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1.
Am J Biol Anthropol ; 182(2): 300-317, 2023 10.
Article in English | MEDLINE | ID: mdl-37530169

ABSTRACT

OBJECTIVES: This study presents isotopic information for incremental dentine collagen and bone bulk collagen from individuals from the Canary Islands (Tenerife and Gran Canaria) to explore dietary differences during childhood life. MATERIALS AND METHODS: Eight individuals have been studied, which comprises 122 δ15 N and δ13 C incremental dentine measurements and eight bulk bone collagen analyses. A baseline of potentially consumed food sources has been developed for comparative purposes. A food reconstruction using isotopic transferred signals (FRUITS) model of probable contributions of each food source towards the diet of each individual has been developed. All samples but one belongs to the later period of indigenous occupation of the archipelago. RESULTS: The dentine collagen data are presented in correlated δ13 C and δ15 N plots per individual, showing the isotopic changes throughout time. δ15 N values for each individual tend to be variable whereas δ13 C data are generally more stable with a range of +9.1 to +14‰ for δ15 N and -17.4 to -20.8‰ for δ13 C. CONCLUSION: The isotopic analysis allows for the reconstruction of eight dietary profiles, which allow us to estimate the different dietary protein sources. The FRUITS model shows different percentages of the primary food sources for each individual. Where both δ13 C and δ15 N are elevated, this could be indicative of a higher marine contribution to the diet. There appear to be two main dietary profiles identifiable in the dataset and these may be related to changes in status or place of residence. Short-term variations in δ13 C and δ15 N and opposing co-variance of isotopic values can be indicative of nutritional stress, although metabolic changes during growth are also considered.


Subject(s)
Collagen , Diet , Humans , Carbon Isotopes/analysis , Spain , Collagen/analysis , Dentin/chemistry
2.
Homo ; 70(1): 45-56, 2019 Aug 29.
Article in English | MEDLINE | ID: mdl-31475291

ABSTRACT

In the pre-Hispanic necropolis of Juan Primo, northwest Gran Canaria (Canary Islands, Spain) a grave was found containing a 20-25 year-old woman with a foetus in her abdominal region, whose age at death was estimated at 33-35 weeks of gestation. The purpose of this study is to discuss the possible cause of death of the woman and foetus. Skeletons of both individuals were well preserved, permitting a good record of the bones found in the burial, which is compatible with a pregnancy at preterm. The age of the foetus and the position of the left upper limb raise the possibility that their death was the result of a difficult birth (dystocia). However, a number of alternative disorders can be put forward to explain this death in the third trimester of pregnancy, such as eclampsia and abruption placentae. In this case, pertinent ethnohistorical and osteoarchaeological information about the ancient canaries allows us to assess some of the stressors that would increase their maternal mortality. The lack of similar evidence in archaeological contexts makes this an important finding, providing a likely case of obstetric problems and their impact on pre-industrial societies.


Subject(s)
Fetal Death , Maternal Death , Obstetric Labor Complications , Pregnancy Trimester, Third , Adult , Bone and Bones/anatomy & histology , Burial/history , Female , History, Ancient , Humans , Paleopathology , Pregnancy , Spain , Young Adult
3.
PLoS One ; 14(3): e0209125, 2019.
Article in English | MEDLINE | ID: mdl-30893316

ABSTRACT

The Canary Islands' indigenous people have been the subject of substantial archaeological, anthropological, linguistic and genetic research pointing to a most probable North African Berber source. However, neither agreement about the exact point of origin nor a model for the indigenous colonization of the islands has been established. To shed light on these questions, we analyzed 48 ancient mitogenomes from 25 archaeological sites from the seven main islands. Most lineages observed in the ancient samples have a Mediterranean distribution, and belong to lineages associated with the Neolithic expansion in the Near East and Europe (T2c, J2a, X3a…). This phylogeographic analysis of Canarian ancient mitogenomes, the first of its kind, shows that some lineages are restricted to Central North Africa (H1cf, J2a2d and T2c1d3), while others have a wider distribution, including both West and Central North Africa, and, in some cases, Europe and the Near East (U6a1a1, U6a7a1, U6b, X3a, U6c1). In addition, we identify four new Canarian-specific lineages (H1e1a9, H4a1e, J2a2d1a and L3b1a12) whose coalescence dates correlate with the estimated time for the colonization of the islands (1st millennia CE). Additionally, we observe an asymmetrical distribution of mtDNA haplogroups in the ancient population, with certain haplogroups appearing more frequently in the islands closer to the continent. This reinforces results based on modern mtDNA and Y-chromosome data, and archaeological evidence suggesting the existence of two distinct migrations. Comparisons between insular populations show that some populations had high genetic diversity, while others were probably affected by genetic drift and/or bottlenecks. In spite of observing interinsular differences in the survival of indigenous lineages, modern populations, with the sole exception of La Gomera, are homogenous across the islands, supporting the theory of extensive human mobility after the European conquest.


Subject(s)
Ethnicity/genetics , High-Throughput Nucleotide Sequencing/methods , Mitochondria/genetics , Transients and Migrants/classification , Africa, Northern/ethnology , Europe/ethnology , Genetic Drift , Genetics, Population , Genome, Mitochondrial , Humans , Middle East , Phylogeography , Sequence Analysis, DNA , Spain/ethnology
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