PALEVOPRIM
UMR 7262 CNRS & UP

Laboratoire Paléontologie
Evolution Paléoécosystèmes
Paléoprimatologie
Université de Poitiers

Août 2026 : publication Journal of Human Evolution

Functional constraints mask species-level signals in hominid limbs: Long bone morphology and the challenge of taxonomic identification

Species boundaries are central to evolutionary biology, yet the reliability of skeletal morphology, particularly isolated postcranial elements, for diagnosing species remains unresolved. Long bones are commonly recovered in the fossil record and often used as operational taxonomic units but are shaped by functional and developmental constraints that may decouple morphological differentiation from species diagnosability. Here, morphological variation in the humerus and femur is examined across extant great apes to assess their utility for species delimitation, with implications for extinct hominins. At the genus level, differences between groups are expressed through significant differences in morphology and commonly in disparity. Among species-level taxa, mean shape differences were consistently detected, although without corresponding differences in disparity, indicating morphological differentiation within a constrained envelope. The results further indicate that the femur may be more informative than the humerus for detecting taxonomic and functional signals among hominids and that data availability can influence results obscuring morphological differences, as demonstrated by simulations on fragmentary bones and analyses of landmark taxonomic signals. Overall, these findings show that although postcranial long bones can track morphological changes and retain valuable taxonomic signals, they remain weak proxies for species boundaries when studied in isolation, with direct implications for taxonomic identification in the hominin fossil record.

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Figure 5. Comparison of shape, form, and size in the humerus of extant great apes.

Références

Aramendi, J. (2026). Functional constraints mask species-level signals in hominid limbs: Long bone morphology and the challenge of taxonomic identification. Journal of Human Evolution, 218, 103873 – DOI: 10.1016/j.jhevol.2026.103873

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2026-08-19T10:21:00+00:00

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