ArticleFrontiers in genetics2021
Admixture Has Shaped Romani Genetic Diversity in Clinically Relevant Variants.
Article in Frontiers in genetics, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Demographic insights into paternal genetic diversity and regional substructure in the Spanish Roma.BMC genomics · 2025Article
- Health Care and Access to Quality Social-Health Services of the Roma and Sinti: A Scoping Review.International journal of environmental research and public health · 2025Article
- The genetic footprint of the European Roma diaspora: evidence from the Balkans to the Iberian Peninsula.Human genetics · 2025Article
- Population history modulates the fitness effects of Copy Number Variation in the Roma.Human genetics · 2023Article
- Genetic Determinants of Leisure-Time Physical Activity in the Hungarian General and Roma Populations.International journal of molecular sciences · 2023Article
- Review
- From Croatian Roma to 1000 Genomes: The Story of theJournal of personalized medicine · 2022Article
- Low prevalence of spectacle use in the Hungarian Roma population indicates unmet health needs.Scientific reports · 2022Article
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5 authors.
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Abstract
Genetic patterns of inter-population variation are a result of different demographic and adaptive histories, which gradually shape the frequency distribution of the variants. However, the study of clinically relevant mutations has a Eurocentric bias. The Romani, the largest transnational minority ethnic group in Europe, originated in South Asia and received extensive gene flow from West Eurasia. Most medical genetic studies have only explored founder mutations related to Mendelian disorders in this population. Here we analyze exome sequences and genome-wide array data of 89 healthy Spanish Roma individuals to study complex traits and disease. We apply a different framework and focus on variants with both increased and decreased allele frequencies, taking into account their local ancestry. We report several OMIM traits enriched for genes with deleterious variants showing increased frequencies in Roma or in non-Roma (e.g., obesity is enriched in Roma, with an associated variant linked to South Asian ancestry; while non-insulin dependent diabetes is enriched in non-Roma Europeans). In addition, previously reported pathogenic variants also show differences among populations, where some variants segregating at low frequency in non-Roma are virtually absent in the Roma. Lastly, we describe frequency changes in drug-response variation, where many of the variants increased in Roma are clinically associated with metabolic and cardiovascular-related drugs. These results suggest that clinically relevant variation in Roma cannot only be characterized in terms of founder mutations. Instead, we observe frequency differences compared to non-Roma: some variants are absent, while other have drifted to higher frequencies. As a result of the admixture events, these clinically damaging variants can be traced back to both European and South Asian-related ancestries. This can be attributed to a different prevalence of some genetic disorders or to the fact that genetic susceptibility variants are mostly studied in populations of European descent, and can differ in individuals with different ancestries.
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