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The Value of Whole-Genome Sequencing for Mitochondrial DNA Population Studies: Strategies and Criteria for Extracting High-Quality Mitogenome Haplotypes

Whole-genome sequencing (WGS) data present a readily available resource for mitochondrial genome (mitogenome) haplotypes that can be utilized for genetics research including population studies. However, the reconstruction of the mitogenome is complicated by nuclear mitochondrial DNA (mtDNA) segments...

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Autores principales: Sturk-Andreaggi, Kimberly, Ring, Joseph D., Ameur, Adam, Gyllensten, Ulf, Bodner, Martin, Parson, Walther, Marshall, Charla, Allen, Marie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8876724/
https://www.ncbi.nlm.nih.gov/pubmed/35216360
http://dx.doi.org/10.3390/ijms23042244
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author Sturk-Andreaggi, Kimberly
Ring, Joseph D.
Ameur, Adam
Gyllensten, Ulf
Bodner, Martin
Parson, Walther
Marshall, Charla
Allen, Marie
author_facet Sturk-Andreaggi, Kimberly
Ring, Joseph D.
Ameur, Adam
Gyllensten, Ulf
Bodner, Martin
Parson, Walther
Marshall, Charla
Allen, Marie
author_sort Sturk-Andreaggi, Kimberly
collection PubMed
description Whole-genome sequencing (WGS) data present a readily available resource for mitochondrial genome (mitogenome) haplotypes that can be utilized for genetics research including population studies. However, the reconstruction of the mitogenome is complicated by nuclear mitochondrial DNA (mtDNA) segments (NUMTs) that co-align with the mtDNA sequences and mimic authentic heteroplasmy. Two minimum variant detection thresholds, 5% and 10%, were assessed for the ability to produce authentic mitogenome haplotypes from a previously generated WGS dataset. Variants associated with NUMTs were detected in the mtDNA alignments for 91 of 917 (~8%) Swedish samples when the 5% frequency threshold was applied. The 413 observed NUMT variants were predominantly detected in two regions (nps 12,612–13,105 and 16,390–16,527), which were consistent with previously documented NUMTs. The number of NUMT variants was reduced by ~97% (400) using a 10% frequency threshold. Furthermore, the 5% frequency data were inconsistent with a platinum-quality mitogenome dataset with respect to observed heteroplasmy. These analyses illustrate that a 10% variant detection threshold may be necessary to ensure the generation of reliable mitogenome haplotypes from WGS data resources.
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spelling pubmed-88767242022-02-26 The Value of Whole-Genome Sequencing for Mitochondrial DNA Population Studies: Strategies and Criteria for Extracting High-Quality Mitogenome Haplotypes Sturk-Andreaggi, Kimberly Ring, Joseph D. Ameur, Adam Gyllensten, Ulf Bodner, Martin Parson, Walther Marshall, Charla Allen, Marie Int J Mol Sci Article Whole-genome sequencing (WGS) data present a readily available resource for mitochondrial genome (mitogenome) haplotypes that can be utilized for genetics research including population studies. However, the reconstruction of the mitogenome is complicated by nuclear mitochondrial DNA (mtDNA) segments (NUMTs) that co-align with the mtDNA sequences and mimic authentic heteroplasmy. Two minimum variant detection thresholds, 5% and 10%, were assessed for the ability to produce authentic mitogenome haplotypes from a previously generated WGS dataset. Variants associated with NUMTs were detected in the mtDNA alignments for 91 of 917 (~8%) Swedish samples when the 5% frequency threshold was applied. The 413 observed NUMT variants were predominantly detected in two regions (nps 12,612–13,105 and 16,390–16,527), which were consistent with previously documented NUMTs. The number of NUMT variants was reduced by ~97% (400) using a 10% frequency threshold. Furthermore, the 5% frequency data were inconsistent with a platinum-quality mitogenome dataset with respect to observed heteroplasmy. These analyses illustrate that a 10% variant detection threshold may be necessary to ensure the generation of reliable mitogenome haplotypes from WGS data resources. MDPI 2022-02-17 /pmc/articles/PMC8876724/ /pubmed/35216360 http://dx.doi.org/10.3390/ijms23042244 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sturk-Andreaggi, Kimberly
Ring, Joseph D.
Ameur, Adam
Gyllensten, Ulf
Bodner, Martin
Parson, Walther
Marshall, Charla
Allen, Marie
The Value of Whole-Genome Sequencing for Mitochondrial DNA Population Studies: Strategies and Criteria for Extracting High-Quality Mitogenome Haplotypes
title The Value of Whole-Genome Sequencing for Mitochondrial DNA Population Studies: Strategies and Criteria for Extracting High-Quality Mitogenome Haplotypes
title_full The Value of Whole-Genome Sequencing for Mitochondrial DNA Population Studies: Strategies and Criteria for Extracting High-Quality Mitogenome Haplotypes
title_fullStr The Value of Whole-Genome Sequencing for Mitochondrial DNA Population Studies: Strategies and Criteria for Extracting High-Quality Mitogenome Haplotypes
title_full_unstemmed The Value of Whole-Genome Sequencing for Mitochondrial DNA Population Studies: Strategies and Criteria for Extracting High-Quality Mitogenome Haplotypes
title_short The Value of Whole-Genome Sequencing for Mitochondrial DNA Population Studies: Strategies and Criteria for Extracting High-Quality Mitogenome Haplotypes
title_sort value of whole-genome sequencing for mitochondrial dna population studies: strategies and criteria for extracting high-quality mitogenome haplotypes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8876724/
https://www.ncbi.nlm.nih.gov/pubmed/35216360
http://dx.doi.org/10.3390/ijms23042244
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