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2009 | 11 | 1 |

Tytuł artykułu

Echolocation calls of bats from Madeira Island: acoustic characterization and implications for surveys

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Acoustic surveys represent a powerful tool to assess bat distribution and habitat preferences and are widely applicable to monitoring and conservation schemes. However, their correct application requires the development of robust and reliable identification procedures. Little information is available on the bats of Madeira Island (Portugal), particularly their ecological requirements, distribution and population trends, and proper guidelines for their monitoring and conservation have yet to be defined. In this study, we present the first analysis of echolocation calls from species occurring on the island to provide a tool for bat identification during acoustic surveys. Seven hundred and ninety one time-expanded recordings of search phase echolocation calls in cluttered and uncluttered habitats of the Macaronesia endemic pipistrelle Pipistrellus maderensis, Madeira Leisler’s bat Nyctalus leisleri verrucosus and grey long-eared bat Plecotus austriacus were analysed and an acoustic repertoire with their temporal and spectral features is described. Pipistrellus maderensis was easily identified based only on peak frequency while Plecotus austriacus and N. leisleri verrucosus showed frequency overlap in cluttered backgrounds. Discriminant function analysis was applied to calls of Plecotus austriacus and N. l. verrucosus resulting in a correct overall classification of 96.7% of calls, with a function based on start frequency, end frequency, duration and interpulse interval. This work provides the first description of Pipistrellus maderensis and N. 1. verrucosus echolocation calls and offers a basis for future bat surveys in order to encourage the development of locally customized conservation strategies.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

11

Numer

1

Opis fizyczny

p.183-190,fig.,ref.

Twórcy

autor
  • Campus da Penteada, Department of Biology, University of Madeira, 9000-390 Funchal, Portugal
autor
  • Campus da Penteada, Department of Biology, University of Madeira, 9000-390 Funchal, Portugal
  • Centre of Environmental Biology, Faculty of Sciences, University of Lisbon, 1749-016 Lisbon, Portugal

Bibliografia

  • Ahlén, I. 1981. Field identification of bats and survey methods based on sounds. Myotis, 18-19: 128-136.
  • Ahlén, I. 2004. Heterodyne and time-expansion methods for identification of bats in the field and through sound analysis. Pp. 72-79, in Bat echolocation research: tools, techniques and analysis (R. M. Brigham, E. K. V. Kalko, G. Jones, S. Parsons, and H. J. Limpens, eds.). Bat Conservation International, Austin, Texas, 167 pp.
  • Ahlén, I., and H. J. Baagøe. 1999. Use of ultrasound detectors for bat studies in Europe: experiences from field identification, surveys, and monitoring. Acta Chiropterologica, 1: 137-150.
  • Aldridge, H. D., and I. L. Rautenbach. 1987. Morphology, echolocation and resource partitioning in insectivorous bats. Journal of Animal Ecology, 56: 763-778.
  • Armstrong, K., and R. Coles. 2007. Echolocation call frequency differences between geographic isolates of Rhinonycteris aurantia (Chiroptera: Hipposideridae): implications of nasal chamber size. Journal of Mammalogy, 88: 94-104.
  • Báez, M. 1993. Origins and affinities of the fauna of Madeira. Boletim do Museu Municipal do Funchal, 2: 9-40.
  • Baker, M., 2006. Differentiation of matting vocalizations in birds: acoustic features in mainland and island populations and evidence of habitat-dependent selection on songs. Ethology, 112: 757-771.
  • Barataud, M. 1996. The world of bats. Sittelle Publishers, Mens, France, 47 pp.
  • Berger-Tal, O., R. Berger-Tal, C. Korine, M. W. Holderied, and M. B. Fenton. 2008. Echolocation calls produced by Kuhl’s pipistrelles in different flight situations. Journal of Zoology (London), 274: 59-64.
  • Cabral, J., J. Almeida, P. Almeida, T. Dellinger, A. Ferrand, M. Oliveira, J. Palmeirim, Queiroz, L. Rogado, and M. Santos-Reis (eds.). 2005. Livro Vermelho dos Vertebrados de Portugal. Instituto da Conservação da Natureza, Lisboa, 660 pp.
  • Carlquist, S. 1974. Island biology. Columbia University Press, New York, 656 pp.
  • Carvalho, A. M., and J. M. Brandão. 1991. Geologia do Arquipélago da Madeira. Museu Nacional de História Natural da Universidade de Lisboa, Lisboa, 170 pp.
  • Davy, C. M., D. Russo, and M. B. Fenton. 2007. Use of native woodlands and traditional olive groves by foraging bats on a mediterranean island: consequences for conservation. Journal of Zoology (London), 273: 397-405.
  • Dietz, C., and O. von Helversen. 2004. Illustrated identification key to the bats of Europe. Electronic publication. (http://www.uni-tuebingen.de/tierphys/Kontakt/mitarbeiter _seiten/ dietz.htm).
  • Fenton, M. B. 1990. The foraging behaviour and ecology of animal eating bats. Canadian Journal of Zoology, 68:411-422.
  • Fenton, M., and G. P. Bell. 1981. Recognition of species of insectivorous bats by their echolocation calls. Journal of Mammalogy, 62: 233-243.
  • Frankham, R. 1997. Do island populations have less genetic variability than mainland populations? Heredity, 78: 311-327.
  • Frankham, R., J. Ballou, D. Briscoe and K. McInnes. 2004. A primer of conservation genetics. Cambridge University Press, Cambridge, 234 pp.
  • Hurlbert, S. H. 1984. Pseudoreplication and the design of ecological field experiments. Ecological Monographs, 54: 187-211.
  • Jensen, M. E., and L. A. Miller. 1999. Echolocation signals of the bat Eptesicus serotinus recorded using a vertical microfone array: effect of flight altitude in search signals. Behavioral Ecology and Sociobiology, 47: 60-69.
  • Jones, G., and E. C. Teeling. 2006. The evolution of echolocation in bats. Trends in Ecology and Evolution, 21: 149-156.
  • Jones, G., N. Vaughan, and S. Parsons. 2000. Acoustic identification of bats from directly sampled and time expanded recordings of vocalizations. Acta Chiropterologica, 2: 155-170.
  • Jung, K., E. K. V. Kalko, and O. von Helversen. 2007. Echolocation calls in Central American emballonurid bats: signal design and call frequency alternation. Journal of Zoology (London), 272: 125-137.
  • Juste, J., C. Ibáñez, J. Muñoz, D. Trujillo, P. Benda, A. Karataş, and M. Ruedi. 2004. Mitochondrial phylogeography of the long-eared bats (Plecotus) in the Mediterranean and Atlantic Islands. Molecular Phylogenetics and Evolution, 31: 1114-1126.
  • Kalko, E. K. V., and H.-U. Schnitzler. 1993. Plasticity in the echolocation signals of European pipistrelle bats in search flight: implications for habitat use and prey detection. Behavioral Ecology and Sociobiology, 33: 415-428.
  • Mathias, M. L. 1988. An annoted list of the mammals recorded from the Madeira Islands. Boletim do Museu Municipal do Funchal, 40: 111-137.
  • Obrist, M. K., R. Boesch, and P. F. Flückiger. 2004. Variability in echolocation call design of 26 Swiss bat species: consequences, limits and options for automated field identification with a synergetic pattern recognition approach. Mammalia, 68: 307-322.
  • Palmeirim, J. M. 1990. Bats of Portugal: zoogeography and systematics. The University of Kansas Natural History Museum Miscellaneous Publications, 82: 1-53.
  • Palmeirim, J. M. 1991. A morphometric assessment of the systematic position of the Nyctalus from Azores and Madeira. Mammalia, 55: 381-388.
  • Parsons, S., and G. Jones. 2000. Acoustic identification of twelve species of echolocating bat by discriminant function analysis and artificial neural networks. Journal of Experimental Biology, 203: 2641-2656.
  • Pereira, E. C. N. 1956. Ilhas de Zarco, 2nd edition. Câmara Municipal do Funchal, Funchal, Volume 1, 767 pp.
  • Pestano, J., R. P. Brown, N. M. Suárez, and S. Fajardo. 2003. Phylogeography of pipistrelle-like bats within the Canary Islands, based on mtDNA sequences. Molecular Phylogenetics and Evolution, 26: 56-63.
  • Pinto-Juma, G., P. Simões, S. Seabra, and J. A. Quartau. 2005. Calling song structure and geographic variation in Cicada orni Linnaeus (Hemiptera: Cicadidae). Zoological Studies, 44: 81-94.
  • Presetnik, P., K. Koselj, and M. Zagmajster. 2001. First records of Pipistrellus pygmaeus (Leach, 1825) in Slovenia. Myotis, 39: 29-33.
  • Russo, D., and G. Jones. 2002. Identification of twenty-two bat species (Mammalia: Chiroptera) from Italy by analysis of time-expanded recordings of echolocation calls. Journal of Zoology (London), 258: 91-103.
  • Russo, D., and G. Jones. 2003. Use of foraging habitats by bats in a Mediterranean area determined by acoustic surveys: conservation implications. Ecography, 26: 197- 209.
  • Russo, D., M. Mucedda, M. Bello, S. Biscardi, E. Pidinchedda, and G. Jones. 2007. Divergent echolocation call frequencies in insular rhinolophids (Chiroptera): a case of character displacement? Journal of Biogeography, 34: 2129-2138.
  • Sarmento, A. 1948. Vertebrados da Madeira, 2nd edition. Junta Geral do Distrito Autónomo do Funchal, Funchal, 325 pp.
  • Schnitzler, H.-U., and E. K. V. Kalko. 2001. Echolocation by insect-eating bats. BioScience, 51: 557-569.
  • Schnitzler, H.-U., and E. K. V. Kalko, E. Miller, and A. Surlykke. 1987. The echolocation and hunting behaviour of the bat, Pipistrellus kuhlii. Journal of Comparative Physiology, 161 A: 267-274.
  • Schnitzler, H.-U., C. F. Moss, and A. Denzinger. 2003. From spacial orientation to food acquisition in echolocating bats. Trends in Ecology and Evolution, 18: 386-394
  • Sherwin, R. E., W. L. Gannon, and S. Haymond. 2000. The efficacy of acoustic techniques to infer differential use of habitats by bats. Acta Chiropterologica, 2: 145-153.
  • Spitzenberger, F., P. P. Strelkov, H. Winkler, and E. Haring. 2006. A preliminary revision of the genus Plecotus (Chiroptera, Vespertilionidae) based on genetic and morphological results. Zoologica Scripta, 35: 187-230.
  • Trujillo, D. 1991. Murciélagos de las Isias Canarias. ICONA, Collectión Técnica, Madrid, 167 pp.
  • Waters, D. A., J. Rydell, and G. Jones. 1995. Echolocation call design and limits on prey size: a case study using the aerial hawking bat Nyctalus leisleri. Behavioral Ecology and Sociobiology, 37: 321-328.
  • Zingg, P. E. 1990. Akustische Artidentifikation von Fledermäusen (Mammalia: Chiroptera) in der Schweiz. Revue Suisse de Zoologie, 97: 263-294.

Typ dokumentu

Bibliografia

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