Mexico Cuba Dominican Republic Puerto Rico Panama Colombia Venezuela Ecuador Peru Bolivia Brazil Paraguay Uruguay Chile Argentina
🌎 NEW: Raíces, your Latin American bloodline, just €15 Pick your country and we model your DNA against its indigenous peoples plus every Old-World source of Latin history, on an interactive map.
Discover Raíces
United States Canada
🦅 NEW: El Gringo, your North American bloodline (USA & Canada), just €15 Your Native American, British, French, German, Scandinavian & African American roots, modelled on an interactive map.
Discover El Gringo
✡️
✡️ NEW: Am Yisrael, your Jewish Diaspora report, just €15 Ancient Israelite & Levantine core + your community's diaspora host admixture — Ashkenazi, Sephardi, Mizrahi & more, on a Jerusalem-centred map.
Discover Am Yisrael
🌍
🌍 NEW: Sankofa, your African Diaspora report, just €15 Regional West, Central & East African modelling plus your community's European and Amerindian layers, for African American, Afro-Caribbean, Afro-Brazilian, Afro-Latino and continental African roots.
Discover Sankofa

Study Information

2026
World

Abstract

Archaic introgression introduced functionally relevant variants into modern humans, yet small-scale insertions remain understudied. Here, we leverage 2519 modern human genomes and four high-coverage archaic hominin genomes to systematically characterize nuclear mitochondrial DNA segments (NUMTs). We uncover 483 polymorphic NUMTs across globally diverse human populations and 10 in archaic genomes. By combining overlap with Neanderthal-derived and Denisovan-derived haplotypes, phylogenetic analyses, insertion time estimates, and haplotype colocalization, we identify five NUMTs introduced into modern humans via archaic hominin introgression. Functional analyses reveal that introgressed NUMTs can modulate gene expression, including allele-specific up-regulation of the immune-related gene RASGRP3, and reshape three-dimensional chromatin structure at loci such as SCD5 and HNRNPD. These findings highlight an underappreciated mechanism by which archaic mitochondrial fragments shape nuclear genome function and evolution. Our study reframes NUMTs not as passive genomic fossils but as dynamic elements influencing modern human diversity and adaptation.

We use cookies to enhance your experience. By continuing to visit this site you agree to our use of cookies. Learn more

🧭 Find your report