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Type: Articles
Published: 2012-07-26
Page range: 43–57
Abstract views: 62
PDF downloaded: 1

The stream-dwelling larva of the Ruwenzori River Frog, Amietia ruwenzorica, its buccal cavity and pathology of chytridiomycosis

Johannes Gutenberg University, Department of Zoology, Saarstraße 21, 55099 Mainz, Germany Trier University, Department of Biogeography, 54286 Trier, Germany
Trier University, Department of Biogeography, 54286 Trier, Germany
Trier University, Department of Biogeography, 54286 Trier, Germany
University of the Western Cape, Biodiversity and Conservation Biology, Private Bag X17, Bellville 7535, South Africa
Plot 83, Tufnel Drive, Kamwokya, P.O. Box 27034, Kampala, Uganda
Trier University, Department of Geology, 54286 Trier, Germany
University of Koblenz-Landau, Institute of Integrative Natural Sciences, Department of Biology, Universitätsstraße 1, 56070 Koblenz, Germany
Trier University, Department of Biogeography, 54286 Trier, Germany
Amphibia Batrachochytrium dendrobatidis DNA barcoding larval morphology Pyxicephalidae Uganda

Abstract

Tadpoles of Amietia ruwenzorica (Pyxicephalidae, Cacosterninae) were collected in the Ruwenzori Mountains, Uganda(identified by DNA barcoding). The ventrally directed enlarged oral disc with a high number of labial tooth rows (LTRF9(4)/9(1)) and the narrow tail with robust caudal musculature characterise them as stream-dwellers. We name this mor-photype the 'common or standard type of stream-adaptation', because special additional adhesive organs are missing in A.ruwenzorica. The uniserially arranged oral teeth of the spoon-shaped type with 16 to 18 cusps per tooth are known fromother anuran larvae, especially from pyxicephalids. The buccal morphology resembles generalized tadpoles with some re-strictions and all features of a suspension-feeding pyxicephalid larva are present in A. ruwenzorica. This leads us to theconclusion that tadpoles of this species are suspension-feeders scraping periphyton off the surface and ingesting bottomand deposit particles. Histopathological and scanning electron microscopy investigations demonstrated the presence of theamphibian chytrid fungus (Batrachochytrium dendrobatidis) in part of our material resulting in signs of chytridiomycosis indicated by the loss of labial teeth and by corrosion of jaw sheaths.

References

  1. Altig, R. (1970) A key to the tadpoles of the continental United States and Canada. Herpetologica, 26, 180–207.

    Altig, R. (2007) Comments on the description and evaluations of tadpole mouthpart anomalies. Herpetological Conservation and Biology, 2, 1–4.

    Altig, R. & Channing, A. (1993) Hypothesis: functional significance of colour and pattern of anuran tadpoles. Herpetological Journal, 3, 73–75.

    Altig, R. & Johnston, G. F. (1989) Guilds of anuran larvae: relationships among developmental modes, morphologies and habitats. Herpetological Monographs, 3, 81–109.

    Altig, R. & McDiarmid, R.W. (1999a) Research – material and techniques. In: Altig, R. & McDiarmid, R. W. (Eds.), Tadpoles, the Biology of Anuran Larvae. The University of Chicago Press, Chicago and London, pp. 7–23.

    Altig, R. & McDiarmid, R.W. (1999b) Body plan, development and morphology. In: Altig, R. & McDiarmid, R. W. (Eds.), Tadpoles, the Biology of Anuran Larvae. The University of Chicago Press, Chicago and London, pp. 24–51.

    Altig, R. & McDiarmid, R.W. (1999c) Diversity – familial and generic characterizations. In: Altig, R. & McDiarmid, R. W. (Eds.), Tadpoles, the Biology of Anuran Larvae. The University of Chicago Press, Chicago and London, pp. 295–337.

    Altig, R. & Pace W.L. (1974) Scanning electron photomicrographs of tadpole labial teeth. Journal of Herpetology 8, 247–251.

    Anstis, M (2002) Tadpoles of South-Eastern Australia: A Guide with Keys. New Holland Publishers, Sydney, Auckland, London. Cape Town, 281 pp.

    Benson, D.A., Karsch-Mizrachi, I., Lipman, D.J., Ostell, J. & Wheeler, D.L. (2004) GenBank: update. Nucleic Acids Research 32, database issue, D23–D26.

    Berger, L., Hyatt, D.A., Speare, R. & Longcore, J.E. (2005) Life cycle stages of the amphibian chytrid Batrachochytrium dendrobatidis. Disease of Aquatic Organisms, 68, 51–63.

    Cadle J.E. & Altig, R. (1991) Two lotic tadpoles from the Andes of Southern Peru: Hyla armata and Bufo veraguensis, with notes on the call of Hyla armata (Amphibia: Anura: Hylidae and Bufonidae). Studies on Neotropical Fauna and Environment, 26, 45–53.

    Channing, A. (2001) Amphibians of Central and Southern Africa. Protea Bookhouse, Pretoria, 470 pp.

    Channing, A. & Howell, K.M. (2006) Amphibian of East Africa. Chimaira, Frankfurt am Main, 418 pp.

    Drake, D.L., Altig, R., Grace, J.B. & Walls, S.C. (2007) Occurrence of oral deformities in larval anurans. Copeia, 2007, 449–458.

    Duellman, W.E. (1970) The Hylid Frogs of Middle America. Monograph of the Museum of Natural History, The University of Kansas, Lawrence, 2, 1–753.

    Duellmann, W.E. & Trueb, L. (1986) Biology of Amphibians. McGraw-Hill Book Company New York, St. Louis, San Francisco, 670 pp.

    Du Preez, L. & Carruthers, V. (2009) A Complete Guide to the Frogs of Southern Africa. Struik Nature, Cape Town, 488 pp.

    Fisher, M.C., Garner, T.W.J. & Walker, S.F. (2009) Global emergence of Batrachochytrium dendrobatidis and amphibian chytridiomycosis in space, time, and host. Annual Review of Microbiology, 63, 291–310.

    Formas, J.R., Dìaz, N.F. & Valencia, J. (1980) The tadpole of the Chilean frog Insuetophrynus acarpicus. Herpetologica, 36, 316–318.

    Frost, D.R., Grant, T., Faivovich, J., Bain, R.H., Haas, A., Haddad, C.F.B., De Sa, R.O., Channing, A., Wilkinson, M., Donnellan, S.C., Raxworthy, C.J., Campbell, J.A., Blotto, B.L., Moler, P., Drewes, R.C., Nussbaum, R.A., Lynch, J.D., Green, D.M. & Wheeler W.C. (2006) The amphibian tree of life. Bulletin American Museum of Natural History, 297, 1–361.

    Frost, D.R. (2011) Amphibian Species of the World: an Online Reference. Version 5.5. American Museum of Natural History, New York, USA. Available from http://research.amnh.org/vz/herpetology/amphibia/ (accessed 1 October2011)

    Gosner, K.L. (1959) Systematic variations in tadpole teeth with notes on food. Herpetologica, 15, 203–210.

    Gosner, K.L. (1960) A simplified table for staging anuran embryos and larvae with notes on identification. Herpetologica, 16, 183–190.

    Hoff, K., Blaustein, A.R., McDiarmid, R.W. & Altig, R. (1999) Behavior – interactions and their consequences. In: Altig, R. & McDiarmid, R. W. (Eds.), Tadpoles, the Biology of Anuran Larvae. The University of Chicago Press, Chicago and London, pp. 215–239.

    Kielgast, J., Rödder, D., Veith, M. & Lötters, S. (2010) Widespread occurrence of the amphibian chytrid fungus in Kenya. Animal Conservation, 13, Supplement 1, 36–43.

    Lamotte, M. & Lescure J. (1989a) Les têtards rhéophiles et hygropétriques de l’Ancien et du Nouveau monde. I. Annales des Sciences Naturelles, Zoologie, 10, 111–122.

    Lamotte, M. & Lescure J. (1989b) Les têtards rhéophiles et hygropétriques de l’Ancien et du Nouveau monde. II. Annales des Sciences Naturelles, Zoologie, 10, 125–144.

    Laurent, R.F. (1972) Amphibiens. Exploration du Parc National des Virungas, 22, 1–125, pls I–XI.

    Liu, C.C. (1950) Amphibians of western China. Fieldiana. Zoology Memoirs, 2, 1–400.

    Longcore, J.E. & Pessier, A.P. (1999) Batrachochytrium dendrobatidis gen. et sp. nov., a chytrid pathogenic to amphibians. Mycologia, 91, 219–227.

    Lötters, S., Reichle, S., Faivovich, J. & Bain, R.H. (2005) The stream-dwelling tadpole of Hyloscirtus charazani (Anura: Hylidae) from Andean Bolivia. Studies on Neotropical Fauna and Environment, 40, 181–185.

    Lötters, S., Kielgast, J., Bielby, J., Schmidtlein, S., Bosch, J., Veith, M., Walker, S., Fisher, M.C. & Rödder, D. ("2009" 2010) The link between rapid enigmatic amphibian decline and the globally emerging chytrid fungus. EcoHealth, 6, 358–372.

    Marantelli, G., Berger, L., Speare, R. & Keegan, L. (2004) Distribution of the amphibian chytrid Batrachochytrium dendrobatidis and keratin during tadpole development. Pacific Conservation Biology, 10, 173–179.

    Noble, G.K. (1954) The Biology of the Amphibia. Dover Publications, New York, 577 pp.

    Orton, G.L. (1953) The systematics of vertebrate larvae. Systematic Zoology, 2, 63–75.

    Orton, G.L. (1957) The bearing of larval evolution on some problems in frog classification. Systematic Zoology, 6, 79–86.

    Savage, R.M. (1952) Ecological, physiological and anatomical observations on some species of anuran tadpoles. Proceedings of the Zoological Society of London, 122, 467–514

    Schick, S., Kielgast, J., Rödder, D., Muchai, V., Burger, M. & Lötters, S. (2010) New species of reed frog from the Congo basin with discussion of paraphyly in Cinnamon-belly reed frogs. Zootaxa, 2501, 23–36.

    Seale, D.B. (1980) Influence of amphibian larvae on primary production, nutrient flux, and competition in a pond ecosystem. Ecology, 61, 1531–1550.

    Seale, D.B. & Beckvar, H. (1980) The competition ability of anuran larvae (genera: Hyla, Bufo, and Rana) to ingest suspended blue-green algae. Copeia, 1980, 495–503.

    Seale, D.B & Wassersug, R.J. (1979) Suspension feeding dynamics of anuran larvae related to their functional morphology. Oecologia, 39, 259–272.

    Symonds, E.P., Hines, H.B., Bird, P.S., Morton, J.M. & Mills, P.C. (2007) Surveillance for Batrachochytrium dendrobatidis using Mixophyes (Anura: Myobatrachidae) larvae. Journal of Wildlife Diseases, 43, 48–60.

    Starrett, P.H. (1973) Evolutionary patterns in larval morphology. In: Vial, J. L. (Ed.), Evolutionary Biology of the Anurans. University of Missouri Press, Columbia, Missouri, pp. 251–271.

    Stuart, S.N., Hoffmann, M., Chanson, J.S., Cox, N.A., Berridge, R.J., Ramani, P. & Young, B.E. (2008) Threatened Amphibians of the World. Lynx Editions, IUCN, Conservation International, Barcelona, 758 pp.

    Thomas, M., Raharivololoniaina, L., Glaw, F., Vences, M. & Vieites, D.R. (2005): Montane tadpoles in Madagascar: molecular identification and description of the larval stages of Mantidactylus elegans, Mantidactylus madecassus, and Boophis laurenti from the Andringitra Massif. Copeia, 2005, 1, 174-183.

    Tyler, M.J., Davies, M. & Watson, G.F (1993) General description and definition of the class Amphibia. In: Glasby, C. G., Ross, G. J. B. & Beesley, P. L. (Eds.), Fauna of Australia. AGPS, Canberra, pp. 1–14.

    Vences, M., Thomas, M., van der Meijden, A., Chiari, Y. & Vieites, D.R. (2005) Comparative performance of the 16S rRNA gene in DNA barcoding of amphibians. Frontiers in Zoology, 2, 1–12.

    Viertel, B. (1982) The oral cavities of Central European Anuran Larvae (Amphibia), Morphology, Ontogenesis and generic diagnosis. Amphibia-Reptilia, 3, 327–360.

    Viertel, B. (1984) Habit, melanin pigmentation, oral disc, oral cavity and filter apparatus of the larvae of Baleaphryne muletensis. In: Hemmer, H. & Alcover, J. A. (Eds.), História Biológica del Ferreret (Life History of the Mallorcan Midwife Toad). Editorial Moll, Ciutat de Mallorca, Palma, pp. 21–43.

    Viertel, B. (1985) The filter apparatus of Rana temporaria and Bufo bufo larvae (Amphibia, Anura). Zoomorphology, 105, 345–355.

    Viertel, B. (1990) Suspension feeding of anuran larvae at low concentrations of Chlorella algae (Amphibia, Anura). Oecologia, 85, 167–177.

    Viertel, B. (1992) Functional response of suspension feeding anuran larvae to different particle sizes at low concentrations (Amphibia). Hydrobiologica, 234, 151–173.

    Wassersug, R.J. (1976) Oral morphology of anuran larvae: terminology and general description. Occasional Papers of the Museum of Natural History, The University of Kansas, 48, 1–23.

    Wassersug, R. (1980) Internal oral features from eight anuran families: functional, systematic ecolutionary and ecological considerations. University of Kansas, Museum of Natural History, Miscellaneous Publications, 68, 1–146.

    Wells, K.D. (2007) The Ecology and Behavior of Amphibians. The University of Chicago Press, Chicago and London, 1148 pp.