Abstract The genomic landscape of Stone Age Europe was shaped by multiple migratory waves and population replacements, but different regions do not all show the same patterns. To refine our understanding of the population dynamics before and after the dawn of the Neolithic, we generated and analyzed genomic sequence data from human remains of 56 individuals from the Mesolithic, Neolithic and Eneolithic across Central and Eastern Europe. We found that Mesolithic European populations formed a geographically widespread isolation-by-distance zone ranging from Central Europe to Siberia, which was already established 10 000 years ago. We also found contrasting patterns of population continuity during the Neolithic transition: people around the lo...
Europe’s prehistory oversaw dynamic and complex interactions of diverse societies, hitherto unexplor...
North East Europe harbors a high diversity of cultures and languages, suggesting a complex genetic h...
Ancient DNA genome-wide analyses of Neolithic individuals from central and southern Europe indicate ...
The genomic landscape of Stone Age Europe was shaped by multiple migratory waves and population repl...
The genomic landscape of Stone Age Europe was shaped by multiple migratory waves and population repl...
Summary Several major migrations and population turnover events during the later Stone Age (after c....
In Europe, the Neolithic transition (8,000–4,000 b.c.) from hunting and gathering to agricultural co...
For a long time, anthropological and genetic research on the Neolithic revolution in Europe was mai...
: Modern humans have populated Europe for more than 45,000 years1,2. Our knowledge of the genetic re...
North East Europe harbors a high diversity of cultures and languages, suggesting a complex genetic h...
Genetic studies of Neolithic and Bronze Age skeletons from Europe have provided evidence for strong ...
For a long time, anthropological and genetic research on the Neolithic revolution in Europe was main...
<div><p>North East Europe harbors a high diversity of cultures and languages, suggesting a complex g...
The Neolithic transition was a dynamic time in European prehistory of cultural, social, and technolo...
Europe’s prehistory oversaw dynamic and complex interactions of diverse societies, hitherto unexplor...
North East Europe harbors a high diversity of cultures and languages, suggesting a complex genetic h...
Ancient DNA genome-wide analyses of Neolithic individuals from central and southern Europe indicate ...
The genomic landscape of Stone Age Europe was shaped by multiple migratory waves and population repl...
The genomic landscape of Stone Age Europe was shaped by multiple migratory waves and population repl...
Summary Several major migrations and population turnover events during the later Stone Age (after c....
In Europe, the Neolithic transition (8,000–4,000 b.c.) from hunting and gathering to agricultural co...
For a long time, anthropological and genetic research on the Neolithic revolution in Europe was mai...
: Modern humans have populated Europe for more than 45,000 years1,2. Our knowledge of the genetic re...
North East Europe harbors a high diversity of cultures and languages, suggesting a complex genetic h...
Genetic studies of Neolithic and Bronze Age skeletons from Europe have provided evidence for strong ...
For a long time, anthropological and genetic research on the Neolithic revolution in Europe was main...
<div><p>North East Europe harbors a high diversity of cultures and languages, suggesting a complex g...
The Neolithic transition was a dynamic time in European prehistory of cultural, social, and technolo...
Europe’s prehistory oversaw dynamic and complex interactions of diverse societies, hitherto unexplor...
North East Europe harbors a high diversity of cultures and languages, suggesting a complex genetic h...
Ancient DNA genome-wide analyses of Neolithic individuals from central and southern Europe indicate ...