Quantifying koala locomotion strategies: implications for the evolution of arborealism in marsupials

Author:

Gaschk Joshua L.1,Frère Celine H.1,Clemente Christofer J.1ORCID

Affiliation:

1. School of Science and Engineering, University of the Sunshine Coast, Sippy Downs, QLD 4556, Australia

Abstract

ABSTRACT The morphology and locomotor performance of a species can determine their inherent fitness within a habitat type. Koalas have an unusual morphology for marsupials, with several key adaptations suggested to increase stability in arboreal environments. We quantified the kinematics of their movement over ground and along narrow arboreal trackways to determine the extent to which their locomotion resembled that of primates, occupying similar niches, or basal marsupials from which they evolved. On the ground, the locomotion of koalas resembled a combination of marsupial behaviours and primate-like mechanics. For example, their fastest strides were bounding type gaits with a top speed of 2.78 m s−1 (mean 1.20 m s−1), resembling marsupials, while the relatively longer stride length was reflective of primate locomotion. Speed was increased using equal modification of stride length and frequency. On narrow substrates, koalas took longer but slower strides (mean 0.42 m s−1), adopting diagonally coupled gaits including both lateral and diagonal sequence gaits, the latter being a strategy distinctive among arboreal primates. The use of diagonally coupled gaits in the arboreal environment is likely only possible because of the unique gripping hand morphology of both the fore and hind feet of koalas. These results suggest that during ground locomotion, they use marsupial-like strategies but alternate to primate-like strategies when moving amongst branches, maximising stability in these environments. The locomotion strategies of koalas provide key insights into an independent evolutionary branch for an arboreal specialist, highlighting how locomotor strategies can convergently evolve between distant lineages.

Funder

University of the Sunshine Coast

Australian Research Council

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

Reference79 articles.

1. A new way of analysing symmetrical and asymmetrical gaits in quadrupeds;Abourachid;C. R. Biol.,2003

2. Stride lengths and stride frequencies of primates;Alexander;J. Zool.,1984

3. Arboreal locomotion in small new-world monkeys;Arms;Z. Morphol. Anthropol.,2002

4. Biomechanics of mammalian terrestrial locomotion;Biewener;Science,1990

5. Ecological and biomechanical insights into the evolution of gliding in mammals;Byrnes;Integr. Comp. Biol.,2011

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