Sagittal crest formation in great apes and gibbons
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Authors
Balolia, Katharine
Soligo, Christopher
Wood, Bernard
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Wiley
Abstract
The frequency of sagittal crest expression and patterns of sagittal crest growth and development have been
documented in hominoids, including some extinct hominin taxa, and the more frequent expression of the
sagittal crest in males has been traditionally linked with the need for larger-bodied individuals to have enough
attachment area for the temporalis muscle. In the present study, we investigate sagittal cresting in a dentally
mature sample of four hominoid taxa (Pan troglodytes schweinfurthii, Gorilla gorilla gorilla, Pongo pygmaeus
pygmaeus and Hylobates lar). We investigate whether sagittal crest size increases with age beyond dental
maturity in males and females of G. g. gorilla and Po. pyg. pygmaeus, and whether these taxa show sex
differences in the timing of sagittal crest development. We evaluate the hypothesis that the larger sagittal crest
of males may not be solely due to the requirement for a larger surface area than the un-crested cranial vault
can provide for the attachment of the temporalis muscle, and present data on sex differences in temporalis
muscle attachment area and sagittal crest size relative to cranial size. Gorilla g. gorilla and Po. pyg. pygmaeus
males show significant relationships between tooth wear rank and sagittal crest size, and they show sagittal
crest size differences between age groups that are not found in females. The sagittal crest emerges in early
adulthood in the majority of G. g. gorilla males, whereas the percentage of G. g. gorilla females possessing a
sagittal crest increases more gradually. Pongo pyg. pygmaeus males experience a three-fold increase in the
number of specimens exhibiting a sagittal crest in mid-adulthood, consistent with a secondary growth spurt.
Gorilla g. gorilla and Po. pyg. pygmaeus show significant sex differences in the size of the temporalis muscle
attachment area, relative to cranial size, with males of both taxa showing positive allometry not shown in
females. Gorilla g. gorilla males also show positive allometry for sagittal crest size relative to cranial size. Our
results suggest that although patterns of sagittal crest expression have limited utility for taxonomy and
phylogeny reconstruction, they could be useful for reconstructing aspects of social behaviour in some extinct
hominin taxa. In particular, our results in G. g. gorilla and Po. pyg. pygmaeus, which suggest that the size of
sagittal crests in males cannot be solely explained by the surface area required for attachment of the
temporalis muscle, offer partial support for the hypothesis that large sagittal crests form in response to sexual
selection and may play a role in social signalling.
Key words: cranium; ectocranial cresting; hominoid; sexual dimorphism; sexual selection.
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Journal of Anatomy
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2099-12-31
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