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The reconstructed cranium of Pierolapithecus and the evolution of the great ape face

人科 进化生物学 生物 现存分类群 收敛演化 人类进化 古生物学 智人 古人类学 形态学(生物学) 埋藏术 克莱德 系统发育学 生物进化 地理 考古 生物化学 遗传学 基因
作者
Kelsey D. Pugh,Santiago A. Catalano,Miriam Pérez de los Ríos,Josep Fortuny,Brian Shearer,Alessandra Vecino Gazabón,Ashley S. Hammond,Salvador Moyà‐Solà,David M. Alba,Sergio Almécija
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [Proceedings of the National Academy of Sciences]
卷期号:120 (44) 被引量:2
标识
DOI:10.1073/pnas.2218778120
摘要

Pierolapithecus catalaunicus (~12 million years ago, northeastern Spain) is key to understanding the mosaic nature of hominid (great ape and human) evolution. Notably, its skeleton indicates that an orthograde (upright) body plan preceded suspensory adaptations in hominid evolution. However, there is ongoing debate about this species, partly because the sole known cranium, preserving a nearly complete face, suffers from taphonomic damage. We 1) carried out a micro computerized tomography (CT) based virtual reconstruction of the Pierolapithecus cranium, 2) assessed its morphological affinities using a series of two-dimensional (2D) and three-dimensional (3D) morphometric analyses, and 3) modeled the evolution of key aspects of ape face form. The reconstruction clarifies many aspects of the facial morphology of Pierolapithecus . Our results indicate that it is most similar to great apes (fossil and extant) in overall face shape and size and is morphologically distinct from other Middle Miocene apes. Crown great apes can be distinguished from other taxa in several facial metrics (e.g., low midfacial prognathism, relatively tall faces) and only some of these features are found in Pierolapithecus , which is most consistent with a stem (basal) hominid position. The inferred morphology at all ancestral nodes within the hominoid (ape and human) tree is closer to great apes than to hylobatids (gibbons and siamangs), which are convergent with other smaller anthropoids. Our analyses support a hominid ancestor that was distinct from all extant and fossil hominids in overall facial shape and shared many features with Pierolapithecus . This reconstructed ancestral morphotype represents a testable hypothesis that can be reevaluated as new fossils are discovered.
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