Literature DB >> 29855043

Dimorphism throughout the European eel's life cycle: are ontogenetic changes in head shape related to dietary differences?

J De Meyer1, T Goethals1, S Van Wassenbergh1,2, T Augustijns1, J Habraken1, J Hellemans1, V Vandewiele1, J Dhaene3, M Bouillart1, D Adriaens1.   

Abstract

A well-known link exists between an organism's ecology and morphology. In the European eel, a dimorphic head has been linked to differences in feeding ecology, with broad-headed eels consuming harder prey items than narrow-headed ones. Consequently, we hypothesized that broad-heads should exhibit a cranial musculoskeletal system that increases bite force and facilitates the consumption of harder prey. Using 3D-reconstructions and a bite model, we tested this hypothesis in two life stages: the sub-adult yellow eel stage and its predecessor, the elver eel stage. This allowed us to test whether broad- and narrow-headed phenotypes show similar trait differences in both life stages and whether the dimorphism becomes more pronounced during ontogeny. We show that broad-headed eels in both stages have larger jaw muscles and a taller coronoid, which are associated with higher bite forces. This increased bite force together with the elongated upper and lower jaws in broad-headed eels can also improve grip during spinning behavior, which is used to manipulate hard prey. Head shape variation in European eel is therefore associated with musculoskeletal variation that can be linked to feeding ecology. However, although differences in muscle volume become more pronounced during ontogeny, this was not the case for skeletal features.
© 2018 Anatomical Society.

Entities:  

Keywords:  anguilliformes; bite force; cranial osteology; feeding; myology

Year:  2018        PMID: 29855043      PMCID: PMC6081510          DOI: 10.1111/joa.12836

Source DB:  PubMed          Journal:  J Anat        ISSN: 0021-8782            Impact factor:   2.610


  31 in total

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9.  Contribution of jaw muscle size and craniofacial morphology to human bite force magnitude.

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