Inter‐specific variation in Macropus crania: form, function and phylogeny
Open Access
- 1 April 2002
- journal article
- Published by Wiley in Journal of Zoology
- Vol. 256 (4) , 523-535
- https://doi.org/10.1017/s0952836902000572
Abstract
Morphological variation was studied in the crania of seven species of kangaroos and wallabies (Macropus). How function and phylogeny interact to influence cranial form amongst adults of diverse species was considered. Thirty-six, three-dimensional landmarks were acquired on each of 65 adult Macropus specimens from Western Australia. The different species occupy a wide range of habitats and latitudes and there are well-known differences in diet among the species. Size and shape variability was examined using the methods of geometric morphometrics. Aspects of inter-specific variation explained by principal components were visualized and examined for correlations with size, latitude, and diet. The first principal component correlates strongly with inter-specific differences in latitude and it primarily contrasts species on the basis of the relative length of the snout anterior to the molar teeth, this being greater in species that live in cooler climates. Species scores on the second principal component correlate strongly with centroid size such that smaller crania have more flexed muzzles. Principal component three separates the short grass-eating, red kangaroo M. rufus, from all other species (most of which eat tough herbage from trees and shrubs). This principal component represents differences in the masticatory apparatus. Variation on the fourth principal component also seems to be functionally interpretable in terms of further differences in the masticatory apparatus of M. agilis. The relationship between phylogeny and cranial form was investigated by comparing a phenogram based on the shape distances between taxa with a consensus phylogeny drawn from the literature on Macropus genetics, ecology and morphology. The phenogram shows considerable similarity to current taxonomic views, but, our results also indicate differences that are related to function. Thus, this study serves to unravel the interaction of functional and phylogenetic influences on cranial form amongst Macropus species and raises further issues relating to ontogeny and phylogeny.Keywords
This publication has 13 references indexed in Scilit:
- The study of morphological variation in the hominid fossil record: biology, landmarks and geometryJournal of Anatomy, 2000
- Facial growth in Cercocebus torquatus: an application of three‐dimensional geometric morphometric techniques to the study of morphological variationJournal of Anatomy, 1998
- Resolution of portions of the kangaroo phylogeny (Marsupialia: Macropodidae) using DNA hybridizationBiological Journal of the Linnean Society, 1995
- Principal warps: thin-plate splines and the decomposition of deformationsPublished by Institute of Electrical and Electronics Engineers (IEEE) ,1989
- Taxonomic and Phylogenetic Status of Living and Fossil Kangaroos and Wallabies of the Genus Macropus Shaw (Macropodidae: Marsupialia), with a New Subgeneric Name for the Larger WallabiesAustralian Journal of Zoology, 1985
- Shape Manifolds, Procrustean Metrics, and Complex Projective SpacesBulletin of the London Mathematical Society, 1984
- Repeated DNA Sequences and Kangaroo PhylogenyAustralian Journal of Biological Sciences, 1981
- Species Determination by Multivariate Analysis of Measurements from the Skulls of Historic Specimens of Grey Kangaroos, attributed to Macropus fuliginosus (Desmarest), from Kangaroo Island, South AustraliaAustralian Journal of Zoology, 1980
- The species of living marsupials: an annotated listPublished by Springer Nature ,1977
- Taxonomy and distribution of the grey kangaroos, Macropus giganteus Shaw and Macropus Fuliginosus (Desmarest), and their subspecies (Marsupialia : Macropodidae)Australian Journal of Zoology, 1972