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1.
Mol Biol Evol ; 39(2)2022 02 03.
Article in English | MEDLINE | ID: mdl-35038748

ABSTRACT

The geographical location and shape of Apulia, a narrow land stretching out in the sea at the South of Italy, made this region a Mediterranean crossroads connecting Western Europe and the Balkans. Such movements culminated at the beginning of the Iron Age with the Iapygian civilization which consisted of three cultures: Peucetians, Messapians, and Daunians. Among them, the Daunians left a peculiar cultural heritage, with one-of-a-kind stelae and pottery, but, despite the extensive archaeological literature, their origin has been lost to time. In order to shed light on this and to provide a genetic picture of Iron Age Southern Italy, we collected and sequenced human remains from three archaeological sites geographically located in Northern Apulia (the area historically inhabited by Daunians) and radiocarbon dated between 1157 and 275 calBCE. We find that Iron Age Apulian samples are still distant from the genetic variability of modern-day Apulians, they show a degree of genetic heterogeneity comparable with the cosmopolitan Republican and Imperial Roman civilization, even though a few kilometers and centuries separate them, and they are well inserted into the Iron Age Pan-Mediterranean genetic landscape. Our study provides for the first time a window on the genetic make-up of pre-Roman Apulia, whose increasing connectivity within the Mediterranean landscape, would have contributed to laying the foundation for modern genetic variability. In this light, the genetic profile of Daunians may be compatible with an at least partial autochthonous origin, with plausible contributions from the Balkan peninsula.


Subject(s)
DNA, Mitochondrial , DNA, Mitochondrial/genetics , Europe , Italy
2.
Am J Phys Anthropol ; 166(4): 930-933, 2018 08.
Article in English | MEDLINE | ID: mdl-29607483

ABSTRACT

OBJECTIVE: Documented and undocumented skeletal collections offer unique windows into life in the past and are integral for research in biological anthropology. The objective of this article is to describe the documented and undocumented collections curated by the Museum of Anthropology at Padua University (Italy) to demonstrate their potential for research and encourage researchers to consider them for future projects. MATERIALS: The collection was established by Prof. Enrico Tedeschi at the beginning of 20th century, and dates to the late 19th and early 20th century. The collection consists primarily of individuals excavated from cemeteries, ossarios, or unclaimed individuals donated by hospitals or other institutions. RESULTS: Both documented and undocumented human skeletal remains are included in the collection, totalling 1,580 individuals. Associated documented information including age at death, date of death, sex, occupation, and cause of death is available in different combinations for 293 individuals of varying completeness (188 crania only, 93 crania and postcranial, 12 postcranial only). Origin and chronological period are known for the remaining 1,287 individuals. DISCUSSION: Overall, this little studied collection could be particularly useful for researchers interested in craniometrics, dentition, and 19th and 20th century health and demography in Italy. The documented skeletons will be especially useful for forensic anthropological research.


Subject(s)
Body Remains , Forensic Anthropology , Museums , Paleopathology , Adolescent , Adult , Aged , Child , Child, Preschool , Female , Humans , Infant , Infant, Newborn , Italy , Male , Middle Aged , Universities , Young Adult
3.
Sci Rep ; 14(1): 1028, 2024 01 10.
Article in English | MEDLINE | ID: mdl-38200208

ABSTRACT

Following the development of modern genome sequencing technologies, the investigation of museum osteological finds is increasingly informative and popular. Viable protocols to help preserve these collections from exceedingly invasive analyses, would allow greater access to the specimens for scientific research. The main aim of this work is to survey skeletal tissues, specifically petrous bones and roots of teeth, using infrared spectroscopy as a prescreening method to assess the bone quality for molecular analyses. This approach could overcome the major problem of identifying useful genetic material in archaeological bone collections without resorting to demanding, time consuming and expensive laboratory studies. A minimally invasive sampling of archaeological bones was developed and bone structural and compositional changes were examined, linking isotopic and genetic data to infrared spectra. The predictive model based on Infrared parameters is effective in determining the occurrence of ancient DNA (aDNA); however, the quality/quantity of aDNA cannot be determined because of the influence of environmental and local factors experienced by the examined bones during the burial period.


Subject(s)
Archaeology , Burial , Humans , Spectrophotometry, Infrared , Chromosome Mapping , DNA, Ancient , Isotopes
4.
Curr Biol ; 31(12): 2576-2591.e12, 2021 06 21.
Article in English | MEDLINE | ID: mdl-33974848

ABSTRACT

Across Europe, the genetics of the Chalcolithic/Bronze Age transition is increasingly characterized in terms of an influx of Steppe-related ancestry. The effect of this major shift on the genetic structure of populations in the Italian Peninsula remains underexplored. Here, genome-wide shotgun data for 22 individuals from commingled cave and single burials in Northeastern and Central Italy dated between 3200 and 1500 BCE provide the first genomic characterization of Bronze Age individuals (n = 8; 0.001-1.2× coverage) from the central Italian Peninsula, filling a gap in the literature between 1950 and 1500 BCE. Our study confirms a diversity of ancestry components during the Chalcolithic and the arrival of Steppe-related ancestry in the central Italian Peninsula as early as 1600 BCE, with this ancestry component increasing through time. We detect close patrilineal kinship in the burial patterns of Chalcolithic commingled cave burials and a shift away from this in the Bronze Age (2200-900 BCE) along with lowered runs of homozygosity, which may reflect larger changes in population structure. Finally, we find no evidence that the arrival of Steppe-related ancestry in Central Italy directly led to changes in frequency of 115 phenotypes present in the dataset, rather that the post-Roman Imperial period had a stronger influence, particularly on the frequency of variants associated with protection against Hansen's disease (leprosy). Our study provides a closer look at local dynamics of demography and phenotypic shifts as they occurred as part of a broader phenomenon of widespread admixture during the Chalcolithic/Bronze Age transition.


Subject(s)
DNA, Ancient , Genome, Human/genetics , Human Migration/history , Datasets as Topic , Genetics, Population , Genomics , History, Ancient , Humans , Italy , Leprosy/genetics , Phenotype
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