Scalable neighbour search and alignment with uvaia

Author:

de Oliveira Martins Leonardo1,Mather Alison E.12,Page Andrew J.1

Affiliation:

1. Quadram Institute Bioscience, Norwich, United Kingdom

2. University of East Anglia, Norwich, United Kingdom

Abstract

Despite millions of SARS-CoV-2 genomes being sequenced and shared globally, manipulating such data sets is still challenging, especially selecting sequences for focused phylogenetic analysis. We present a novel method, uvaia, which is based on partial and exact sequence similarity for quickly extracting database sequences similar to query sequences of interest. Many SARS-CoV-2 phylogenetic analyses rely on very low numbers of ambiguous sites as a measure of quality since ambiguous sites do not contribute to single nucleotide polymorphism (SNP) differences. Uvaia overcomes this limitation by using measures of sequence similarity which consider partially ambiguous sites, allowing for more ambiguous sequences to be included in the analysis if needed. Such fine-grained definition of similarity allows not only for better phylogenetic analyses, but could also lead to improved classification and biogeographical inferences. Uvaia works natively with compressed files, can use multiple cores and efficiently utilises memory, being able to analyse large data sets on a standard desktop.

Funder

Biological Sciences Research Council (BBSRC) Institute Strategic Programme Microbes in the Food Chain

Theme 1, Epidemiology and Evolution of Pathogens in the Food Chain

Quadram Institute Bioscience BBSRC funded Core Capability Grant

Publisher

PeerJ

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