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Combining ZooMS and zooarchaeology to study Late Pleistocene hominin behaviour at Fumane (Italy)

机译:结合ZooMS和动物考古学研究Fumane(意大利)的晚更新世人类行为

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摘要

Collagen type I fingerprinting (ZooMS) has recently been used to provide either palaeoenvironmental data or to identify additional hominin specimens in Pleistocene contexts, where faunal assemblages are normally highly fragmented. However, its potential to elucidate hominin subsistence behaviour has been unexplored. Here, ZooMS and zooarchaeology have been employed in a complementary approach to investigate bone assemblages from Final Mousterian and Uluzzian contexts at Fumane cave (Italy). Both approaches produced analogous species composition, but differ significantly in species abundance, particularly highlighted by a six fold-increase in the quantity of Bos/Bison remains in the molecularly identified component. Traditional zooarchaeological methods would therefore underestimate the proportion of Bos/Bison in these levels to a considerable extent. We suggest that this difference is potentially due to percussion-based carcass fragmentation of large Bos/Bison bone diaphyses. Finally, our data demonstrates high variability in species assignment to body size classes based on bone cortical thickness and fragment size. Thus, combining biomolecular and traditional zooarchaeological methods allows us to refine our understanding of bone assemblage composition associated with hominin occupation at Fumane.
机译:I型胶原蛋白指纹图谱(ZooMS)最近已用于提供古环境数据或识别在更新世背景下的其他人源标本,在这些情况下动物群通常高度分散。然而,其阐明人参维持生存行为的潜力尚未得到开发。在这里,ZooMS和动物考古学已被用作补充方法,以研究来自意大利Fumane洞穴中最终Mousterian和Uluzzian上下文的骨骼组合。两种方法都产生了相似的物种组成,但物种丰度却有显着差异,特别是在分子鉴定的组分中残留的Bos / Bison数量增加了六倍。因此,传统的动物考古学方法会在相当低的程度上低估Bos /野牛的比例。我们建议,这种差异可能是由于大型Bos / Bison骨干骨per的基于撞击的car体破碎所致。最后,我们的数据表明,根据骨皮质厚度和碎片大小,将物种分配给体型的可能性很大。因此,将生物分子方法与传统动物考古学方法相结合可以使我们加深对与富马内人参占据相关的骨组合物成分的了解。

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