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Dive into the research topics where Alexandre Lucquin is active.

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Featured researches published by Alexandre Lucquin.


Nature | 2013

Earliest evidence for the use of pottery

Oliver E. Craig; Hayley Saul; Alexandre Lucquin; Yastami Nishida; Karine Taché; Leon J. Clarke; Anu Thompson; D. T. Altoft; Junzo Uchiyama; M. Ajimoto; K. Gibbs; Sven Isaksson; Carl Heron; Peter C. Jordan

Pottery was a hunter-gatherer innovation that first emerged in East Asia between 20,000 and 12,000 calibrated years before present (cal bp), towards the end of the Late Pleistocene epoch, a period of time when humans were adjusting to changing climates and new environments. Ceramic container technologies were one of a range of late glacial adaptations that were pivotal to structuring subsequent cultural trajectories in different regions of the world, but the reasons for their emergence and widespread uptake are poorly understood. The first ceramic containers must have provided prehistoric hunter-gatherers with attractive new strategies for processing and consuming foodstuffs, but virtually nothing is known of how early pots were used. Here we report the chemical analysis of food residues associated with Late Pleistocene pottery, focusing on one of the best-studied prehistoric ceramic sequences in the world, the Japanese Jōmon. We demonstrate that lipids can be recovered reliably from charred surface deposits adhering to pottery dating from about 15,000 to 11,800 cal bp (the Incipient Jōmon period), the oldest pottery so far investigated, and that in most cases these organic compounds are unequivocally derived from processing freshwater and marine organisms. Stable isotope data support the lipid evidence and suggest that most of the 101 charred deposits analysed, from across the major islands of Japan, were derived from high-trophic-level aquatic food. Productive aquatic ecotones were heavily exploited by late glacial foragers, perhaps providing an initial impetus for investment in ceramic container technology, and paving the way for further intensification of pottery use by hunter-gatherers in the early Holocene epoch. Now that we have shown that it is possible to analyse organic residues from some of the world’s earliest ceramic vessels, the subsequent development of this critical technology can be clarified through further widespread testing of hunter-gatherer pottery from later periods.


PLOS ONE | 2014

Long-Term Resilience of Late Holocene Coastal Subsistence System in Southeastern South America

André Carlo Colonese; Matthew J. Collins; Alexandre Lucquin; Michael Eustace; Y. Hancock; Raquel de Almeida Rocha Ponzoni; Alice Mora; Colin I. Smith; Paulo DeBlasis; Levy Figuti; Verônica Wesolowski; Cláudia Regina Plens; Sabine Eggers; Deisi Scunderlick Eloy de Farias; Andy Gledhill; Oliver E. Craig

Isotopic and molecular analysis on human, fauna and pottery remains can provide valuable new insights into the diets and subsistence practices of prehistoric populations. These are crucial to elucidate the resilience of social-ecological systems to cultural and environmental change. Bulk collagen carbon and nitrogen isotopic analysis of 82 human individuals from mid to late Holocene Brazilian archaeological sites (∼6,700 to ∼1,000 cal BP) reveal an adequate protein incorporation and, on the coast, the continuation in subsistence strategies based on the exploitation of aquatic resources despite the introduction of pottery and domesticated plant foods. These results are supported by carbon isotope analysis of single amino acid extracted from bone collagen. Chemical and isotopic analysis also shows that pottery technology was used to process marine foods and therefore assimilated into the existing subsistence strategy. Our multidisciplinary results demonstrate the resilient character of the coastal economy to cultural change during the late Holocene in southern Brazil.


PLOS ONE | 2016

Technological Analysis of the World's Earliest Shamanic Costume: A Multi-Scalar, Experimental Study of a Red Deer Headdress from the Early Holocene Site of Star Carr, North Yorkshire, UK

Aimée Little; Benjamin Joseph Elliott; Chantal Conneller; Diederik Pomstra; Adrian A. Evans; Laura C. Fitton; Andrew D. Holland; Robert I. Davis; Rachel Kershaw; Sonia O'Connor; Terry O'Connor; Thomas Sparrow; Andrew S. Wilson; Peter Jordan; Matthew J. Collins; André Carlo Colonese; Oliver E. Craig; Rebecca Knight; Alexandre Lucquin; Barry Taylor; Nicky Milner

Shamanic belief systems represent the first form of religious practice visible within the global archaeological record. Here we report on the earliest known evidence of shamanic costume: modified red deer crania headdresses from the Early Holocene site of Star Carr (c. 11 kya). More than 90% of the examples from prehistoric Europe come from this one site, establishing it as a place of outstanding shamanistic/cosmological significance. Our work, involving a programme of experimental replication, analysis of macroscopic traces, organic residue analysis and 3D image acquisition, metrology and visualisation, represents the first attempt to understand the manufacturing processes used to create these artefacts. The results produced were unexpected—rather than being carefully crafted objects, elements of their production can only be described as expedient.


Proceedings of the National Academy of Sciences of the United States of America | 2016

Ancient lipids document continuity in the use of early hunter-gatherer pottery through 9,000 years of Japanese prehistory.

Alexandre Lucquin; Kevin Gibbs; Junzo Uchiyama; Hayley Saul; Mayumi Ajimoto; Yvette Eley; Anita Radini; Carl Heron; Shinya Shoda; Yastami Nishida; Jasmine Lundy; Peter Jordan; Sven Isaksson; Oliver E. Craig

Significance Pottery has had a central role in human society for many millennia, but the reasons for the emergence and spread of this technology are poorly understood. First invented by groups of hunter–gatherers living in East Asia during the last glacial period, production only began to flourish with rising global temperatures in the Holocene, but the reasons for its uptake and spread are unknown. Through chemical analysis of their contents, we herein provide, to our knowledge, the first direct evidence of pottery use across this climatic transition. Contrary to expectations, ceramic vessels had a remarkably consistent use, predominantly for processing aquatic resources, indicating that cultural rather than environmental factors were most important for their widespread uptake. The earliest pots in the world are from East Asia and date to the Late Pleistocene. However, ceramic vessels were only produced in large numbers during the warmer and more stable climatic conditions of the Holocene. It has long been assumed that the expansion of pottery was linked with increased sedentism and exploitation of new resources that became available with the ameliorated climate, but this hypothesis has never been tested. Through chemical analysis of their contents, we herein investigate the use of pottery across an exceptionally long 9,000-y sequence from the Jōmon site of Torihama in western Japan, intermittently occupied from the Late Pleistocene to the mid-Holocene. Molecular and isotopic analyses of lipids from 143 vessels provides clear evidence that pottery across this sequence was predominantly used for cooking marine and freshwater resources, with evidence for diversification in the range of aquatic products processed during the Holocene. Conversely, there is little indication that ruminant animals or plants were processed in pottery, although it is evident from the faunal and macrobotanical remains that these foods were heavily exploited. Supported by other residue analysis data from Japan, our results show that the link between pottery and fishing was established in the Late Paleolithic and lasted well into the Holocene, despite environmental and socio-economic change. Cooking aquatic products in pottery represents an enduring social aspect of East Asian hunter–gatherers, a tradition based on a dependable technology for exploiting a sustainable resource in an uncertain and changing world.


Rapid Communications in Mass Spectrometry | 2015

Archaeological bone lipids as palaeodietary markers.

André Carlo Colonese; Thomas Farrell; Alexandre Lucquin; Daniel Firth; Sophy Charlton; Harry Kenneth Robson; Michelle Marie Alexander; Oliver E. Craig

RATIONALE Stable isotope analysis of archaeological and fossil bone samples can provide important insights into past environments, ecologies and diets. Previous studies have focused on stable carbon and nitrogen isotopes in bone collagen, or carbon isotopes in bone mineral (bioapatite). Carbon isotope analysis of lipids from archaeological bone has received much less attention, partly due to the lack of suitable methodologies allowing sufficient recovery of compounds for structural and isotopic characterisation. Here we show that lipids can be easily and reliably recovered from archaeological bone using a modified protocol, and that these provide complementary dietary information to other bone components. METHODS Human and animal bones were obtained from a variety of archaeological contexts. Lipids were sequentially extracted using solvent extraction (dichloromethane/methanol), followed by acidified methanol extraction (methanol/H2SO4). The lipids were then analysed by gas chromatography/mass spectrometry (GC/MS) and gas chromatography/combustion/isotope ratio mass spectrometry (GC/C/IRMS). RESULTS Appreciable amounts of endogenous lipid were recovered from archaeological bone. Importantly, a comparison between compound-specific and bulk collagen isotopic data shows that archaeological bone lipids reflect dietary input and can be used to distinguish between marine and terrestrial consumers, as well as between C3 and C4 plant consumers. Furthermore, the presence of essential fatty acids directly incorporated from diet to bone may provide additional palaeodietary information. CONCLUSIONS Our findings suggest that archaeological bone lipids are a hitherto untapped resource of dietary information that offer additional insights to those gained from other isotopic analyses of bone.


Scientific Reports | 2016

First molecular and isotopic evidence of millet processing in prehistoric pottery vessels

Carl Heron; Shinya Shoda; Adrià Breu Barcons; Janusz Czebreszuk; Yvette Eley; Marise Gorton; Jutta Kneisel; Alexandre Lucquin; Johannes Müller; Yastami Nishida; Joon-ho Son; Oliver E. Craig

Analysis of organic residues in pottery vessels has been successful in detecting a range of animal and plant products as indicators of food preparation and consumption in the past. However, the identification of plant remains, especially grain crops in pottery, has proved elusive. Extending the spectrum is highly desirable, not only to strengthen our understanding of the dispersal of crops from centres of domestication but also to determine modes of food processing, artefact function and the culinary significance of the crop. Here, we propose a new approach to identify millet in pottery vessels, a crop that spread throughout much of Eurasia during prehistory following its domestication, most likely in northern China. We report the successful identification of miliacin (olean-18-en-3β-ol methyl ether), a pentacyclic triterpene methyl ether that is enriched in grains of common/broomcorn millet (Panicum miliaceum), in Bronze Age pottery vessels from the Korean Peninsula and northern Europe. The presence of millet is supported by enriched carbon stable isotope values of bulk charred organic matter sampled from pottery vessel surfaces and extracted n-alkanoic acids, consistent with a C4 plant origin. These data represent the first identification of millet in archaeological ceramic vessels, providing a means to track the introduction, spread and consumption of this important crop.


PLOS ONE | 2016

Chemical Analysis of Pottery Demonstrates Prehistoric Origin for High-Altitude Alpine Dairying

Francesco Carrer; André Carlo Colonese; Alexandre Lucquin; Eduardo Guedes; Anu Thompson; Kevin Walsh; Thomas Reitmaier; Oliver E. Craig

The European high Alps are internationally renowned for their dairy produce, which are of huge cultural and economic significance to the region. Although the recent history of alpine dairying has been well studied, virtually nothing is known regarding the origins of this practice. This is due to poor preservation of high altitude archaeological sites and the ephemeral nature of transhumance economic practices. Archaeologists have suggested that stone structures that appear around 3,000 years ago are associated with more intense seasonal occupation of the high Alps and perhaps the establishment of new economic strategies. Here, we report on organic residue analysis of small fragments of pottery sherds that are occasionally preserved both at these sites and earlier prehistoric rock-shelters. Based mainly on isotopic criteria, dairy lipids could only be identified on ceramics from the stone structures, which date to the Iron Age (ca. 3,000–2,500 BP), providing the earliest evidence of this practice in the high Alps. Dairy production in such a marginal environment implies a high degree of risk even by today’s standards. We postulate that this practice was driven by population increase and climate deterioration that put pressure on lowland agropastoral systems and the establishment of more extensive trade networks, leading to greater demand for highly nutritious and transportable dairy products.


Scientific Reports | 2017

New criteria for the molecular identification of cereal grains associated with archaeological artefacts

André Carlo Colonese; Jessica Hendy; Alexandre Lucquin; Camilla Speller; Matthew J. Collins; Francesco Carrer; Regula Gubler; Marlu Kühn; R. Fischer; Oliver E. Craig

The domestication and transmission of cereals is one of the most fundamental components of early farming, but direct evidence of their use in early culinary practices and economies has remained frustratingly elusive. Using analysis of a well-preserved Early Bronze Age wooden container from Switzerland, we propose novel criteria for the identification of cereal residues. Using gas chromatography mass spectrometry (GC-MS), we identified compounds typically associated with plant products, including a series of phenolic lipids (alkylresorcinols) found only at appreciable concentration in wheat and rye bran. The value of these lipids as cereal grain biomarkers were independently corroborated by the presence of macrobotanical remains embedded in the deposit, and wheat and rye endosperm peptides extracted from residue. These findings demonstrate the utility of a lipid-based biomarker for wheat and rye bran and offer a methodological template for future investigations of wider range of archaeological contexts. Alkylresorcinols provide a new tool for residue analysis which can help explore the spread and exploitation of cereal grains, a fundamental component of the advent and spread of farming.


Arctic Anthropology | 2014

Specialized Processing of Aquatic Resources in Prehistoric Alaskan Pottery?: A Lipid-Residue Analysis of Ceramic Sherds from the Thule‐Period Site of Nunalleq, Alaska

Thomas Farrell; Peter Jordan; Karine Taché; Alexandre Lucquin; Kevin Gibbs; Ana Jorge; Kate Britton; Oliver E. Craig; Rick Knecht

Largely missing from the debate surrounding the use of pottery among arctic and subarctic hunter-gatherers are site-based biomolecular studies of vessel contents. This study used lipid-residue analysis to elucidate vessel function at Nunalleq (GDN-248), a late Thule-period coastal village site in the Yup’ik area of Western Alaska. In total, 31 pottery sherds and five soil samples were analyzed using gas chromatography and/or gas chromatography–mass spectrometry. The ubiquitous presence of aquatic biomarkers in all the pottery sherds suggests that pottery function at the site was directly linked to the use of aquatic resources. This indication of relatively specialized use of pottery at Nunalleq is particularly interesting when considered within the context of the site’s broader subsistence strategies, which included use of both aquatic and terrestrial resources. These findings appear to support a more general association between higher-latitude pottery traditions and the use of aquatic resources, though this topic requires further research.


Antiquity | 2017

Exploring the emergence of an 'Aquatic' Neolithic in the Russian Far East: organic residue analysis of early hunter-gatherer pottery from Sakhalin Island

Kevin Gibbs; Sven Isaksson; Oliver E. Craig; Alexandre Lucquin; Vyacheslav A. Grishchenko; Tom F.G. Farrell; Anu Thompson; Hirofumi Kato; Alexander Vasilevski; Peter Jordan

Abstract The Neolithic in north-east Asia is defined by the presence of ceramic containers, rather than agriculture, among hunter-gatherer communities. The role of pottery in such groups has, however, hitherto been unclear. This article presents the results of organic residue analysis of Neolithic pottery from Sakhalin Island in the Russian Far East. Results indicate that early pottery on Sakhalin was used for the processing of aquatic species, and that its adoption formed part of a wider Neolithic transition involving the reorientation of local lifeways towards the exploitation of marine resources.

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Carl Heron

University of Bradford

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Peter Jordan

University of Groningen

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Yvette Eley

University of Connecticut

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Ramiro March

Centre national de la recherche scientifique

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