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Notodiscus (Charopidae) on South Georgia: some implications of shell size, shell shape, and site isolation in a singular sub-Antarctic land snail

Published online by Cambridge University Press:  15 April 2011

P.J.A. Pugh*
Affiliation:
Department of Life Sciences, Anglia Ruskin University, East Road, Cambridge CB1 1PT, UK
R.I. Lewis Smith
Affiliation:
Centre for Antarctic Plant Ecology and Diversity, Alton Road, Moffat DG10 9LB, UK

Abstract

Multivariate analysis shows that shells of Notodiscus sp. (Charopidae: Pulmonata) reported from South Georgia are smaller and proportionately taller than, but otherwise similar to, populations of Notodiscus hookeri (Reeve) from Iles Crozet and Iles Kerguelen. The origin of this solitary, and spatially limited, South Georgia population is enigmatic. It is confined to a remarkably small coastal lowland site which was glaciated at Last Glacial Maximum, precluding a Tertiary relict origin, and on the leeward north-east coast, ruling out post-glacial ocean rafting. The site is close to the King Edward Point settlement, yet the absence of any logistics connections with the Iles Crozet or Iles Kerguelen mitigates against anthropogenic introduction. The close proximity of the population to nests of blue-eyed shag (Phalacrocorax atriceps), Dominican gull (Larus dominicanus) and light-mantled sooty albatross (Phoebetria palpebrata) could imply the snail was originally introduced to South Georgia via these ocean transiting seabirds.

Type
Biological Sciences
Copyright
Copyright © Antarctic Science Ltd 2011

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References

Barker, G.M. 1979. The introduced slugs of New Zealand. New Zealand Journal of Zoology, 6, 411437.Google Scholar
Block, W. 1984. Terrestrial microbiology, invertebrates and ecosystems. In Laws, R.M., ed. Antarctic ecology. Vol. 1. London: Academic Press, 163236.Google Scholar
Bonner, W.N. 1968. The fur seal of South Georgia. British Antarctic Survey Scientific Reports, No. 56, 81 pp.Google Scholar
Brandjes, G.J., Block, W. Ernsting, G. 1999. Spatial dynamics of two introduced species of carabid beetles on the sub-Antarctic island of South Georgia. Polar Biology, 21, 326334.CrossRefGoogle Scholar
Cadima, J.F.C.L. Jolliffe, I.T. 1996. Size- and shape-related principal component analysis. Biometrics, 52, 710716.Google Scholar
Clapperton, C.M., Sugden, D.E., Birnie, J. Wilson, M.J. 1989. Late-glacial and Holocene glacier fluctuations and environmental change on South Georgia, Southern Ocean. Quaternary Research, 31, 210228.CrossRefGoogle Scholar
Convey, P., Gibson, J.A.E., Hillenbrand, C.-D., Hodgson, D.A., Pugh, P.J.A., Smellie, J.L. Stevens, M.I. 2008. Antarctic terrestrial life - challenging the history of the frozen continent? Biological Reviews, 83, 103117.CrossRefGoogle ScholarPubMed
Convey, P., Stevens, M.I., Hodgson, D.A., Smellie, J.L., Hillenbrand, C.-D., Barnes, D.K.A., Clarke, A., Pugh, P.J.A., Linse, K. Cary, S.C. 2009. Exploring biological constraints on the glacial history of Antarctica. Quaternary Science Reviews, 28, 30353048.CrossRefGoogle Scholar
Cooper, J. Ryan, P.G. 1994. Management plan for the Gough Island Wildlife Reserve. Edinburgh, Tristan da Cunha: Government of Tristan da Cunha, 96 pp.Google Scholar
Dall, W.H. 1876. Mollusks. Contributions to the Natural History of Kerguelen Island made in connection with the United States Transit-of-Venus Expedition, 1874-75. Bulletin of the United States National Museum, 3, 1122.Google Scholar
Dalziel, I.W.D. 1984. Tectonic evolution of a forearc terrain, Southern Scotia Ridge, Antarctica. Geological Society of America Special Paper, 200, 132.Google Scholar
Dalziel, I.W.D., Dott, R.H., Winn, R.D. Bruhn, R.L. 1975. Tectonic relations of South Georgia Island to the southernmost Andes. Bulletin of the Geological Society of America, 86, 10341040.2.0.CO;2>CrossRefGoogle Scholar
Dell, R.K. 1964. Land snails from Subantarctic islands. Transactions of the Royal Society of New Zealand, 4, 167173.Google Scholar
Ernsting, G., Block, W., Macalister, H.E. Todd, C.M. 1995. The invasion of the carnivorous carabid beetle Trechisibus antarcticus on South Georgia (sub-Antarctic) and its effect on the endemic herbivorous beetle Hydromedion spasutum (sic). Oecologia, 103, 2442.Google Scholar
Ernsting, G., Brandjes, G.J., Block, W. Isaaks, J.A. 1999. Life history consequences for a subantarctic beetle: evaluating the contribution of direct and indirect effects. Journal of Animal Ecology, 68, 741752.CrossRefGoogle Scholar
Falla, R.A. 1960. Ocean birds as dispersal agents. Proceedings of the Royal Society, B152, 655659.Google Scholar
Giret, A. 1987. Geologie des Terres Australes Francaises. Comité National Française des Recherches Antarctiques, 58, 1741.Google Scholar
Gittenberger, E., Groenberg, D.S.J., Kokshoorn, B. Preece, R.C. 2006. Molecular trails from hitch-hiking snails. Nature, 439, 409.Google Scholar
Harrison, P. 1983. Seabirds, an identification guide. Boston, MA: Houghton Mifflin, 448 pp.Google Scholar
Headland, R. 1984. The island of South Georgia. Cambridge: Cambridge University Press, 293 pp.Google Scholar
Holdgate, M.W. 1965. The fauna of the Tristan da Cunha Islands. Part III. Philosophical Transactions of the Royal Society of London, B249, 361402.Google Scholar
Kovach, W.L. 1999. MVSP - A Multi-Variate Statistical Package for Windows, version 3.1. Pentraeth: Kovach Computing Services.Google Scholar
Madec, L. Bellido, A. 2007. Spatial variation of shell morphometrics in the subantarctic land snail Notodiscus hookeri from Crozet and Kerguelen islands. Polar Biology, 30, 15711578.Google Scholar
Martins, A.M.F. 1999. Evolution and distribution of the terrestrial molluscs of the Azores. Bulletin of the Malacological Society of London, 33, 56.Google Scholar
Nur, A. Ben-Avraham, Z. 1982. Oceanic plateaus, the fragments of continents, and mountain building. Journal of Geophysical Research, 87, 36443661.Google Scholar
Palmer, M. 2008. Ordination webpage. http://ordination.okstate.eduGoogle Scholar
Powell, A.W.B. 1960. Antarctic and subantarctic Mollusca. Records of the Auckland Institute and Museum, 5, 117193.Google Scholar
Preece, R.C. 1995. Systematic review of the land snails of the Pitcairn Islands. Biological Journal of the Linnean Society of London, 56, 273307.CrossRefGoogle Scholar
Preece, R.C. 2001. Introduced land molluscs on the islands of the Tristan da Cunha–Gough group (South Atlantic). Journal of Conchology, 37, 253259.Google Scholar
Pugh, P.J.A. 1997. Acarine colonisation of Antarctica and the islands of the Southern Ocean: the role of zoohoria. Polar Record, 33, 113122.CrossRefGoogle Scholar
Pugh, P.J.A. 2003. Have mites (Acarina: Arachnida) colonised Antarctica and the islands of the Southern Ocean via air currents? Polar Record, 39, 239244.Google Scholar
Pugh, P.J.A. Convey, P. 2000. Scotia Arc Acari: antiquity and origin. Zoological Journal of the Linnean Society of London, 130, 207217.CrossRefGoogle Scholar
Pugh, P.J.A. Scott, B. 2002. Biodiversity and biogeography of non-marine Mollusca on the islands of the Southern Ocean. Journal of Natural History, 36, 927952.CrossRefGoogle Scholar
Rees, W.J. 1965. The aerial dispersal of Mollusca. Proceedings of the Malacological Society of London, 36, 269282.Google Scholar
Smith, B.J. Djajasasmita, M. 1988. The land molluscs of the Krakatau Islands, Indonesia. Philosophical Transactions of the Royal Society of London, B323, 379400.Google Scholar
Smith, B.J. Stanisic, J. 1998. Pulmonata. In Beesley, P.L., Ross, G.J.B. & Wells, A., eds. Mollusca: the southern synthesis, fauna of Australia, Vol. 5. Melbourne: CSIRO Publishing, 10371125.Google Scholar
Smith, R.I.L. Walton, D.W.H. 1975. South Georgia, subantarctic. Ecological Bulletins, 20, 399423.Google Scholar
Smith, V.R. 1992. Terrestrial slug recorded from sub-Antarctic Marion Island. Journal of Molluscan Studies, 58, 8081.Google Scholar
Solem, A. 1968. The subantarctic land snail, Notodiscus hookeri (Reeve, 1854) (Pulmonata, Endodontidae). Proceedings of the Malacological Society of London, 38, 251265.Google Scholar
Tanner, P.G.W. 1982. Geological evolution of South Georgia. In Craddock, C., ed. Antarctic geoscience. Madison, WI: University of Wisconsin Press, 167176.Google Scholar
Tingey, R.J. 1991. The geology of Antarctica. Oxford: Clarendon Press, 680 pp.Google Scholar
Vagvolgyi, J. 1975. Body size, aerial dispersal, and the origin of the Pacific land snail fauna. Systematic Zoology, 24, 465488.CrossRefGoogle Scholar
Van Zinderen Bakker, E.M. 1971. Introduction. In Van Zinderen Bakker Sr, E.M., Winterbottom, J.M. & Dyer, R.A., eds. Marion and Prince Edward Islands. Report on the South African Biological & Geological Expedition 1965–1966. Cape Town: A.A. Balkema, 115.Google Scholar