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Late Holocene Environmental Changes in Arid Southwestern Madagascar

Published online by Cambridge University Press:  20 January 2017

David A. Burney*
Affiliation:
Department of Biological Sciences, Fordham University, Bronx, New York 10458

Abstract

A 5000-yr stratigraphic record containing fossil pollen, charcoal, and bones of the extinct Quaternary megafauna from Andolonomby, a hypersaline pond in arid southwestern Madagascar, shows evidence for climatic desiccation beginning about 3000 yr B.P. Pollen spectra shift at this time from primarily arboreal taxa characteristic of forests and woodlands of more mesic western Madagascar, to wooded savanna typical of somewhat drier localities. Between 3000 and 2000 yr B.P., the site became increasingly arid. Charcoal and pollen evidence indicates that increased fire and disturbance occurred at the site beginning ca. 1900 yr B.P., probably signaling the beginning of human settlement in the area. The fossil record suggests that various human and natural factors on the island may have interacted in the subsequent millennium to culminate in the extinction of the entire endemic megafauna.

Type
Research Article
Copyright
University of Washington

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References

Battistini, R. (1971a). Conditions de gisements des sites littoraux de sub-fossiles et causes de ta disparition de la faune des grands animaux dans le Sud-Ouest et l’Extreme Sud de Madagascar. Taloha 4, 718.Google Scholar
Battistini, R. (1971b). État des connaissances sur les variations du niveau marin à Madagascar depuis 10,000 ans. “Comptes Rendus de la Semaine Géologique, 1970,” pp. 1315. Imprimerie Nationale, Tananarive.Google Scholar
Brook, G. A. Burney, D. A., and Cowart, J. B. (1990). Desert paleoenvironmental records from cave speleothems with examples from the Chihuahuan, Somali-Chalbi, and Kalahari deserts. Palaeogeography, Palaeoclimatology, Palaeoecology 76, 311329.Google Scholar
Burney, D. A. (1987a). Pre-settlement vegetation changes at Lake Tritrivakely, Madagascar. Palaeoecology of Africa 18, 357381.Google Scholar
Burney, D. A. (1987b). Late Holocene vegetational change in central Madagascar. Quaternary Research 28, 130143.Google Scholar
Bumey, D. A. (1987c). Late Quaternary stratigraphic charcoal records from Madagascar. Quaternary Research 28, 274280.Google Scholar
Burney, D. A. (1988). Modern pollen spectra from Madagascar. Palae-ogeography, Palaeoclimatology, Palaeoecology 66, 6375.Google Scholar
Burney, D. A., and MacPhee, R. D. E. (1988). Mysterious island: What killed Madagascar’s large native animals? Natural History 97(7), 4655.Google Scholar
Clark, J. S. (1988). Particle motion and the theory of charcoal analysis: Source area, transport, deposition, and sampling. Quaternary Research 30, 6780.Google Scholar
Dean, W. E. Jr. (1974). Determination of carbonate and organic matter in calcareous sediments and sedimentary rocks by loss on ignition: Comparison with other methods. Journal of Sedimentary Petrology 44, 242248.Google Scholar
Dewar, R. E. (1988). Malagasy roots. Natural History 97(7), 51.Google Scholar
Diamond, J. (1984). Historic extinction: A Rosetta Stone for understanding prehistoric extinctions. In “Quaternary Extinctions” (Martin, P. S. and Klein, R. G., Eds.), pp. 824862. Univ. Arizona Press, Tucson.Google Scholar
Ellison, J. C. (1989). Pollen analysis of mangrove sediments as a sea-level indicator: Assessment from Tongatapu, Tonga. Palaeogeogra-phy, Palaeoclimatology, Palaeoecology 74, 327341.CrossRefGoogle Scholar
Faegri, K., and Iversen, J. (1975). “Textbook of Pollen Analysis.” Hafner, New York.Google Scholar
Grandidier, A., and Filhol, H. (1894). Observations relatives aux osse-ments d’hippopotames retrouvés dans les marais d’Ambolisatra. Annates des Sciences Naturelles, 7è séi. 16, 151190.Google Scholar
Hamilton, A. C. (1982). “Environmental History of East Africa: A Study of the Quaternary.” Academic Press, New York.Google Scholar
Hamilton, A. C, and Perrott, R. A. (1980). Modern pollen deposition on a tropical African mountain. Pollen et Spores 22(3-4), 437468.Google Scholar
Humbert, H., and Cours Darne, G. (1965). Carte international du tapis végétal et des conditions écologiques à 1/1,000,000. Notice de la carte de Madagascar. “Travaux de la Section Scientifique et Technique de l’Institut François de Pondichèry,” hors sèrie 6, 1162.Google Scholar
Koechlin, J. Guillaumet, J.-L., and Morat, P. (1974). “Flore et Végétation de Madagascar.” J. Cramer, Vaduz.Google Scholar
Laseski, R. A. (1983). “Modern Pollen Data and Holocene Climate Change in Eastern Africa.” Unpublished Ph.D. dissertation, Brown University, Providence.Google Scholar
MacPhee, R. D. E. (1986). Environment, extinction, and Holocene vertebrate localities in southern Madagascar. National Geographic Research 2, 441455.Google Scholar
MacPhee, R. D. E. Burney, D. A., and Wells, N. A. (1985). Early Holocene chronology and environment of Ampasambazimba, a Malagasy subfossil lemur site. International Journal of Primatology 6(5), 463489.Google Scholar
MacPhee, R. D. E., and Burney, D. A. (1991). Dating of modified femora of extinct dwarf Hippopotamus from southern Madagascar: Implications for contraining human colonization and vertebrate extinction events. Journal of Archaeological Science 18, 695706.CrossRefGoogle Scholar
Mahè, J., and Sourdat, M. (1972). Sur l’extinction des vertèbrès subfossiles et l’aridification du climat dans le Sud-ouest de Madagascar. Bulletin de la Sociéte Géologique de France 14, 295309.CrossRefGoogle Scholar
Martin, P. S., and Klein, R. G. (Eds.) (1984). “Quaternary Extinctions: A Prehistoric Revolution.” Univ. Arizona Press, Tucson.Google Scholar
Myers, N. (1987). The extinction spasm impending: Synergisms at work. Conservation Biology 1(1), 1421.Google Scholar
Patterson, W. A. III Edwards, K. J., and MacGuire, D. J. (1987). Microscopic charcoal as a fossil indicator of fire. Quaternary Science Reviews 6, 323.Google Scholar
Swain, A. M. (1973). A history of fire and vegetation in northeastern Minnesota, as recorded in lake sediments. Quaternary Research 3, 383396.Google Scholar
Vincens, A. (1984). Environnement végétal et sedimentation pollinique lacustre actuelle dan le basin du Lac Turkana (Kenya). Revue de Paléobiohgie, Vol. Special, 235242.Google Scholar