleotide Capture Sequencing of the SARS-CoV-2 Genome and Subgenomic Fragments from COVID-19 Individuals
harshavardhan doddapaneni; Sara Javornik Cregeen; Richard Sucgang; Qingchang Meng; Xiang Qin; Vasanthi Avadhanula; Hsu Chao; Vipin Menon; Erin Nicholson; David Henke; Felipe-Andres Piedra; Anubama Rajan; Zeineen Momin; Kavya Kottapalli; Kristi L. Hoffman; Fritz J. Sedlazeck; Ginger Metcalf; Pedro A. Piedra; Donna M. Muzny; Joseph F. Petrosino; Richard A. Gibbs.
Afiliação
  • harshavardhan doddapaneni; Baylor College Of Medicine,
  • Sara Javornik Cregeen; Baylor College of Medicine
  • Richard Sucgang; Baylor College of Medicine
  • Qingchang Meng; Baylor College of Medicine
  • Xiang Qin; Baylor College of Medicine
  • Vasanthi Avadhanula; Baylor College of Medicine
  • Hsu Chao; Baylor College of Medicine
  • Vipin Menon; Baylor college of Medicine
  • Erin Nicholson; Baylor College of Medicine
  • David Henke; Baylor College of Medicine
  • Felipe-Andres Piedra; Baylor College of Medicine
  • Anubama Rajan; Baylor College of Medicine
  • Zeineen Momin; Baylor College of Medicine
  • Kavya Kottapalli; Baylor College of Medicine
  • Kristi L. Hoffman; Baylor College of Medicine
  • Fritz J. Sedlazeck; Baylor College of Medicine
  • Ginger Metcalf; Baylor College of Medicine
  • Pedro A. Piedra; Baylor College of Medicine
  • Donna M. Muzny; Baylor College of Medicine
  • Joseph F. Petrosino; Baylor College of Medicine
  • Richard A. Gibbs; Baylor College of Medicine
Preprint em Inglês | bioRxiv | ID: ppbiorxiv-421057
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ABSTRACT
The newly emerged and rapidly spreading SARS-CoV-2 causes coronavirus disease 2019 (COVID-19). To facilitate a deeper understanding of the viral biology we developed a capture sequencing methodology to generate SARS-CoV-2 genomic and transcriptome sequences from infected patients. We utilized an oligonucleotide probe-set representing the full-length genome to obtain both genomic and transcriptome (subgenomic open reading frames [ORFs]) sequences from 45 SARS-CoV-2 clinical samples with varying viral titers. For samples with higher viral loads (cycle threshold value under 33, based on the CDC qPCR assay) complete genomes were generated. Analysis of junction reads revealed regions of differential transcriptional activity and provided evidence of expression of ORF10. Heterogeneous allelic frequencies along the 20kb ORF1ab gene suggested the presence of a defective interfering viral RNA species subpopulation in one sample. The associated workflow is straightforward, and hybridization-based capture offers an effective and scalable approach for sequencing SARS-CoV-2 from patient samples.
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Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Tipo de estudo: Estudo prognóstico Idioma: Inglês Ano de publicação: 2020 Tipo de documento: Preprint
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Tipo de estudo: Estudo prognóstico Idioma: Inglês Ano de publicação: 2020 Tipo de documento: Preprint
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