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Australian Journal of Zoology Australian Journal of Zoology Society
Evolutionary, molecular and comparative zoology
RESEARCH ARTICLE

Evolution of hearing in moths: the ears of Oenosandra boisduvalii (Noctuoidea : Oenosandridae)

James H. Fullard
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Department of Biology, University of Toronto at Mississauga, 3359 Mississauga Road North, Mississauga, Ontario, Canada L5L 1C6. Email: jfullard@utm.utoronto.ca

Australian Journal of Zoology 54(1) 51-56 https://doi.org/10.1071/ZO05066
Submitted: 4 November 2005  Accepted: 12 January 2006   Published: 23 March 2006

Abstract

The ears of Oenosandra boisduvalii (Oenosandridae), as a representative of this heretofore unstudied family of moths, were electrophysiologically examined from specimens captured in South Australia. Male and female moths possess ears with two auditory receptor neurons that are similarly sensitive and tuned to the frequencies emitted by sympatric bats, suggesting that both sexes face equal predation pressures from aerially foraging bats. The two-celled ear of this moth supports the independence of the Oenosandridae from its previous affiliation with the Notodontidae, whose single auditory neuron remains a unique character within the Noctuoidea. The general insensitivity of its ear, however, resembles that of the notodontid moth and is surprising considering the diversity of insectivorous bats that forms its predation potential.


Acknowledgments

I thank Lorraine and Trent Jenkins (Port Lincoln) and Michelle Venance for their help in the field and Jim Miller (American Museum of Natural History), Don LaFontaine (Agriculture and Agri-Food Canada) and two anonymous reviewers for their helpful comments on the manuscript. Peter Wall (SeM Corp) developed the sound-generating software. This study was funded by a Discovery Grant from the Natural Sciences and Engineering Council of Canada.


References

Boyan, G. S. (1993). Another look at insect audition: the tympanic receptors as an evolutionary specialization of the chordotonal system. Journal of Insect Physiology 39, 187–200.
Crossref | GoogleScholarGoogle Scholar | Common I. F. B. (1990). ‘Moths of Australia.’ (Melbourne University Press: Melbourne.)

Eggers, F. (1919). Das thoracale bitympanale Organ einer Gruppe der Lepidoptera Heterocera. Zoologische Jahrbücher (Anatomie) 41, 273–376.
Fullard J. H. (1998). Sensory coevolution of moths and bats. In ‘Comparative Hearing: Insects’. (Eds R. R. Hoy, A. N. Popper and R. R. Fay.) pp. 279–326. (Springer-Verlag: New York.)

Fullard, J. H. , Dawson, J. W. , Otero, L. D. , and Surlykke, A. (1997). Bat-deafness in day-flying moths (Lepidoptera, Notodontidae, Dioptinae). Journal of Comparative Physiology. A: Sensory, Neural, and Behavioral Physiology 181, 477–483.
Crossref | GoogleScholarGoogle Scholar | Kiriakoff S. G. (1970). Familia Thaumetopoeidae. In ‘Genera Insectorum, Lepidoptera’. (Ed. P. Wytsman.) Fasc. 219.

Kitching I. J., and Rawlins J. E. (1998). Noctuoidea. In ‘Handbook of Zoology. Lepidoptera, Vol.1: Systematics and Evolution’. (Ed. N. P. Kristensen.) pp. 355–401. (W. de Gruyter: Berlin.)

Lewis, F. , and Fullard, J. H. (1996). Neurometamorphosis of the ear in the gypsy moth, Lymantria dispar and its homologue in the earless forest tent caterpillar moth, Malacosoma disstria. Journal of Neurobiology 31, 245–262.
Crossref | GoogleScholarGoogle Scholar | PubMed | Nielsen E. S. (1989). Phylogeny of major lepidopteran groups. In ‘The Hierarchy of Life’. (Eds B. Fernholm, K. Bremer and H. Jörnvall.) pp. 281–294. (Elsevier: Amsterdam.)

Nielsen E. S., and Common I. F. B. (1991). Lepidoptera. In ‘The Insects of Australia’. 2nd edn. (Ed. CSIRO.) pp. 817–915. (Melbourne University Press: Melbourne.)

Nüesch, H. (1957). Die Morphology des Thorax von Telea polyphemus Cr. (Lepid.). II. Nervensystem. Zoologische Jahrbücher (Anatomie) 75, 615–642.
Pennay M., Law B., and Reinhold L. (2004). ‘Bat Calls of New South Wales: Region Based Guide to the Echolocation Calls of Insectivorous Bats.’ (New South Wales Department of Environment and Conservation: Hurstville.)

Roeder K. D. (1967). ‘Nerve Cells and Insect Behavior.’ (Harvard University Press: Cambridge, MA.)

Roeder K. D. (1974). Acoustic sensory responses and possible bat-evasion tactics of certain moths. In ‘Proceedings of the Canadian Society of Zoologists Annual Meeting’. (Ed. M. D. B. Burt.) pp. 71–78. (University of New Brunswick Press: Fredericton, NB.)

Roeder, K. D. , and Treat, A. E. (1957). Ultrasonic reception by the tympanic organ of noctuid moths. Journal of Experimental Zoology 134, 127–157.
Crossref | GoogleScholarGoogle Scholar | PubMed |

Roff, D. A. (1990). The evolution of flightlessness in insects. Ecological Monographs 60, 389–421.


Soutar, A. , and Fullard, J. H. (2004). Nocturnal anti-predator adaptations in Nearctic eared and earless Lepidoptera. Behavioral Ecology 15, 1016–1022.
Crossref | GoogleScholarGoogle Scholar |

Speidel, W. , Fänger, H. , and Naumann, C. M. (1996). The phylogeny of the Noctuidae (Lepidoptera). Systematic Entomology 21, 219–251.
Crossref | GoogleScholarGoogle Scholar |

Stapells, D. R. , Picton, T. W. , and Smith, A. D. (1982). Normal hearing thresholds for clicks. Journal of the Acoustical Society of America 72, 74–79.
Crossref | GoogleScholarGoogle Scholar | PubMed |

Surlykke, A. (1984). Hearing in notodontid moths: a tympanic organ with a single auditory neurone. Journal of Experimental Biology 113, 323–335.


Surlykke, A. , and Miller, L. A. (1982). Central branchings of three sensory axons from a moth ear (Agrotis segetum, Noctuidae). Journal of Insect Physiology 28, 357–364.
Crossref | GoogleScholarGoogle Scholar |

Surlykke, A. , Filskov, M. , Fullard, J. H. , and Forrest, E. (1999). Auditory relationships to size in noctuid moths: bigger is better. Die Naturwissenschaften 86, 238–241.
Crossref | GoogleScholarGoogle Scholar |

Turner, A. J. (1903). Revision of Australian Lepidoptera. Proceedings of the Linnean Society of New South Wales 18, 42–92.


Turner, A. J. (1922). Revision of Australian Lepidoptera. Saturniadae, Bombycidae, Eupterotidae, Notodontidae. Proceedings of the Linnean Society of New South Wales 47, 348–390.


Weller, S. J. , Pashley, D. P. , Martin, J. A. , and Constable, J. L. (1994). Phylogeny of noctuoid moths and the utility of combining independent nuclear and mitochondrial genes. Systematic Biology 43, 194–211.


Yack, J. E. , Scudder, G. G. E. , and Fullard, J. H. (1999). Evolution of the metathoracic tympanal ear and its mesothoracic homologue in the Macrolepidoptera (Insecta). Zoomorphology 119, 93–103.
Crossref | GoogleScholarGoogle Scholar |