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Editorial

The potential of palynology in fossil bat-dung from Arnhem Cave, Namibia

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REFERENCES

  • Alcover, J.A., Pérez-Obiol, R., Yll, E.I. & Bover, P. 1999. The diet of Myotragus balearicus Bate 1909 (Artiodactyla: Caprinae), an extinct bovid from the Balearic Islands: evidence from coprolites. Biological Journal of the Linnean Society 66: 57–74.
  • Aldridge, H.D.J.N. & Rautenbach, I.L. 1987. Morphology, echolocation and resource partitioning in insectivorous bats. Journal of Animal Ecology 56: 763–778.
  • Blaauw, M. 2010. Methods and code for ‘classical’ age modelling of radiocarbon sequences. Quaternary Geochronology 5: 512–518.
  • Bui-Thi, M. & Girard, M. 2000. Les guanos de chauve-souris d’âge médiéval de la Grande Grotte d’Arcy-sur-Cure (Yonne). Analyse pollinique et implications paléobotaniques. Géologie Alpine Mémoires 31: 83–95.
  • Burrough, S.L., Thomas, D.S.G., Shaw, P.A. & Bailey, R.M. 2007. Multiphase Quaternary highstands at Lake Ngami, Kalahari, northern Botswana. Palaeogeography, Paeleoclimatology, Palaeoecology 253: 280–299.
  • Carrión, J.S., Brink, J., Scott, L. & Binneman, J. 2000. Palynology of hyena coprolites from Oyster Bay, southeastern Cape coast, South Africa: the palaeo-environment of an open-air Howieson's Poort occurrence. South African Journal of Science 96: 449–453.
  • Carrión, J.S., Riquelme, J.A., Navarro, C. & Munuera, M. 2001. Pollen in hyaena coprolites reflects late glacial landscape in southern Spain. Palaeogeography, Palaeoclimatology, Palaeoecology 176: 193–205.
  • Carrión, J. S., Scott, L. & Marais, E. 2006. Environmental implications of pollen spectra in bat droppings from south-eastern Spain and potential for palaeoenvironmental reconstructions. Review of Palaeobotany and Palynology 140: 175–186.
  • Churchill, S., Draper, R. & Marais, E. 1997. Cave utilization by Namibian bats: microclimate and roost selection. South African Journal of Wildlife Research 27: 44–50.
  • Coles, G.M. & Gilbertson, D.D. 1994. The airfall-pollen budget of archaeologically important caves: Creswell Crags, England. Journal of Archaeological Science 21: 735–755.
  • Cotterill, F.P.D. & Fergusson, R.A. 1999. Reproductive ecology of Commerson's leaf-nosed bats Hipposideros commersoni (Chiroptera: Hipposideridae) in south-central Africa: Interactions between seasonality and large body size; and implications for conservation. South African Journal of Zoology 34: 53–63.
  • Curtis, B. & Mannheimer, C. 2005. Tree Atlas of Namibia. Windhoek, National Botanical Research Institute.
  • Darnton, B., Parmentier, J. & Van Egmond, W. 1999. Making a study of bat droppings. http://www.microscopy-uk.org.uk/mag/artapr99/bdbat.html ( accessed 16 July 2014).
  • Davis, O.K. 1990. Caves as sources of biotic remains in arid western North America. Palaeogeography, Palaeoclimatology, Palaeoecology 76: 331–348.
  • Davis, O.K. & Anderson, R.S. 1987. Pollen in packrat (Neotoma) middens: pollen transport and the relationship of pollen to vegetation. Palynology 11: 185–198.
  • De Porras, M.E., Virginia Mancini, M. & Prieto, A.P. 2009. Vegetation changes and human occupation in the Patagonian steppe, Argentina, during the late Holocene. Vegetation History and Archaeobotany 18: 235–244.
  • Dupont, L.M., Behling, H. & Kim J.-H. 2008. Thirty thousand years of vegetation development and climate change in Angola (Ocean Drilling Program Site 1078). Climate of the Past 4: 107–124.
  • Fenton, M.B., Rautenbach, I.L., Chipese, D., Cumming, M.B., Musgrave, M.K., Taylor, J.S. & Volpers, T. 1993. Variation in foraging behaviour, habitat use, and diet of Large Slit-faced bats (Nycteris grandis). Zeitschrift für Säugetierkunde 58: 65–74.
  • Geantă, A., Tanţău, I., Tămaş, T. & Johnston, V.E. 2012. Palaeoenvironmental information from the palynology of an 800 year old bat guano deposit from Măgurici Cave, NW Transylvania (Romania). Review of Palaeobotany and Palynology 174: 57–66.
  • Giess, W. 1971. A preliminary vegetation map of South West Africa. Dinteria 4: 1–114.
  • Gingele, F.X. 1996. Holocene climatic optimum in Southwest Africa – evidence from the marine clay record. Palaeogeography, Palaeoclimatology, Palaeoecology 122: 77–87.
  • Hunt, C.O. & Rushworth, G. 2005. Pollen taphonomy and airfall sedimentation in a tropical cave: the West Mouth of The Great Cave of Niah in Sarawak, Malaysian Borneo. Journal of Archaeological Science 32: 465–473.
  • Knoop, W.T. & Walker, B.H. 1985. Interactions of woody and herbaceous vegetation in a Southern African savanna. Journal of Ecology 73: 235–253.
  • Korine, C. & Pinshow, B. 2004. Guild structure, foraging space use, and distribution in a community of insectivorous bats in the Negev Desert. Journal of Zoology 262: 187–196.
  • Leroy, S.A.G. & Simms, M.J. 2006. Iron age to medieval entomogamous vegetation and Rhinolophus hipposideros roost in South-Eastern Wales (UK). Palaeogeography, Palaeoclimatology, Palaeoecology 237: 4–18.
  • Maher, L.J. 1992. Palynology of bat guano may provide a useful climate record. 8th International Palynological Congress, Aix-en-Provence, France, Programs and Abstracts, p. 96.
  • Maher, L.J. 2006. Environmental information from guano palynology of insectivorous bats of the central part of the United States of America. Palaeogeography, Palaeoclimatology, Palaeoecology 237: 19–31.
  • Martini, J.E.J. 1994a. Two new minerals originated from bat guano combustion in Arnhem Cave, Namibia. Bulletin of the South African Speleological Association 33: 66–69.
  • Martini, J.E.J. 1994b. The combustion of bat guano – a poorly known phenomenon. Bulletin of the South African Speleological Association 33: 70–72.
  • Martini, J., Irish, J. & Marais, E. 1990. Les grottes du Sud-Ouest Africain Namibie. Spelunca 38: 24–29.
  • Navarro, C., Carrión, J.S., Navarro, J., Munuera, M. & Prieto, A.R. 2000. An experimental approach to the palynology of cave deposits. Journal of Quaternary Science 15: 603–619.
  • Navarro, C., Carrión, J.S., Munuera, M. & Prieto, A.R. 2001. Cave surface pollen and the palynological potential of karstic cave sediments in palaeoecology. Review of Palaeobotany and Palynology 117: 245–265.
  • Pearson, S. & Betancourt, J.L. 2002. Understanding arid environments using fossil rodent middens. Journal of Arid Environments 50: 499–511.
  • Pendleton, M.W., Bryant, V.M. & Pendleton, B.B. 1996. Entomopalynology. In Jansonius, J. & McGregor, D.C. (Eds), Palynology: Principles and applications, American Association of Stratigraphic Palynologists Series 3, Dallas, Foundation, pp. 939–943.
  • Perkins, J.S. & Thomas, D.S.G. 1993. Spreading deserts or spatially confined environmental impacts? Land degradation and cattle ranching in the Kalahari Desert of Botswana. Land Degradation and Rehabilitation 4: 179–194.
  • Rohde, R.F. & Hoffmann, M.T. 2012. The historical ecology of Namibian rangelands: Vegetation change since 1876 in response to local and global drivers. Science of the Total Environment 416: 276–288.
  • Scholes, R.J. 1997. Savanna. In Cowling, R.M., Richardson, D.M. & Pierre, S.M. (Eds), Vegetation of Southern Africa, Cape Town, Cambridge University Press. pp. 258–277.
  • Scholes, R.J. & Archer, S.R. 1997. Tree–grass interactions in savannas. Annual Review of Ecology and Systematics 28: 517–544.
  • Scott, L. 1987. Pollen analysis of hyena coprolites and sediments from Equus Cave, Taung, Southern Kalahari (South Africa). Quaternary Research 28: 144–156.
  • Scott, L. 1996. Palynology of hyrax middens: 2000 years of palaeoenvironmental history in Namibia. Quaternary International 33: 73–79.
  • Scott, L. 2003. The Holocene of middle latitude arid areas. In Mackay, A., Batterbee, R., Birks, J. & Oldfield, F. (Eds), Global Change in the Holocene. London, Edward Arnold. pp. 396–405.
  • Scott, L., Cooreman, B., De Wet, J.S. & Vogel, J.C. 1991. Holocene environmental changes in Namibia inferred from pollen analysis of swamp and lake deposits. The Holocene 1: 8–13.
  • Scott, L., Fernãndez-Jalvo, Y., Carriõn, J. & Brink, J. 2003. Preservation and interpretation of pollen in hyaena coprolites: taphonomic observations from Spain and southern Africa. Palaeontologica Africana 39: 83–91.
  • Shahack-Gross, R., Berna, F., Karkanas, P. & Weiner, S. 2004. Bat guano and preservation of archaeological remains in cave sites. Journal of Archaeological Science 31: 1259–1272.
  • Skarpe, C. 1990. Structure of the woody vegetation in disturbed and undisturbed arid savanna. Vegetatio 87: 11–18.
  • Srivastava, P., Brook, G.A., Marais, E., Morthekai, P. & Singhvi, A.K. 2006. Depositional environment and OSL chronology of the Homeb silt deposits, Kuiseb River, Namibia. Quaternary Research 65: 478–491.
  • Stute, M. & Talma, A.S. 1998. Glacial temperature and moisture transport regimes reconstructed from noble gases and δ18O, Stampriet aquifer, Namibia. Isotope Techniques in the Study of Past and Current Environmental Changes in the Hydrosphere and the Atmosphere. Vienna, International Atomic Energy Agency. pp. 307–318.
  • Taylor, P.J. 2000. Bats of Southern Africa. Pietermaritzburg, University of Natal Press.
  • Van Vegten, J.A. 1983. Thornbush invasion in eastern Botswana. Vegetatio 56: 3–7.
  • Ward, D. & Ngairorue, B.T. 2000. Are Namibia's grasslands desertifying? Journal of Range Management 53: 138–144.
  • Whitaker, J.O. 1988. Food habits analysis of insectivorous bats. In Kunz, T.H. (Ed.), Ecological and Behavioral Methods for the Study of Bats. Washington, DC, Smithsonian Institution Press. pp. 171–189.
  • Wiegand, K., Saltz, D. & Ward, D. 2006. A patch-dynamics approach to savanna dynamics and woody plant encroachment – insights from an arid savanna. Perspectives in Plant Ecology, Evolution and Systematics 7: 229–242.

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