10804
Title Of Article Chaper
Stable isotopes in human skeletons of southern Ontario: reconstructing palaeodiet
Title Of Journal Book
Journal of archaeological science
Volume
12
Issue
3
Pages
187-206
ISSN
0305-4403
Language Of Text
English
Language Of Summary
English
Literature Type
Serial
Literature Level
Analytic
Abstract
Most native plants of Ontario use the C<sub>3</sub> photosynthetic mechanism and therefore have relatively low <sup>13</sup>C/<sup>12</sup>C ratios; maize is a C<sub>4</sub> plant and is relatively enriched in <sup>13</sup>C. The proportion of maize in the diet of a human can therefore be estimated from the <sup>13</sup>C-content of collagen of fossil bone. The authors have used this method to follow the increase in consumption of maize in ancient native populations over the interval from AD 400 to 1650, and to quantify the amount of maize consumed. Maize consumption rose gradually to a maximum of fifty percent of the diet by AD 1400. These data agree with archaeologically derived data for this region, and with previous isotope studies in the northeastern U.S. A. In some of the latter, however, the maximum percentage of maize consumed has been overestimated because maize was assumed to have a delta<sup>13</sup>C value of -12.5per thousand. The present study shows the correct value to be closer to -9per thousand. The introduction of beans into the native diet about AD 1100 should have caused a decrease in the <sup>15</sup>N content of human bone collagen because legumes are deficient in this isotope, with respect to meat and fish. However, there is no significant change in the <sup>15</sup>N/<sup>14</sup>N ratio of human bone collagen over the period from 2300 BC to AD 1640. The authors conclude that meat and fish remained the main sources of protein even after the advent of agriculture into this region.
Keywords
Bone Collagen;Carbon Isotope;Nitrogen Isotope;Great Lakes; Prehistory; Palaeodiet;Maize;Amaranth;Chenopod;Bean;Iroquois;Huron; <sub>3</sub>C Plant;<sub>4</sub>C Plant AATA
pub_id
10804