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Y-chromosome target enrichment reveals rapid expansion of haplogroup R1b-DF27 in Iberia during the Bronze Age transition.

García-Fernández Carla, C Lizano, Esther E et al.

36456614 PubMed ID
12 Authors
2022-12-01 Published
1,540 Views
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Chapter I

Publication Details

Comprehensive information about this research publication

Authors

GC
García-Fernández Carla
CL
C Lizano
EE
Esther E
TM
Telford Marco
MO
M Olalde
ÍÍ
Íñigo Í
DC
de Cid Rafael
RL
R Larmuseau
MH
Maarten H D MHD
MD
M de Pancorbo Marian
MC
M Calafell
FF
Francesc F
Chapter II

Abstract

Summary of the research findings

The Y chromosome can yield a unique perspective into the study of human demographic history. However, due to the repetitive nature of part of its sequence, only a small set of regions are suitable for variant calling and discovery from short-read sequencing data. These regions combined represent 8.9 Mbp or 0.14% of a diploid human genome. Consequently, investing in whole-genome sequencing to resolve Y-chromosome questions is poorly efficient. Here we use, as an alternative, target enrichment technology to greatly increase sequencing effectiveness, validating and applying the technique to 181 males, for 162 of whom we obtained a positive result. Additionally, 75 samples sequenced for the whole genome were also included, for a total sample size of 237. These samples were chosen for their Y chromosome haplogroup: R1b-DF27. In the context of European populations, and particularly in Iberia, this haplogroup stands out for its high frequency and its demographic history. Current evidence indicates that the diffusion of this haplogroup is related to the population movements that mark the cultural Bronze Age transition, making it remarkably interesting for population geneticists. The results of this study show the effects of the rapid radiation of the haplogroup in Spain, as even with the higher discriminating power of whole sequences, most haplotypes still fall within the R1b-DF27* paragroup rather than in the main derived branches. However, we were able to refine the ISOGG 2019-2020 phylogeny, and its two main subbranches, namely L176.2 and Z272, which present geographical differentiation between the Atlantic and Mediterranean coasts of Iberia.

Chapter III

AI-Generated Summary

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