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Research Publication

The genetic structure of the Turkish population reveals high levels of variation and admixture.

Kars M Ece, ME Başak, A Nazlı AN et al.

34426522 PubMed ID
24 Authors
2021-09-07 Published
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Chapter I

Publication Details

Comprehensive information about this research publication

Authors

KM
Kars M Ece
MB
ME Başak
AN
A Nazlı AN
OO
Onat O Emre
OB
OE Bilguvar
KK
Kaya K
CJ
Choi Jungmin
JI
J Itan
YY
Yuval Y
ÇC
Çağlar Caner
CP
C Palvadeau
RR
Robin R
CJ
Casanova Jean-Laurent
JC
JL Cooper
DN
David N DN
SP
Stenson Peter D
PY
PD Yavuz
AA
Alper A
BH
Buluş Hakan
HG
H Günel
MM
Murat M
FJ
Friedman Jeffrey M
JM Özçelik
TT
Tayfun T
Chapter II

Abstract

Summary of the research findings

The construction of population-based variomes has contributed substantially to our understanding of the genetic basis of human inherited disease. Here, we investigated the genetic structure of Turkey from 3,362 unrelated subjects whose whole exomes (n = 2,589) or whole genomes (n = 773) were sequenced to generate a Turkish (TR) Variome that should serve to facilitate disease gene discovery in Turkey. Consistent with the history of present-day Turkey as a crossroads between Europe and Asia, we found extensive admixture between Balkan, Caucasus, Middle Eastern, and European populations with a closer genetic relationship of the TR population to Europeans than hitherto appreciated. We determined that 50% of TR individuals had high inbreeding coefficients (≥0.0156) with runs of homozygosity longer than 4 Mb being found exclusively in the TR population when compared to 1000 Genomes Project populations. We also found that 28% of exome and 49% of genome variants in the very rare range (allele frequency < 0.005) are unique to the modern TR population. We annotated these variants based on their functional consequences to establish a TR Variome containing alleles of potential medical relevance, a repository of homozygous loss-of-function variants and a TR reference panel for genotype imputation using high-quality haplotypes, to facilitate genome-wide association studies. In addition to providing information on the genetic structure of the modern TR population, these data provide an invaluable resource for future studies to identify variants that are associated with specific phenotypes as well as establishing the phenotypic consequences of mutations in specific genes.

Chapter III

Analysis

Comprehensive review of ancestry and genetic findings

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Summary

Key Findings

Ancestry Insights

Traits Analysis

Historical Context

Scientific Assessment