Ancient DNA research in the past decade has revealed that European population structure changed dramatically in the prehistoric period (14,000-3,000 years before present, YBP), reflecting the widespread introduction of Neolithic farmer and Bronze Age Steppe ancestries. However, little is known about how population structure changed from the historical period onward (3,000 YBP - present). To address this, we collected whole genomes from 204 individuals from Europe and the Mediterranean, many of which are the first historical period genomes from their region (e.g. Armenia and France). We found that most regions show remarkable inter-individual heterogeneity. At least 7% of historical individuals carry ancestry uncommon in the region where they were sampled, some indicating cross-Mediterranean contacts. Despite this high level of mobility, overall population structure across western Eurasia is relatively stable through the historical period up to the present, mirroring geography. We show that, under standard population genetics models with local panmixia, the observed level of dispersal would lead to a collapse of population structure. Persistent population structure thus suggests a lower effective migration rate than indicated by the observed dispersal. We hypothesize that this phenomenon can be explained by extensive transient dispersal arising from drastically improved transportation networks and the Roman Empire’s mobilization of people for trade, labor, and military. This work highlights the utility of ancient DNA in elucidating finer scale human population dynamics in recent history.
Human activities have affected the surrounding natural ecosystems, including belowground microorganisms, for millennia. Their short- and medium-term effects on the diversity and the composition of soil microbial communities are well-documented, but their lasting effects remain unknown. When unoccupied for centuries, archaeological sites are appropriate for studying the long-term effects of past human occupancy on natural ecosystems, including the soil compartment. In this work, the soil chemical and bacterial compositions were compared between the Roman fort of Hegra (Saudi Arabia) abandoned for 1500 years, and a preserved area located at 120 m of the southern wall of the Roman fort where no human occupancy was detected. We show that the four centuries of human occupancy have deeply and lastingly modified both the soil chemical and bacterial compositions inside the Roman fort. We also highlight different bacterial putative functions between the two areas, notably associated with human occupancy. Finally, this work shows that the use of soils from archaeological sites causes little disruption and can bring relevant information, at a large scale, during the initial surveys of archaeological sites.
L'article se propose de conjuguer deux approches et deux échelles de réflexion. La première, historique et menée à l'échelle d'un vaste espace italo-adriatique, s'efforce de réévaluer la chronologie des rapports entre Rome et la Dalmatie à partir de la deuxième moitié du IVe siècle et le contexte politique qui les voit naître. Se révèlent ainsi l'intérêt politique précoce de Rome pour la côte orientale de l'Adriatique, ainsi que les diverses formes de la présence de Romains et d'Italiens dans ces régions. La seconde, archéologique et centrée sur l'île de Brač, analyse à travers l'exemple d'une villa oléicole et viticole la chronologie et les modalités de l'exploitation des territoires conquis par Rome, révélant ainsi la possible fragilité des premières traces de la présence romaine. L'enquête invite à repenser la succession chronologique trop rigide entre la conquête militaire des territoires et leur organisation politico-administrative d'un côté et, de l'autre, l'apparition d'activités économiques multiformes développées par des individus venus de Rome et d'Italie.
Fouille archéologique de Bunje (Novo Selo,