The early lives of the islanders: Stable isotope analysis of incremental dentine collagen from the prehispanic period of the Canary Islands

Author:

Sánchez‐Cañadillas Elías12ORCID,Beaumont Julia3ORCID,Santana‐Cabrera Jonathan2ORCID,Gorton Marise3,Arnay‐de‐la‐Rosa Matilde1

Affiliation:

1. Departamento de Geografía e Historia, Unidad de Docencia e Investigación de Prehistoria, Arqueología e Historia Antigua, Facultad de Humanidades Universidad de La Laguna San Cristobal de La Laguna Spain

2. Departamento de Ciencias Históricas, Facultad de Geografía e Historia Universidad de Las Palmas de Gran Canaria Las Palmas de Gran Canaria Spain

3. School of Archaeological and Forensic Sciences University of Bradford Bradford UK

Abstract

AbstractObjectivesThis 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 MethodsEight individuals have been studied, which comprises 122 δ15N and δ13C 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.ResultsThe dentine collagen data are presented in correlated δ13C and δ15N plots per individual, showing the isotopic changes throughout time. δ15N values for each individual tend to be variable whereas δ13C data are generally more stable with a range of +9.1 to +14‰ for δ15N and −17.4 to −20.8‰ for δ13C.ConclusionThe 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 δ13C and δ15N 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 δ13C and δ15N and opposing co‐variance of isotopic values can be indicative of nutritional stress, although metabolic changes during growth are also considered.

Funder

Ministerio de Economía y Competitividad

Ministerio de Ciencia e Innovación

Publisher

Wiley

Subject

Paleontology,Archeology,Genetics,Anthropology,Anatomy,Epidemiology

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