Englander Institute for Precision Medicine

coronaSPAdes: from biosynthetic gene clusters to RNA viral assemblies.

TitlecoronaSPAdes: from biosynthetic gene clusters to RNA viral assemblies.
Publication TypeJournal Article
Year of Publication2021
AuthorsMeleshko D, Hajirasouliha I, Korobeynikov A
JournalBioinformatics
Volume38
Issue1
Pagination1-8
Date Published2021 Dec 22
ISSN1367-4811
KeywordsCOVID-19, Genome, Viral, Humans, Metagenome, Pandemics, Software
Abstract

MOTIVATION: The COVID-19 pandemic has ignited a broad scientific interest in viral research in general and coronavirus research in particular. The identification and characterization of viral species in natural reservoirs typically involves de novo assembly. However, existing genome, metagenome and transcriptome assemblers often are not able to assemble many viruses (including coronaviruses) into a single contig. Coverage variation between datasets and within dataset, presence of close strains, splice variants and contamination set a high bar for assemblers to process viral datasets with diverse properties.

RESULTS: We developed coronaSPAdes, a novel assembler for RNA viral species recovery in general and coronaviruses in particular. coronaSPAdes leverages the knowledge about viral genome structures to improve assembly extending ideas initially implemented in biosyntheticSPAdes. We have shown that coronaSPAdes outperforms existing SPAdes modes and other popular short-read metagenome and viral assemblers in the recovery of full-length RNA viral genomes.

AVAILABILITY AND IMPLEMENTATION: coronaSPAdes version used in this article is a part of SPAdes 3.15 release and is freely available at http://cab.spbu.ru/software/spades.

SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online.

DOI10.1093/bioinformatics/btab597
Alternate JournalBioinformatics
PubMed ID34406356
PubMed Central IDPMC10060723
Grant ListR35 GM138152 / GM / NIGMS NIH HHS / United States

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