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Bite force, cranial morphometrics and size in the fishing bat Myotis vivesi (Chiroptera: Vespertilionidae).

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Abstract:

Fish-eating in bats evolved independently in Myotis vivesi (Vespertillionidae ) and Noctilio leporinus (Noctilionidae). We compared cranial morphological characters and bite force between these species to test the existence of evolutionary parallelism in piscivory. We collected cranial distances of M. vivesi, two related insectivorous bats (M. velifer and M. keaysi), two facultatively piscivorous bats (M. daubentonii and M. capaccinii), and N. leporinus to test for differences among the six species, morphometric data was analyzed applying multivariate methods. We also measured bite force in M. vivesi and evaluated if this value was well predicted by its cranial size. Both piscivorous species were morphologically different from the facultatively piscivorous and insectivorous species, and skull size had a significant contribution to this difference. However, we did not find morphological and functional similarities that could be interpreted as parallelisms between M. vivesi and N. leporinus. These two piscivorous species differed significantly in cranial measurements and in bite force. Bite force measured for M. vivesi was well predicted by skull size. Piscivory in M. vivesi might be associated to the existence of a vertically displaced temporal muscle and an increase in gape angle that allows a moderate bite force to process food.

Tópico:

Bat Biology and Ecology Studies

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Citations: 4
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Información de la Fuente:

SCImago Journal & Country Rank
FuenteRevista de Biología Tropical
Cuartil año de publicaciónNo disponible
Volumen66
Issue4
Páginas1614 - 1628
pISSN0034-7744
ISSNNo disponible

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