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A gyroscopic advantage: phylogenetic patterns of compensatory movements in frogs
Author(s) -
Petra Frýdlová,
Kristýna Sedláčková,
Barbora Žampachová,
Anikó Kurali,
Ján Hýbl,
David Škoda,
Patrik Kutílek,
Eva Landová,
Rudolf Černý,
Daniel Frynta
Publication year - 2018
Publication title -
journal of experimental biology
Language(s) - English
Resource type - Journals
eISSN - 1477-9145
pISSN - 0022-0949
DOI - 10.1242/jeb.186544
Subject(s) - biology , arboreal locomotion , gaze , context (archaeology) , foraging , ecology , psychology , habitat , paleontology , psychoanalysis
Head and eye compensatory movements known as vestibulo-ocular and vestibulo-cervical reflexes are essential to stay orientated in space while moving. We have used a previously developed methodology focused on the detailed mathematical description of head compensatory movements in frogs without the need for any surgical procedures on the examined specimens. Our comparative study comprising 35 species of frogs from different phylogenetic background revealed species specific head compensatory abilities ensuring gaze stabilization. Moreover, we found a strong phylogenetical signal highlighting the great ability of compensatory head movements in families of Pyxicephalidae and Rhacophoridae from Natatanura group. On the other hand, families of Dendrobatidae and Microhylidae exhibited only poor or no head compensatory movements. Contrary to our expectation, the results did not corroborate an ecomorphological hypothesis anticipating a close relationship between ecological parameters and the head compensatory movements. We did not find any positive association between a more complex (3D structured, arboreal or aquatic) habitats as well as more saltatory behaviour and elevated abilities of head compensatory movements. Moreover, we found compensatory movements in most basal Archeobatrachia giving an indication of common ancestry of these abilities in frogs but variously pronounced in particular families. We hypothesize that the uncovered proper gaze stabilization during locomotion provided by the higher head compensatory abilities can improve or even enable visual perception of the prey. We interpret this completely novel finding as a possible gyroscopic advantage in a foraging context. We discuss putative consequences of such advanced neuromotor skills for diversification and ecological success of Natatanura group.

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