Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever Virus

African swine fever virus (ASFV) is a large DNA virus belonging to the Asfarviridae family. Despite its agricultural importance, little is known about the fundamental molecular mechanisms of this pathogen. Short-read sequencing (SRS) can produce a huge amount of high-precision sequencing reads for t...

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Main Authors: Gábor Torma, Dóra Tombácz, Zsolt Csabai, Norbert Moldován, István Mészáros, Zoltán Zádori, Zsolt Boldogkői
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Viruses
Subjects:
Online Access:https://www.mdpi.com/1999-4915/13/4/579
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spelling doaj-2ff5c78ebb2c47f49b795ac0a6c9032e2021-03-30T23:00:23ZengMDPI AGViruses1999-49152021-03-011357957910.3390/v13040579Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever VirusGábor Torma0Dóra Tombácz1Zsolt Csabai2Norbert Moldován3István Mészáros4Zoltán Zádori5Zsolt Boldogkői6Department of Medical Biology, Faculty of Medicine, University of Szeged, Somogyi B. u. 4., 6720 Szeged, HungaryDepartment of Medical Biology, Faculty of Medicine, University of Szeged, Somogyi B. u. 4., 6720 Szeged, HungaryDepartment of Medical Biology, Faculty of Medicine, University of Szeged, Somogyi B. u. 4., 6720 Szeged, HungaryDepartment of Medical Biology, Faculty of Medicine, University of Szeged, Somogyi B. u. 4., 6720 Szeged, HungaryInstitute for Veterinary Medical Research, Centre for Agricultural Research, Hungária krt. 21, H-1143 Budapest, HungaryInstitute for Veterinary Medical Research, Centre for Agricultural Research, Hungária krt. 21, H-1143 Budapest, HungaryDepartment of Medical Biology, Faculty of Medicine, University of Szeged, Somogyi B. u. 4., 6720 Szeged, HungaryAfrican swine fever virus (ASFV) is a large DNA virus belonging to the Asfarviridae family. Despite its agricultural importance, little is known about the fundamental molecular mechanisms of this pathogen. Short-read sequencing (SRS) can produce a huge amount of high-precision sequencing reads for transcriptomic profiling, but it is inefficient for comprehensively annotating transcriptomes. Long-read sequencing (LRS) can overcome some of SRS’s limitations, but it also has drawbacks, such as low-coverage and high error rate. The limitations of the two approaches can be surmounted by the combined use of these techniques. In this study, we used Illumina SRS and Oxford Nanopore Technologies LRS platforms with multiple library preparation methods (amplified and direct cDNA sequencings and native RNA sequencing) for constructing the ASFV transcriptomic atlas. This work identified many novel transcripts and transcript isoforms and annotated the precise termini of previously described RNAs. This study identified a novel species of ASFV transcripts, the replication origin-associated RNAs. Additionally, we discovered several nested genes embedded into larger canonical genes. In contrast to the current view that the ASFV transcripts are monocistronic, we detected a significant extent of polycistronism. A multifaceted meshwork of transcriptional overlaps was also discovered.https://www.mdpi.com/1999-4915/13/4/579African swine fever virusASFVtranscriptomelong-read sequencingdirect RNA sequencing
collection DOAJ
language English
format Article
sources DOAJ
author Gábor Torma
Dóra Tombácz
Zsolt Csabai
Norbert Moldován
István Mészáros
Zoltán Zádori
Zsolt Boldogkői
spellingShingle Gábor Torma
Dóra Tombácz
Zsolt Csabai
Norbert Moldován
István Mészáros
Zoltán Zádori
Zsolt Boldogkői
Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever Virus
Viruses
African swine fever virus
ASFV
transcriptome
long-read sequencing
direct RNA sequencing
author_facet Gábor Torma
Dóra Tombácz
Zsolt Csabai
Norbert Moldován
István Mészáros
Zoltán Zádori
Zsolt Boldogkői
author_sort Gábor Torma
title Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever Virus
title_short Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever Virus
title_full Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever Virus
title_fullStr Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever Virus
title_full_unstemmed Combined Short and Long-Read Sequencing Reveals a Complex Transcriptomic Architecture of African Swine Fever Virus
title_sort combined short and long-read sequencing reveals a complex transcriptomic architecture of african swine fever virus
publisher MDPI AG
series Viruses
issn 1999-4915
publishDate 2021-03-01
description African swine fever virus (ASFV) is a large DNA virus belonging to the Asfarviridae family. Despite its agricultural importance, little is known about the fundamental molecular mechanisms of this pathogen. Short-read sequencing (SRS) can produce a huge amount of high-precision sequencing reads for transcriptomic profiling, but it is inefficient for comprehensively annotating transcriptomes. Long-read sequencing (LRS) can overcome some of SRS’s limitations, but it also has drawbacks, such as low-coverage and high error rate. The limitations of the two approaches can be surmounted by the combined use of these techniques. In this study, we used Illumina SRS and Oxford Nanopore Technologies LRS platforms with multiple library preparation methods (amplified and direct cDNA sequencings and native RNA sequencing) for constructing the ASFV transcriptomic atlas. This work identified many novel transcripts and transcript isoforms and annotated the precise termini of previously described RNAs. This study identified a novel species of ASFV transcripts, the replication origin-associated RNAs. Additionally, we discovered several nested genes embedded into larger canonical genes. In contrast to the current view that the ASFV transcripts are monocistronic, we detected a significant extent of polycistronism. A multifaceted meshwork of transcriptional overlaps was also discovered.
topic African swine fever virus
ASFV
transcriptome
long-read sequencing
direct RNA sequencing
url https://www.mdpi.com/1999-4915/13/4/579
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