Please use this identifier to cite or link to this item: https://cir.cenieh.es/handle/20.500.12136/3436
Title: Sex assessment in a hominin upper second molar (RV-350) from the "Ruidera-Los Villares" Middle Pleistocene paleoanthropological site: a proteome-based analysis of the amelogenin
Authors: Sanz Henche, P.
Zapico, I.
Clemente, L.F.
Hernández, M.L.
Ríos, L.
Casquero Muñoz, M.
Buenestado Ruíz, C.
Gascó-Lluna, F.
Díaz Pérez, S.
Palancar, C.A.
García-Martínez, D.
Keywords: Sex;Hominin;Ruidera-Los Villares;Middle Pleistocene;Tooth enamel
Issue Date: Sep-2024
Publisher: European Society for the Study of Human Evolution (ESHE)
Citation: 14th Annual Meeting of the European Society for the Study of Human Evolution, 2024, p. 154
Abstract: Estimating sex in fossil human remains is crucial for understanding ancient populations' evolutionary anatomy, demographic structure, social behaviors, and evolutionary dynamics. Traditionally, this estimation combined morphological and metric analyses, leveraging features like pelvic and skull characteristics for sexual dimorphism assessment [1]. Modern advancements in technology, such as CT scanning and 3D imaging, have greatly improved accuracy by enabling precise virtual reconstructions and measurements of skeletal features. These methods enhance our ability to reconstruct evolutionary narratives and gain insights into biological diversity in human fossils, contributing significantly to our understanding of human evolution. Molecular analyses, particularly proteomic analysis focusing on the amelogenin protein in dental enamel, have become essential in sex estimation for fossil specimens [2]. Amelogenin, a sexually dimorphic protein encoded by genes on the X and Y chromosomes, can be analyzed using mass spectrometry and proteomic techniques from preserved enamel peptides. This method offers advantages in cases where traditional methods are inconclusive due to fragmentary remains, providing direct molecular evidence of biological sex without damaging samples. Proteomic analysis of amelogenin has been successfully used in paleoanthropological studies, enhancing our understanding of ancient populations' sex composition alongside traditional methods.
Description: Ponencia presentada en: 14th Annual Meeting of the European Society for the Study of Human Evolution (ESHE 2024), Zagreb, Croatia
URI: https://cir.cenieh.es/handle/20.500.12136/3436
Editor version: https://mcusercontent.com/9347aa3598d50410e651f8829/files/6a3ec38e-6fc0-a615-3d15-9dd7c5ea1374/Abstracts_2024_ESHE_Zagreb.pdf
Type: Presentation
Other
Appears in Collections:Congresos, encuentros científicos y estancias de investigación
Paleobiología

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