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Scalable assembly of Ascaris mitogenomes from whole-genome data reveals a novel clade.

Created on 12 Sep 2026

Authors

Lauren Woolfe, Kezia Kozel, Poom Adisakwattana, Allen Jethro Alonte, Kennesa Klariz Llanes, Alexandra Juhász, J Russell Stothard, Christina Strube, Marie-Kristin Raulf, Scott P Lawton, Toby Landeryou, Vachel Gay Paller, Umer Chaudhry, Arnoud H M van Vliet, Martha Betson

Published in

Scientific reports. Volume 16. Issue 1. Sep 11, 2026. Epub Sep 11, 2026.

Abstract

The genus Ascaris is an important group of giant parasitic roundworms, infecting over 700 million people globally and causing substantial economic losses in domestic pigs. Whilst species of Ascaris are morphologically indistinguishable, analysis of mitochondrial loci has revealed three clades (A, B, C) broadly associated with host species and geographic distribution. The diversity within these lineages may expand with the addition of further genomic data. Here, we present a bioinformatic framework for de novo assembly of complete mitochondrial genomes (mitogenomes) from low-coverage whole-genome data through host-read depletion or mtDNA read enrichment, followed by mtDNA-specific assembly. Our approach yielded 149 high-quality Ascaris mitogenome assemblies, enabling the study of population-level diversity, including the identification of a novel clade (Clade D, designated here) associated with human samples from Ethiopia. Our analysis further revealed Clade C to comprise of pig-derived samples from Europe based on characterisation of worms isolated in Germany. The methods described here provide a scalable framework for mitogenome reconstruction with insights into roundworm population-genomic and phylogenetic studies.

PMID:
42728251
Bibliographic data and abstract were imported from PubMed on 12 Sep 2026.

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