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Mechanical evidence that 'Australopithecus sediba' was limited in its ability to eat hard foods

  • Justin Ledogar
  • , Amanda L Smith
  • , Brian G Richmond
  • , Barth W Wright
  • , Qian Wang
  • , Craig Byron
  • , Kristian J Carlson
  • , Darryl J de Ruiter
  • , Lee R Berger
  • , Kelli Tamvada
  • , Leslie C Pryor
  • , Michael A Berthaume
  • , Stefano Benazzi
  • , David S Strait
  • , Gerhard W Weber
  • , Mark A Spencer
  • , Keely B Carlson
  • , Kieran P McNulty
  • , Paul C Dechow
  • , Ian R Grosse
  • Callum F Ross

Research output: Contribution to journalArticlepeer-review

51 Citations (Scopus)

Abstract

'Australopithecus sediba' has been hypothesized to be a close relative of the genus 'Homo'. Here we show that MH1, the type specimen of 'A. sediba', was not optimized to produce high molar bite force and appears to have been limited in its ability to consume foods that were mechanically challenging to eat. Dental microwear data have previously been interpreted as indicating that 'A. sediba' consumed hard foods, so our findings illustrate that mechanical data are essential if one aims to reconstruct a relatively complete picture of feeding adaptations in extinct hominins. An implication of our study is that the key to understanding the origin of 'Homo' lies in understanding how environmental changes disrupted gracile australopith niches. Resulting selection pressures led to changes in diet and dietary adaption that set the stage for the emergence of our genus.
Original languageEnglish
Article number10596
Pages (from-to)1-9
JournalNature Communications
Volume7
DOIs
Publication statusPublished - 2016

Keywords

  • Biomechanics
  • Evolutionary Biology
  • Biological (Physical) Anthropology

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