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Paleobiology and Comparative Morphology of a Late Neandertal Sample from El Sidron, Asturias, Spain

Abstract

Fossil evidence from the Iberian Peninsula is essential for understanding Neandertal evolution and history. Since 2000, a new sample approximately 43,000 years old has been systematically recovered at the El Sidrón cave site (Asturias, Spain). Human remains almost exclusively compose the bone assemblage. All of the skeletal parts are preserved, and there is a moderate occurrence of Middle Paleolithic stone tools. A minimum number of eight individuals are represented, and ancient mtDNA has been extracted from dental and osteological remains. Paleobiology of the El Sidrón archaic humans fits the pattern found in other Neandertal samples: a high incidence of dental hypoplasia and interproximal grooves, yet no traumatic lesions are present. Moreover, unambiguous evidence of human-induced modifications has been found on the human remains. Morphologically, the El Sidrón humans show a large number of Neandertal lineage-derived features even though certain traits place the sample at the limits of Neandertal variation. Integrating the El Sidrón human mandibles into the larger Neandertal sample reveals a north-south geographic patterning, with southern Neandertals showing broader faces with increased lower facial heights. The large El Sidrón sample therefore augments the European evolutionary lineage fossil record and supports ecogeographical variability across Neandertal populations.

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References
1.
Rosas A, Bastir M . Geometric morphometric analysis of allometric variation in the mandibular morphology of the hominids of Atapuerca, Sima de los Huesos site. Anat Rec A Discov Mol Cell Evol Biol. 2004; 278(2):551-60. DOI: 10.1002/ar.a.20049. View

2.
Kaidonis J, Townsend G, Richards L . Brief communication: interproximal tooth wear: a new observation. Am J Phys Anthropol. 1992; 88(1):105-7. DOI: 10.1002/ajpa.1330880109. View

3.
Lalueza-Fox C, Krause J, Caramelli D, Catalano G, Milani L, Sampietro M . Mitochondrial DNA of an Iberian Neandertal suggests a population affinity with other European Neandertals. Curr Biol. 2006; 16(16):R629-30. DOI: 10.1016/j.cub.2006.07.044. View

4.
Lebel S, Trinkaus E, Faure M, Fernandez P, Guerin C, Richter D . Comparative morphology and paleobiology of Middle Pleistocene human remains from the Bau de l'Aubesier, Vaucluse, France. Proc Natl Acad Sci U S A. 2001; 98(20):11097-102. PMC: 58689. DOI: 10.1073/pnas.181353998. View

5.
Ogilvie M, Curran B, Trinkaus E . Incidence and patterning of dental enamel hypoplasia among the Neandertals. Am J Phys Anthropol. 1989; 79(1):25-41. DOI: 10.1002/ajpa.1330790104. View