Search bioRxiv⌕ Search

Biology subjects

Arsuaga, J. L.

Publications and source records attributed to Arsuaga, J. L..

3 recordsLinked to original sources

Seven Millennia of Human Exploitation drove genomic Changes in Iberian Sheep

As one of the first domestic livestock species, sheep have played a fundamental role in human societies since the Neolithic. However, their demographic history remains poorly understood. To shed light on the demographic dynamics of sheep at the western edge of the Mediterranean, we sequenced 22 ancient sheep genomes from Iberia (dating from 7, 270 to 1, 615 calBP, sequenced up to 8.74 x coverage) along with one modern European mouflon from Corsica. We provide evidence for an initial maritime introduction into Iberia, and show that European mouflons are descendants of feralized Neolithic sheep. Further-more, we identify a secondary influx of "Eastern" genetic ancestry coinciding with the arrival of human Steppe ancestry in Iberia - an event that likely aligns with the spread of woolly sheep across Europe. A third population expansion is observed during the Roman period, a time when historical sources reference the trade of fine-wool sheep. This Roman-era expansion appears to have significantly influenced the genetic makeup of modern European sheep, contributing to the development of popular modern-day breeds such as Merino. In addition to these major events, we see indications of additional, minor episodes of prehistoric gene flow into the Iberian population, suggesting that western European sheep experienced more dynamic demographic changes than other domestic animals, humans, or sheep populations elsewhere. Together, these results highlight the dynamic history of Iberian sheep populations and demonstrate how human cultural and demographic shifts have left their hoofprints in the sheep gene pool, marking them as a valuable proxy for understanding the human past.

evolutionary biology↗

Palaeoproteomic insights into the deep roots of the cave bear lineage in Europe

Palaeoproteomics has emerged as a powerful tool for reconstructing the evolutionary history of extinct species, particularly when ancient DNA is poorly preserved or beyond recovery. Here, we present the first large-scale enamel proteomic study focused on the cave bear, spanning specimens from the Early to Late Pleistocene. A primary objective was to determine whether the ursid population from level TD4 of Gran Dolina (Sierra de Atapuerca, Spain) belongs to the cave or the brown bear lineage, a long-standing taxonomic debate. We analyzed specimens from the Atapuerca sites, alongside comparative material from other southwestern European localities. Using LC-MS/MS and an acid demineralization protocol without enzymatic digestion, we successfully recovered enamel proteomes from all fossil samples, including the oldest specimens. Protein profiles were obtained for each extinct ursid, enabling the identification of taxonomically informative peptides across multiple individuals per taxon. Notably, two novel single amino acid polymorphisms (SAPs), found in ameloblastin (AMBN) and alpha-1 antitrypsin (SERPINA1), were restricted to Middle and Late Pleistocene cave bears and may represent new phylogenetic markers for this clade. This study provides the first molecular phylogenetic placement of Ursus dolinensis, supporting its basal position within the speloid lineage, consistent with its proposed ancestral status. Our results highlight the strong phylogenetic signal preserved in dental enamel and the exceptional biomolecular preservation at Atapuerca, providing a robust framework for reconstructing the evolutionary history of Ursidae. Moreover, the consistent recovery of systemic proteins, such as serpins, underscores the potential of enamel proteomes to capture not only evolutionary relationships but also physiological signals relevant to extinct ursids. SignificanceThe phylogenetic position of Ursus dolinensis within the Ursidae family has been a subject of long-standing debate. While some authors place it within the speloid lineage, others suggest affinities with arctoid bears. Here, we analyze the bear population from level TD4 of Gran Dolina (Sierra de Atapuerca, Spain) using palaeoproteomic methods for the first time. Molecular evidence supports the inclusion of U. dolinensis within the speloid lineage, in a basal position, supporting its potential ancestral position. These findings extend the evolutionary depth of the speloid clade in Europe and demonstrate the power of enamel palaeoproteomics to resolve deep-time relationships beyond the limits of ancient DNA, revealing the deep evolutionary roots of the lineage.

evolutionary biology↗

The Genomic Legacy of Human Management and sex-biased Aurochs hybridization in Iberian Cattle

Cattle have been a valuable economic resource and cultural icon since prehistory. From the initial expansion of domestic cattle into Europe during the Neolithic period, taurine cattle (Bos taurus) and their wild ancestor, the aurochs (B. primigenius), had overlapping ranges, leading to ample opportunities for mating (whether intended by farmers or not). We performed a bioarchaeological analysis of 24 Bos remains from Iberia dating from the Mesolithic to the Roman period. The archaeogenomic dataset allows us to investigate the extent of domestic-wild hybridization over time, providing insight into the species behavior and human hunting and management practices by aligning changes with cultural and genomic transitions in the archaeological record. Our results show frequent hybridization during the Neolithic and Chalcolithic, likely reflecting a mix of hunting and herding or relatively unmanaged herds, with mostly male aurochs and female domestic cattle involved in hybridization. This is supported by isotopic evidence consistent with ecological niche sharing, with only a few domestic cattle possibly being managed. The proportion of aurochs ancestry remains relatively constant from about 4000 years ago, probably due to herd management and selection against first generation hybrids, coinciding with other cultural transitions. The constant level of wild ancestry ({bsim}20%) continues into modern western European breeds including the Spanish Lidia breed which is bred for its aggressiveness and fighting ability, but does not display elevated levels of aurochs ancestry. This study takes a genomic glance at the impact of human actions and wild introgression in the establishment of cattle as one of the most important domestic species today.

genomics↗