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1.
Elife ; 132024 Jan 30.
Artículo en Inglés | MEDLINE | ID: mdl-38288729

RESUMEN

Ancient DNA research in the past decade has revealed that European population structure changed dramatically in the prehistoric period (14,000-3000 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 (3000 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.


Asunto(s)
ADN Antiguo , Genoma Humano , Humanos , Europa (Continente) , Francia , Genética de Población , Dinámica Poblacional , Migración Humana
2.
Nat Ecol Evol ; 7(9): 1515-1524, 2023 09.
Artículo en Inglés | MEDLINE | ID: mdl-37592021

RESUMEN

The Iron Age was a dynamic period in central Mediterranean history, with the expansion of Greek and Phoenician colonies and the growth of Carthage into the dominant maritime power of the Mediterranean. These events were facilitated by the ease of long-distance travel following major advances in seafaring. We know from the archaeological record that trade goods and materials were moving across great distances in unprecedented quantities, but it is unclear how these patterns correlate with human mobility. Here, to investigate population mobility and interactions directly, we sequenced the genomes of 30 ancient individuals from coastal cities around the central Mediterranean, in Tunisia, Sardinia and central Italy. We observe a meaningful contribution of autochthonous populations, as well as highly heterogeneous ancestry including many individuals with non-local ancestries from other parts of the Mediterranean region. These results highlight both the role of local populations and the extreme interconnectedness of populations in the Iron Age Mediterranean. By studying these trans-Mediterranean neighbours together, we explore the complex interplay between local continuity and mobility that shaped the Iron Age societies of the central Mediterranean.


Asunto(s)
ADN Antiguo , Migración Humana , Región Mediterránea , Arqueología , Migración Humana/historia , Humanos , Análisis de Componente Principal , Genética Humana , ADN Antiguo/análisis , Análisis de Secuencia de ADN , Entierro , Antropología , Historia Antigua
3.
Proc Natl Acad Sci U S A ; 119(41): e2205272119, 2022 10 11.
Artículo en Inglés | MEDLINE | ID: mdl-36191217

RESUMEN

Trade and colonization caused an unprecedented increase in Mediterranean human mobility in the first millennium BCE. Often seen as a dividing force, warfare is in fact another catalyst of culture contact. We provide insight into the demographic dynamics of ancient warfare by reporting genome-wide data from fifth-century soldiers who fought for the army of the Greek Sicilian colony of Himera, along with representatives of the civilian population, nearby indigenous settlements, and 96 present-day individuals from Italy and Greece. Unlike the rest of the sample, many soldiers had ancestral origins in northern Europe, the Steppe, and the Caucasus. Integrating genetic, archaeological, isotopic, and historical data, these results illustrate the significant role mercenaries played in ancient Greek armies and highlight how participation in war contributed to continental-scale human mobility in the Classical world.


Asunto(s)
Arqueología , Personal Militar , Arqueología/métodos , Europa (Continente) , Grecia , Historia Antigua , Humanos , Guerra
4.
Int J Paleopathol ; 39: 14-19, 2022 12.
Artículo en Inglés | MEDLINE | ID: mdl-36029690

RESUMEN

OBJECTIVE: To report a case of bilateral humerus varus from a late antiquity archeological context in central Italy. MATERIALS: The individual is a 25-40-year-old female, dated to the 4th cent. CE, from the catacomb of Santa Mustiola in Chiusi, Italy. METHODS: The bones were examined macroscopically and through CT scan imaging. RESULTS: Both humeri show evident alterations in shape, including elongated, flattened and distally dislocated humeral heads, shortened anatomical necks, angulated upper diaphyseal shafts, and reduced overall lengths. The scapulae appear to have been mildly affected by this condition and show some bone loss and slight retroversion of the glenoid cavity. CONCLUSIONS: Observations are consistent with a diagnosis of humerus varus deformity likely caused by a traumatic event early in the individual's life. SIGNIFICANCE: Varus deformity of the proximal humerus is seldom reported in bioarcheological literature. The case presented provides insight into the etiology and effects of this condition and may serve as comparison for future studies. LIMITATIONS: Even though the absence of other skeletal deformities renders a systemic condition improbable, the traumatic etiology of the condition cannot be confirmed with certainty. SUGGESTIONS FOR FURTHER RESEARCH: Future publications of new cases may give a broader perspective of the etiology of this condition in the past.


Asunto(s)
Cavidad Glenoidea , Húmero , Humanos , Femenino , Adulto , Húmero/diagnóstico por imagen , Escápula , Diáfisis , Italia
5.
Science ; 377(6609): 940-951, 2022 08 26.
Artículo en Inglés | MEDLINE | ID: mdl-36007020

RESUMEN

Literary and archaeological sources have preserved a rich history of Southern Europe and West Asia since the Bronze Age that can be complemented by genetics. Mycenaean period elites in Greece did not differ from the general population and included both people with some steppe ancestry and others, like the Griffin Warrior, without it. Similarly, people in the central area of the Urartian Kingdom around Lake Van lacked the steppe ancestry characteristic of the kingdom's northern provinces. Anatolia exhibited extraordinary continuity down to the Roman and Byzantine periods, with its people serving as the demographic core of much of the Roman Empire, including the city of Rome itself. During medieval times, migrations associated with Slavic and Turkic speakers profoundly affected the region.


Asunto(s)
Migración Humana , Población , Arqueología , Asia , Europa (Continente) , Variación Genética , Grecia , Historia Antigua , Historia Medieval , Migración Humana/historia , Humanos , Población/genética
6.
Science ; 377(6609): 982-987, 2022 08 26.
Artículo en Inglés | MEDLINE | ID: mdl-36007054

RESUMEN

We present the first ancient DNA data from the Pre-Pottery Neolithic of Mesopotamia (Southeastern Turkey and Northern Iraq), Cyprus, and the Northwestern Zagros, along with the first data from Neolithic Armenia. We show that these and neighboring populations were formed through admixture of pre-Neolithic sources related to Anatolian, Caucasus, and Levantine hunter-gatherers, forming a Neolithic continuum of ancestry mirroring the geography of West Asia. By analyzing Pre-Pottery and Pottery Neolithic populations of Anatolia, we show that the former were derived from admixture between Mesopotamian-related and local Epipaleolithic-related sources, but the latter experienced additional Levantine-related gene flow, thus documenting at least two pulses of migration from the Fertile Crescent heartland to the early farmers of Anatolia.


Asunto(s)
Agricultores , Flujo Génico , Migración Humana , Arqueología , Armenia , Chipre , ADN Antiguo , Agricultores/historia , Historia Antigua , Migración Humana/historia , Mesopotamia
7.
Science ; 377(6609): eabm4247, 2022 08 26.
Artículo en Inglés | MEDLINE | ID: mdl-36007055

RESUMEN

By sequencing 727 ancient individuals from the Southern Arc (Anatolia and its neighbors in Southeastern Europe and West Asia) over 10,000 years, we contextualize its Chalcolithic period and Bronze Age (about 5000 to 1000 BCE), when extensive gene flow entangled it with the Eurasian steppe. Two streams of migration transmitted Caucasus and Anatolian/Levantine ancestry northward, and the Yamnaya pastoralists, formed on the steppe, then spread southward into the Balkans and across the Caucasus into Armenia, where they left numerous patrilineal descendants. Anatolia was transformed by intra-West Asian gene flow, with negligible impact of the later Yamnaya migrations. This contrasts with all other regions where Indo-European languages were spoken, suggesting that the homeland of the Indo-Anatolian language family was in West Asia, with only secondary dispersals of non-Anatolian Indo-Europeans from the steppe.


Asunto(s)
Flujo Génico , Genoma Humano , Migración Humana , Asia , Peninsula Balcánica , Europa (Continente) , Historia Antigua , Migración Humana/historia , Humanos , Población Blanca/genética
8.
PLoS One ; 17(5): e0267532, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-35584081

RESUMEN

The archaeological site of Salorno-Dos de la Forca (Bozen, Alto Adige) provides one of the rarest and most significant documentations of cremated human remains preserved from an ancient cremation platform (ustrinum). The pyre area, located along the upper Adige valley, is dated to the Late Bronze Age (ca. 1150-950 BCE) and has yielded an unprecedented quantity of cremated human remains (about 63.5 kg), along with burnt animal bone fragments, shards of pottery, and other grave goods made in bronze and animal bone/antler. This study focuses on the bioanthropological analysis of the human remains and discusses the formation of the unusual burnt deposits at Salorno through comparisons with modern practices and protohistoric and contemporaneous archaeological deposits. The patterning of bone fragmentation and commingling was investigated using spatial data recorded during excavation which, along with the bioanthropological and archaeological data, are used to model and test two hypotheses: Salorno-Dos de la Forca would be the result of A) repeated primary cremations left in situ; or B) of residual material remaining after select elements were removed for internment in urns or burials to unknown depositional sites. By modelling bone weight and demographic data borrowed from regional affine contexts, the authors suggest that this cremation site may have been used over several generations by a small community-perhaps a local elite. With a quantity of human remains that exceeds that of any other coeval contexts interpreted as ustrina, Salorno may be the product of a complex series of rituals in which the human cremains did not receive individual burial, but were left in situ, in a collective/communal place of primary combustion, defining an area of repeated funeral ceremonies involving offerings and libations across a few generations. This would represent a new typological and functional category that adds to the variability of mortuary customs at the end of the Bronze Age in the Alpine are, at a time in which "globalising" social trends may have stimulated the definition of more private identities.


Asunto(s)
Cremación , Restos Mortales , Entierro , Ritos Fúnebres , Humanos , Italia
9.
Nature ; 601(7894): 588-594, 2022 01.
Artículo en Inglés | MEDLINE | ID: mdl-34937049

RESUMEN

Present-day people from England and Wales have more ancestry derived from early European farmers (EEF) than did people of the Early Bronze Age1. To understand this, here we generated genome-wide data from 793 individuals, increasing data from the Middle to the Late Bronze Age and Iron Age in Britain by 12-fold, and western and central Europe by 3.5-fold. Between 1000 and 875 BC, EEF ancestry increased in southern Britain (England and Wales) but not northern Britain (Scotland) due to incorporation of migrants who arrived at this time and over previous centuries, and who were genetically most similar to ancient individuals from France. These migrants contributed about half the ancestry of people of England and Wales from the Iron Age, thereby creating a plausible vector for the spread of early Celtic languages into Britain. These patterns are part of a broader trend of EEF ancestry becoming more similar across central and western Europe in the Middle to the Late Bronze Age, coincident with archaeological evidence of intensified cultural exchange2-6. There was comparatively less gene flow from continental Europe during the Iron Age, and the independent genetic trajectory in Britain is also reflected in the rise of the allele conferring lactase persistence to approximately 50% by this time compared to approximately 7% in central Europe where it rose rapidly in frequency only a millennium later. This suggests that dairy products were used in qualitatively different ways in Britain and in central Europe over this period.


Asunto(s)
Arqueología , Agricultores , Europa (Continente) , Francia , Genoma Humano/genética , Migración Humana/historia , Humanos , Lactante , Reino Unido
10.
Nature ; 591(7850): 413-419, 2021 03.
Artículo en Inglés | MEDLINE | ID: mdl-33618348

RESUMEN

The deep population history of East Asia remains poorly understood owing to a lack of ancient DNA data and sparse sampling of present-day people1,2. Here we report genome-wide data from 166 East Asian individuals dating to between 6000 BC and AD 1000 and 46 present-day groups. Hunter-gatherers from Japan, the Amur River Basin, and people of Neolithic and Iron Age Taiwan and the Tibetan Plateau are linked by a deeply splitting lineage that probably reflects a coastal migration during the Late Pleistocene epoch. We also follow expansions during the subsequent Holocene epoch from four regions. First, hunter-gatherers from Mongolia and the Amur River Basin have ancestry shared by individuals who speak Mongolic and Tungusic languages, but do not carry ancestry characteristic of farmers from the West Liao River region (around 3000 BC), which contradicts theories that the expansion of these farmers spread the Mongolic and Tungusic proto-languages. Second, farmers from the Yellow River Basin (around 3000 BC) probably spread Sino-Tibetan languages, as their ancestry dispersed both to Tibet-where it forms approximately 84% of the gene pool in some groups-and to the Central Plain, where it has contributed around 59-84% to modern Han Chinese groups. Third, people from Taiwan from around 1300 BC to AD 800 derived approximately 75% of their ancestry from a lineage that is widespread in modern individuals who speak Austronesian, Tai-Kadai and Austroasiatic languages, and that we hypothesize derives from farmers of the Yangtze River Valley. Ancient people from Taiwan also derived about 25% of their ancestry from a northern lineage that is related to, but different from, farmers of the Yellow River Basin, which suggests an additional north-to-south expansion. Fourth, ancestry from Yamnaya Steppe pastoralists arrived in western Mongolia after around 3000 BC but was displaced by previously established lineages even while it persisted in western China, as would be expected if this ancestry was associated with the spread of proto-Tocharian Indo-European languages. Two later gene flows affected western Mongolia: migrants after around 2000 BC with Yamnaya and European farmer ancestry, and episodic influences of later groups with ancestry from Turan.


Asunto(s)
Genoma Humano/genética , Genómica , Migración Humana/historia , China , Producción de Cultivos/historia , Femenino , Haplotipos/genética , Historia Antigua , Humanos , Japón , Lenguaje/historia , Masculino , Mongolia , Nepal , Oryza , Polimorfismo de Nucleótido Simple/genética , Siberia , Taiwán
11.
Genome Res ; 31(3): 472-483, 2021 03.
Artículo en Inglés | MEDLINE | ID: mdl-33579752

RESUMEN

Ancient DNA sampling methods-although optimized for efficient DNA extraction-are destructive, relying on drilling or cutting and powdering (parts of) bones and teeth. As the field of ancient DNA has grown, so have concerns about the impact of destructive sampling of the skeletal remains from which ancient DNA is obtained. Due to a particularly high concentration of endogenous DNA, the cementum of tooth roots is often targeted for ancient DNA sampling, but destructive sampling methods of the cementum often result in the loss of at least one entire root. Here, we present a minimally destructive method for extracting ancient DNA from dental cementum present on the surface of tooth roots. This method does not require destructive drilling or grinding, and, following extraction, the tooth remains safe to handle and suitable for most morphological studies, as well as other biochemical studies, such as radiocarbon dating. We extracted and sequenced ancient DNA from 30 teeth (and nine corresponding petrous bones) using this minimally destructive extraction method in addition to a typical tooth sampling method. We find that the minimally destructive method can provide ancient DNA that is of comparable quality to extracts produced from teeth that have undergone destructive sampling processes. Further, we find that a rigorous cleaning of the tooth surface combining diluted bleach and UV light irradiation seems sufficient to minimize external contaminants usually removed through the physical removal of a superficial layer when sampling through regular powdering methods.


Asunto(s)
ADN Antiguo/aislamiento & purificación , Cemento Dental/química , Diente/química , Humanos , Masculino , Diente/anatomía & histología
12.
Nature ; 590(7844): 103-110, 2021 02.
Artículo en Inglés | MEDLINE | ID: mdl-33361817

RESUMEN

Humans settled the Caribbean about 6,000 years ago, and ceramic use and intensified agriculture mark a shift from the Archaic to the Ceramic Age at around 2,500 years ago1-3. Here we report genome-wide data from 174 ancient individuals from The Bahamas, Haiti and the Dominican Republic (collectively, Hispaniola), Puerto Rico, Curaçao and Venezuela, which we co-analysed with 89 previously published ancient individuals. Stone-tool-using Caribbean people, who first entered the Caribbean during the Archaic Age, derive from a deeply divergent population that is closest to Central and northern South American individuals; contrary to previous work4, we find no support for ancestry contributed by a population related to North American individuals. Archaic-related lineages were >98% replaced by a genetically homogeneous ceramic-using population related to speakers of languages in the Arawak family from northeast South America; these people moved through the Lesser Antilles and into the Greater Antilles at least 1,700 years ago, introducing ancestry that is still present. Ancient Caribbean people avoided close kin unions despite limited mate pools that reflect small effective population sizes, which we estimate to be a minimum of 500-1,500 and a maximum of 1,530-8,150 individuals on the combined islands of Puerto Rico and Hispaniola in the dozens of generations before the individuals who we analysed lived. Census sizes are unlikely to be more than tenfold larger than effective population sizes, so previous pan-Caribbean estimates of hundreds of thousands of people are too large5,6. Confirming a small and interconnected Ceramic Age population7, we detect 19 pairs of cross-island cousins, close relatives buried around 75 km apart in Hispaniola and low genetic differentiation across islands. Genetic continuity across transitions in pottery styles reveals that cultural changes during the Ceramic Age were not driven by migration of genetically differentiated groups from the mainland, but instead reflected interactions within an interconnected Caribbean world1,8.


Asunto(s)
Arqueología , Genética de Población , Genoma Humano/genética , Migración Humana/historia , Islas , Dinámica Poblacional/historia , Arqueología/ética , Región del Caribe , América Central/etnología , Cerámica/historia , Genética de Población/ética , Mapeo Geográfico , Haplotipos , Historia Antigua , Humanos , Masculino , Densidad de Población , América del Sur/etnología
13.
Am J Phys Anthropol ; 174(3): 500-518, 2021 03.
Artículo en Inglés | MEDLINE | ID: mdl-33247981

RESUMEN

OBJECTIVES: Degenerative joint disease in the spine is heavily influenced by genetic, environmental, and epigenetic factors, as well as exacerbated by physical activity and injury. The objective of this study was to investigate the multivariate relationship between known predictors of degenerative joint disease in the spine, such as age and sex, with mortuary indicators of economic access such as grave inclusions, burial location, and burial type. MATERIALS AND METHODS: The presence and severity of vertebral osteophytosis (VO) and vertebral osteoarthritis (VOA) was recorded for the vertebral columns of N = 106 adult individuals from the Late Medieval period at the rural monastery of San Pietro at Villamagna in Lazio, Italy (1300-1450 AD). Multiple skeletal indicators of degenerative joint disease, morphological sex, and age were compared with differences in mortuary treatment across four regions of the spine. RESULTS: There are marked differences in severe joint disease outcome between groups with more and less economic access. Relative risk ratios suggest that males and females with less economic access have elevated risk for VO and VOA in specific spine regions, although this effect is reduced among females. DISCUSSION: Current research on the consequences of economic and social inequality point to the important role of economic inequality in shaping disease outcomes. Our results suggest that biocultural effects of reduced economic access at the intraclass level may increase vulnerability to the downstream effects of risk exposure (e.g., biomechanical injure, physical activity, biochemical imbalance), and ultimately increase the risk and prevalence for severe degenerative disease outcomes in medieval Italy.


Asunto(s)
Entierro/historia , Osteoartritis de la Columna Vertebral , Osteofitosis Vertebral , Adolescente , Adulto , Factores de Edad , Arqueología , Femenino , Historia Medieval , Humanos , Italia , Masculino , Persona de Mediana Edad , Osteoartritis de la Columna Vertebral/economía , Osteoartritis de la Columna Vertebral/etnología , Osteoartritis de la Columna Vertebral/patología , Riesgo , Factores Sexuales , Factores Socioeconómicos , Osteofitosis Vertebral/economía , Osteofitosis Vertebral/etnología , Osteofitosis Vertebral/patología , Columna Vertebral/patología , Adulto Joven
14.
PLoS One ; 15(12): e0229370, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-33326416

RESUMEN

The present study applies a dental morphological perspective to the understanding of the complex pre-contact population history of the South Central Andes, through the detection of the underlying dynamics, and the assessment of the biological ties among groups. It presents an analysis of 1591 individuals from 66 sites that date from the Archaic to the Late Intermediate phases from Bolivia, Chile and Peru. The results suggest this area is characterized by significant movement of people and cultures and, at the same time, by long standing population continuity, and highlight the need for wider perspectives capable of taking into account both the different micro-regional realities and the region in its entirety.


Asunto(s)
Migración Humana/historia , Dinámica Poblacional/historia , Arqueología , Bolivia , Chile , Femenino , Fósiles , Historia Antigua , Humanos , Indígenas Sudamericanos , Masculino , Perú , Diente
15.
Cell ; 181(5): 1146-1157.e11, 2020 05 28.
Artículo en Inglés | MEDLINE | ID: mdl-32470400

RESUMEN

We report genome-wide DNA data for 73 individuals from five archaeological sites across the Bronze and Iron Ages Southern Levant. These individuals, who share the "Canaanite" material culture, can be modeled as descending from two sources: (1) earlier local Neolithic populations and (2) populations related to the Chalcolithic Zagros or the Bronze Age Caucasus. The non-local contribution increased over time, as evinced by three outliers who can be modeled as descendants of recent migrants. We show evidence that different "Canaanite" groups genetically resemble each other more than other populations. We find that Levant-related modern populations typically have substantial ancestry coming from populations related to the Chalcolithic Zagros and the Bronze Age Southern Levant. These groups also harbor ancestry from sources we cannot fully model with the available data, highlighting the critical role of post-Bronze-Age migrations into the region over the past 3,000 years.


Asunto(s)
ADN Antiguo/análisis , Etnicidad/genética , Flujo Génico/genética , Arqueología/métodos , ADN Mitocondrial/genética , Etnicidad/historia , Flujo Génico/fisiología , Variación Genética/genética , Genética de Población/métodos , Genoma Humano/genética , Genómica/métodos , Haplotipos , Historia Antigua , Migración Humana/historia , Humanos , Región Mediterránea , Medio Oriente , Análisis de Secuencia de ADN
17.
Genome Res ; 30(3): 427-436, 2020 03.
Artículo en Inglés | MEDLINE | ID: mdl-32098773

RESUMEN

DNA recovery from ancient human remains has revolutionized our ability to reconstruct the genetic landscape of the past. Ancient DNA research has benefited from the identification of skeletal elements, such as the cochlear part of the osseous inner ear, that provides optimal contexts for DNA preservation; however, the rich genetic information obtained from the cochlea must be counterbalanced against the loss of morphological information caused by its sampling. Motivated by similarities in developmental processes and histological properties between the cochlea and auditory ossicles, we evaluate the ossicles as an alternative source of ancient DNA. We show that ossicles perform comparably to the cochlea in terms of DNA recovery, finding no substantial reduction in data quantity and minimal differences in data quality across preservation conditions. Ossicles can be sampled from intact skulls or disarticulated petrous bones without damage to surrounding bone, and we argue that they should be used when available to reduce damage to human remains. Our results identify another optimal skeletal element for ancient DNA analysis and add to a growing toolkit of sampling methods that help to better preserve skeletal remains for future research while maximizing the likelihood that ancient DNA analysis will produce useable results.


Asunto(s)
ADN Antiguo/análisis , Osículos del Oído/química , Cóclea/química , Osículos del Oído/anatomía & histología , Osículos del Oído/embriología , Humanos , Análisis de Secuencia de ADN
18.
Nat Ecol Evol ; 4(3): 334-345, 2020 03.
Artículo en Inglés | MEDLINE | ID: mdl-32094539

RESUMEN

Steppe-pastoralist-related ancestry reached Central Europe by at least 2500 BC, whereas Iranian farmer-related ancestry was present in Aegean Europe by at least 1900 BC. However, the spread of these ancestries into the western Mediterranean, where they have contributed to many populations that live today, remains poorly understood. Here, we generated genome-wide ancient-DNA data from the Balearic Islands, Sicily and Sardinia, increasing the number of individuals with reported data from 5 to 66. The oldest individual from the Balearic Islands (~2400 BC) carried ancestry from steppe pastoralists that probably derived from west-to-east migration from Iberia, although two later Balearic individuals had less ancestry from steppe pastoralists. In Sicily, steppe pastoralist ancestry arrived by ~2200 BC, in part from Iberia; Iranian-related ancestry arrived by the mid-second millennium BC, contemporary to its previously documented spread to the Aegean; and there was large-scale population replacement after the Bronze Age. In Sardinia, nearly all ancestry derived from the island's early farmers until the first millennium BC, with the exception of an outlier from the third millennium BC, who had primarily North African ancestry and who-along with an approximately contemporary Iberian-documents widespread Africa-to-Europe gene flow in the Chalcolithic. Major immigration into Sardinia began in the first millennium BC and, at present, no more than 56-62% of Sardinian ancestry is from its first farmers. This value is lower than previous estimates, highlighting that Sardinia, similar to every other region in Europe, has been a stage for major movement and mixtures of people.


Asunto(s)
Agricultura , ADN Antiguo , Estudio de Asociación del Genoma Completo , África , Antropología , Emigración e Inmigración , Europa (Continente) , Humanos , Irán , Islas , Sicilia , España
19.
Science ; 366(6466): 708-714, 2019 11 08.
Artículo en Inglés | MEDLINE | ID: mdl-31699931

RESUMEN

Ancient Rome was the capital of an empire of ~70 million inhabitants, but little is known about the genetics of ancient Romans. Here we present 127 genomes from 29 archaeological sites in and around Rome, spanning the past 12,000 years. We observe two major prehistoric ancestry transitions: one with the introduction of farming and another prior to the Iron Age. By the founding of Rome, the genetic composition of the region approximated that of modern Mediterranean populations. During the Imperial period, Rome's population received net immigration from the Near East, followed by an increase in genetic contributions from Europe. These ancestry shifts mirrored the geopolitical affiliations of Rome and were accompanied by marked interindividual diversity, reflecting gene flow from across the Mediterranean, Europe, and North Africa.


Asunto(s)
Emigración e Inmigración/historia , Flujo Génico , África del Norte/etnología , Genoma Humano , Historia Antigua , Humanos , Región Mediterránea , Medio Oriente/etnología , Ciudad de Roma
20.
Science ; 365(6457)2019 09 06.
Artículo en Inglés | MEDLINE | ID: mdl-31488661

RESUMEN

By sequencing 523 ancient humans, we show that the primary source of ancestry in modern South Asians is a prehistoric genetic gradient between people related to early hunter-gatherers of Iran and Southeast Asia. After the Indus Valley Civilization's decline, its people mixed with individuals in the southeast to form one of the two main ancestral populations of South Asia, whose direct descendants live in southern India. Simultaneously, they mixed with descendants of Steppe pastoralists who, starting around 4000 years ago, spread via Central Asia to form the other main ancestral population. The Steppe ancestry in South Asia has the same profile as that in Bronze Age Eastern Europe, tracking a movement of people that affected both regions and that likely spread the distinctive features shared between Indo-Iranian and Balto-Slavic languages.


Asunto(s)
Pueblo Asiatico/genética , Granjas/historia , Migración Humana/historia , Población/genética , Asia Central , Asia Sudoriental , Flujo Génico , Historia Antigua , Humanos , Irán , Análisis de Secuencia de ADN
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