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Numt Parser: Automated identification and removal of nuclear mitochondrial pseudogenes (numts) for accurate mitochondrial genome reconstruction in Panthera

Authors :
Alida de Flamingh
Angel G. Rivera-Colón
Tom P. Gnoske
Julian C. Kerbis Peterhans
Julian Catchen
Ripan S. Malhi
Alfred L. Roca
Source :
Journal of Heredity. 114:120-130
Publication Year :
2022
Publisher :
Oxford University Press (OUP), 2022.

Abstract

Nuclear mitochondrial pseudogenes (numts) may hinder the reconstruction of mtDNA genomes and affect the reliability of mtDNA datasets for phylogenetic and population genetic comparisons. Here, we present the program Numt Parser, which allows for the identification of DNA sequences that likely originate from numt pseudogene DNA. Sequencing reads are classified as originating from either numt or true cytoplasmic mitochondrial (cymt) DNA by direct comparison against cymt and numt reference sequences. Classified reads can then be parsed into cymt or numt datasets. We tested this program using whole genome shotgun-sequenced data from two ancient Cape lions (Panthera leo), because mtDNA is often the marker of choice for ancient DNA studies and the genus Panthera is known to have numt pseudogenes. Numt Parser decreased sequence disagreements that were likely due to numt pseudogene contamination and equalized read coverage across the mitogenome by removing reads that likely originated from numts. We compared the efficacy of Numt Parser to two other bioinformatic approaches that can be used to account for numt contamination. We found that Numt Parser outperformed approaches that rely only on read alignment or Basic Local Alignment Search Tool (BLAST) properties, and was effective at identifying sequences that likely originated from numts while having minimal impacts on the recovery of cymt reads. Numt Parser therefore improves the reconstruction of true mitogenomes, allowing for more accurate and robust biological inferences.

Details

ISSN :
14657333 and 00221503
Volume :
114
Database :
OpenAIRE
Journal :
Journal of Heredity
Accession number :
edsair.doi.dedup.....efde0910e5f2e9c246f260deac65dbd5
Full Text :
https://doi.org/10.1093/jhered/esac065