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1.
Proc Natl Acad Sci U S A ; 119(15): e2106743119, 2022 04 12.
Artigo em Inglês | MEDLINE | ID: mdl-35389750

RESUMO

Human culture, biology, and health were shaped dramatically by the onset of agriculture ∼12,000 y B.P. This shift is hypothesized to have resulted in increased individual fitness and population growth as evidenced by archaeological and population genomic data alongside a decline in physiological health as inferred from skeletal remains. Here, we consider osteological and ancient DNA data from the same prehistoric individuals to study human stature variation as a proxy for health across a transition to agriculture. Specifically, we compared "predicted" genetic contributions to height from paleogenomic data and "achieved" adult osteological height estimated from long bone measurements for 167 individuals across Europe spanning the Upper Paleolithic to Iron Age (∼38,000 to 2,400 B.P.). We found that individuals from the Neolithic were shorter than expected (given their individual polygenic height scores) by an average of −3.82 cm relative to individuals from the Upper Paleolithic and Mesolithic (P = 0.040) and −2.21 cm shorter relative to post-Neolithic individuals (P = 0.068), with osteological vs. expected stature steadily increasing across the Copper (+1.95 cm relative to the Neolithic), Bronze (+2.70 cm), and Iron (+3.27 cm) Ages. These results were attenuated when we additionally accounted for genome-wide genetic ancestry variation: for example, with Neolithic individuals −2.82 cm shorter than expected on average relative to pre-Neolithic individuals (P = 0.120). We also incorporated observations of paleopathological indicators of nonspecific stress that can persist from childhood to adulthood in skeletal remains into our model. Overall, our work highlights the potential of integrating disparate datasets to explore proxies of health in prehistory.


Assuntos
Agricultura , Estatura , Fazendeiros , Saúde , Esqueleto , Adulto , Agricultura/história , Estatura/genética , Criança , DNA Antigo , Europa (Continente) , Fazendeiros/história , Variação Genética , Genômica , Saúde/história , História Antiga , Humanos , Paleopatologia , Esqueleto/anatomia & histologia
2.
PLoS One ; 16(4): e0246662, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-33852578

RESUMO

In the 12,000 years preceding the Industrial Revolution, human activities led to significant changes in land cover, plant and animal distributions, surface hydrology, and biochemical cycles. Earth system models suggest that this anthropogenic land cover change influenced regional and global climate. However, the representation of past land use in earth system models is currently oversimplified. As a result, there are large uncertainties in the current understanding of the past and current state of the earth system. In order to improve representation of the variety and scale of impacts that past land use had on the earth system, a global effort is underway to aggregate and synthesize archaeological and historical evidence of land use systems. Here we present a simple, hierarchical classification of land use systems designed to be used with archaeological and historical data at a global scale and a schema of codes that identify land use practices common to a range of systems, both implemented in a geospatial database. The classification scheme and database resulted from an extensive process of consultation with researchers worldwide. Our scheme is designed to deliver consistent, empirically robust data for the improvement of land use models, while simultaneously allowing for a comparative, detailed mapping of land use relevant to the needs of historical scholars. To illustrate the benefits of the classification scheme and methods for mapping historical land use, we apply it to Mesopotamia and Arabia at 6 kya (c. 4000 BCE). The scheme will be used to describe land use by the Past Global Changes (PAGES) LandCover6k working group, an international project comprised of archaeologists, historians, geographers, paleoecologists, and modelers. Beyond this, the scheme has a wide utility for creating a common language between research and policy communities, linking archaeologists with climate modelers, biodiversity conservation workers and initiatives.


Assuntos
Arqueologia , Recursos Naturais , Arábia , Biodiversidade , Clima , Conservação dos Recursos Naturais , Gerenciamento de Dados , Planeta Terra , Ecossistema , História Antiga , Humanos , Mesopotâmia
3.
Nature ; 522(7555): 167-72, 2015 Jun 11.
Artigo em Inglês | MEDLINE | ID: mdl-26062507

RESUMO

The Bronze Age of Eurasia (around 3000-1000 BC) was a period of major cultural changes. However, there is debate about whether these changes resulted from the circulation of ideas or from human migrations, potentially also facilitating the spread of languages and certain phenotypic traits. We investigated this by using new, improved methods to sequence low-coverage genomes from 101 ancient humans from across Eurasia. We show that the Bronze Age was a highly dynamic period involving large-scale population migrations and replacements, responsible for shaping major parts of present-day demographic structure in both Europe and Asia. Our findings are consistent with the hypothesized spread of Indo-European languages during the Early Bronze Age. We also demonstrate that light skin pigmentation in Europeans was already present at high frequency in the Bronze Age, but not lactose tolerance, indicating a more recent onset of positive selection on lactose tolerance than previously thought.


Assuntos
Povo Asiático/genética , Evolução Cultural/história , Fósseis , Genoma Humano/genética , Genômica , Idioma/história , População Branca/genética , Arqueologia/métodos , Ásia/etnologia , DNA/genética , DNA/isolamento & purificação , Europa (Continente)/etnologia , Frequência do Gene/genética , Genética Populacional , História Antiga , Migração Humana/história , Humanos , Intolerância à Lactose/genética , Polimorfismo de Nucleotídeo Único/genética , Pigmentação da Pele/genética
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