Cargando…

CSYseq: The first Y-chromosome sequencing tool typing a large number of Y-SNPs and Y-STRs to unravel worldwide human population genetics

Male-specific Y-chromosome (chrY) polymorphisms are interesting components of the DNA for population genetics. While single nucleotide polymorphisms (Y-SNPs) indicate distant evolutionary ancestry, short tandem repeats (Y-STRs) are able to identify close familial kinships. Detailed chrY analysis pro...

Descripción completa

Detalles Bibliográficos
Autores principales: Claerhout, Sofie, Verstraete, Paulien, Warnez, Liesbeth, Vanpaemel, Simon, Larmuseau, Maarten, Decorte, Ronny
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8423258/
https://www.ncbi.nlm.nih.gov/pubmed/34491993
http://dx.doi.org/10.1371/journal.pgen.1009758
_version_ 1783749429193342976
author Claerhout, Sofie
Verstraete, Paulien
Warnez, Liesbeth
Vanpaemel, Simon
Larmuseau, Maarten
Decorte, Ronny
author_facet Claerhout, Sofie
Verstraete, Paulien
Warnez, Liesbeth
Vanpaemel, Simon
Larmuseau, Maarten
Decorte, Ronny
author_sort Claerhout, Sofie
collection PubMed
description Male-specific Y-chromosome (chrY) polymorphisms are interesting components of the DNA for population genetics. While single nucleotide polymorphisms (Y-SNPs) indicate distant evolutionary ancestry, short tandem repeats (Y-STRs) are able to identify close familial kinships. Detailed chrY analysis provides thus both biogeographical background information as paternal lineage identification. The rapid advancement of high-throughput massive parallel sequencing (MPS) technology in the past decade has revolutionized genetic research. Using MPS, single-base information of both Y-SNPs as Y-STRs can be analyzed in a single assay typing multiple samples at once. In this study, we present the first extensive chrY-specific targeted resequencing panel, the ‘CSYseq’, which simultaneously identifies slow mutating Y-SNPs as evolution markers and rapid mutating Y-STRs as patrilineage markers. The panel was validated by paired-end sequencing of 130 males, distributed over 65 deep-rooted pedigrees covering 1,279 generations. The CSYseq successfully targets 15,611 Y-SNPs including 9,014 phylogenetic informative Y-SNPs to identify 1,443 human evolutionary Y-subhaplogroup lineages worldwide. In addition, the CSYseq properly targets 202 Y-STRs, including 81 slow, 68 moderate, 27 fast and 26 rapid mutating Y-STRs to individualize close paternal relatives. The targeted chrY markers cover a high average number of reads (Y-SNP = 717, Y-STR = 150), easy interpretation, powerful discrimination capacity and chrY specificity. The CSYseq is interesting for research on different time scales: to identify evolutionary ancestry, to find distant family and to discriminate closely related males. Therefore, this panel serves as a unique tool valuable for a wide range of genetic-genealogical applications in interdisciplinary research within evolutionary, population, molecular, medical and forensic genetics.
format Online
Article
Text
id pubmed-8423258
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-84232582021-09-08 CSYseq: The first Y-chromosome sequencing tool typing a large number of Y-SNPs and Y-STRs to unravel worldwide human population genetics Claerhout, Sofie Verstraete, Paulien Warnez, Liesbeth Vanpaemel, Simon Larmuseau, Maarten Decorte, Ronny PLoS Genet Research Article Male-specific Y-chromosome (chrY) polymorphisms are interesting components of the DNA for population genetics. While single nucleotide polymorphisms (Y-SNPs) indicate distant evolutionary ancestry, short tandem repeats (Y-STRs) are able to identify close familial kinships. Detailed chrY analysis provides thus both biogeographical background information as paternal lineage identification. The rapid advancement of high-throughput massive parallel sequencing (MPS) technology in the past decade has revolutionized genetic research. Using MPS, single-base information of both Y-SNPs as Y-STRs can be analyzed in a single assay typing multiple samples at once. In this study, we present the first extensive chrY-specific targeted resequencing panel, the ‘CSYseq’, which simultaneously identifies slow mutating Y-SNPs as evolution markers and rapid mutating Y-STRs as patrilineage markers. The panel was validated by paired-end sequencing of 130 males, distributed over 65 deep-rooted pedigrees covering 1,279 generations. The CSYseq successfully targets 15,611 Y-SNPs including 9,014 phylogenetic informative Y-SNPs to identify 1,443 human evolutionary Y-subhaplogroup lineages worldwide. In addition, the CSYseq properly targets 202 Y-STRs, including 81 slow, 68 moderate, 27 fast and 26 rapid mutating Y-STRs to individualize close paternal relatives. The targeted chrY markers cover a high average number of reads (Y-SNP = 717, Y-STR = 150), easy interpretation, powerful discrimination capacity and chrY specificity. The CSYseq is interesting for research on different time scales: to identify evolutionary ancestry, to find distant family and to discriminate closely related males. Therefore, this panel serves as a unique tool valuable for a wide range of genetic-genealogical applications in interdisciplinary research within evolutionary, population, molecular, medical and forensic genetics. Public Library of Science 2021-09-07 /pmc/articles/PMC8423258/ /pubmed/34491993 http://dx.doi.org/10.1371/journal.pgen.1009758 Text en © 2021 Claerhout et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Claerhout, Sofie
Verstraete, Paulien
Warnez, Liesbeth
Vanpaemel, Simon
Larmuseau, Maarten
Decorte, Ronny
CSYseq: The first Y-chromosome sequencing tool typing a large number of Y-SNPs and Y-STRs to unravel worldwide human population genetics
title CSYseq: The first Y-chromosome sequencing tool typing a large number of Y-SNPs and Y-STRs to unravel worldwide human population genetics
title_full CSYseq: The first Y-chromosome sequencing tool typing a large number of Y-SNPs and Y-STRs to unravel worldwide human population genetics
title_fullStr CSYseq: The first Y-chromosome sequencing tool typing a large number of Y-SNPs and Y-STRs to unravel worldwide human population genetics
title_full_unstemmed CSYseq: The first Y-chromosome sequencing tool typing a large number of Y-SNPs and Y-STRs to unravel worldwide human population genetics
title_short CSYseq: The first Y-chromosome sequencing tool typing a large number of Y-SNPs and Y-STRs to unravel worldwide human population genetics
title_sort csyseq: the first y-chromosome sequencing tool typing a large number of y-snps and y-strs to unravel worldwide human population genetics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8423258/
https://www.ncbi.nlm.nih.gov/pubmed/34491993
http://dx.doi.org/10.1371/journal.pgen.1009758
work_keys_str_mv AT claerhoutsofie csyseqthefirstychromosomesequencingtooltypingalargenumberofysnpsandystrstounravelworldwidehumanpopulationgenetics
AT verstraetepaulien csyseqthefirstychromosomesequencingtooltypingalargenumberofysnpsandystrstounravelworldwidehumanpopulationgenetics
AT warnezliesbeth csyseqthefirstychromosomesequencingtooltypingalargenumberofysnpsandystrstounravelworldwidehumanpopulationgenetics
AT vanpaemelsimon csyseqthefirstychromosomesequencingtooltypingalargenumberofysnpsandystrstounravelworldwidehumanpopulationgenetics
AT larmuseaumaarten csyseqthefirstychromosomesequencingtooltypingalargenumberofysnpsandystrstounravelworldwidehumanpopulationgenetics
AT decorteronny csyseqthefirstychromosomesequencingtooltypingalargenumberofysnpsandystrstounravelworldwidehumanpopulationgenetics