Use este identificador para citar ou linkar para este item: https://repositorio.inpa.gov.br/handle/1/18974
Título: Experimental assessment of turtle predation on larval anurans
Autor: Gómez-Mestre, Iván
Keller, Claudia
Palavras-chave: Amphibian
Palatability
Predator-prey Interaction
Prey Size
Size Distribution
Survivorship
Turtle
Amphibia
Anura
Bufo
Bufo Calamita
Bufo Calamita
Emys
Emys Orbicularis
Emys Orbicularis
Hyla
Hyla Meridionalis
Hyla Meridionalis
Mauremys
Mauremys Leprosa
Mauremys Leprosa
Pelobates
Pelobates Cultripes
Pelobates Cultripes
Rana Perezi
Rana Perezi
Reptilia
Testudines
Vertebrata
Data do documento: 2003
Revista: Copeia
É parte de: Volume 2, Pags. 349-356
Abstract: The effect of predation by large non-gape-limited vertebrates on the survivorship and size distribution of larvae of four anuran species was assessed using two syntopic freshwater turtle species, Emys orbicularis and Mauremys leprosa. Predator species and predator sex within species were used as treatments in replicated, factorial experiments for predation trials on tadpoles of Bufo calamita, Hyla meridionalis, Rana perezi, and Pelobates cultripes. Tadpole consumption rates were significantly higher for the carnivorous E. orbicularis than for M. leprosa. Rana perezi tadpoles were the least consumed, whereas P. cultripes and H. meridionalis had the lowest survivorship rates, being relatively easier to catch than R. perezi. Significant size selection occured for larger tadpoles of P. cultripes, whereas predation upon R. perezi tended to concentrate on the smaller size classes. The results point to an overall tendency of turtles to predate upon large tadpoles, yet the outcome of size selection by large vertebrates may depend on phenotypic traits that enhance the escape potential of tadoles. Mauremys leprosa had a high rejection rate of tadpoles, suggesting a higher sensitivity to unpalatability as compared to E. orbicularis, especially with relation to R. perezi. The results indicate that the effect of unpalatability as a predation deterrent may vary even among taxonomically close predator species.
DOI: 10.1643/0045-8511(2003)003[0349:EAOTPO]2.0.CO;2
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