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Naïve bats discriminate arctiid moth warning sounds but generalize their aposematic meaning

  • Jesse R. Barber
  • , Brad A. Chadwell
  • , Nick Garrett
  • , Barbara Schmidt-French
  • , William E. Conner
  • Wake Forest University
  • Bat Conservation International

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

Naïve red (Lasiurus borealis Müller) and big brown (Eptesicus fuscus Beauvois) bats quickly learn to avoid noxious sound-producing tiger moths. After this experience with a model tiger moth, bats generalize the meaning of these prey-generated sounds to a second tiger moth species producing a different call. Here we describe the three-dimensional kinematic and bioacoustic details of this behaviour, first, as naïve bats learn to deal with an unpalatable model tiger moth and subsequently, as they avoid acoustic mimics. The tiger moths' first clicks influenced the bats' echolocation behaviour and the percentage of interactions that included terminal buzzes was associated with capture and investigatory behaviour. When the mimic was introduced, the bats decreased both their minimum distance to the tiger moth and the time at which they broke off their attack compared with their exposure to the model on the night before. These kinematic signatures closely match the bats' behaviour on their first night of experience with the model. Minimum distances and time of pursuit cessation increased again by the last night of the mimic's presentation. These kinematic and bioacoustic results show that although naïve bats generalize the meaning of aposematic tiger moth calls, they discriminate the prey-generated signals as different and investigate. Extrapolating to experienced bats, these results suggest that acoustic predators probably exert potent and fine-scaled selective forces on acoustic mimicry complexes.

Original languageEnglish
Pages (from-to)2141-2148
Number of pages8
JournalJournal of Experimental Biology
Volume212
Issue number14
DOIs
StatePublished - 15 Jul 2009

Keywords

  • Acoustic mimicry
  • Arctiidae
  • Bats
  • Bioacoustics
  • Kinematics
  • Moths

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