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Regional Variation in the Pattern of Maize Adoption and Use in Florida and Georgia

Published online by Cambridge University Press:  20 January 2017

Dale L. Hutchinson
Affiliation:
Departments of Anthropology and Biology, and the Institute for Historical and Cultural Research, East Carolina University, Greenville, NC 27858
Clark Spencer Larsen
Affiliation:
Department of Anthropology and Research Laboratories of Archaeology, University of North Carolina, Chapel Hill, NC 27599-3120
Margaret J. Schoeninger
Affiliation:
Department of Anthropology, University of Wisconsin, Madison, WI 53706
Lynette Norr
Affiliation:
Department of Anthropology, University of Florida, Gainesville, FL 32611

Abstract

Dietary reconstruction using carbon and nitrogen stable isotopes from archaeological human bone samples from coastal Georgia and northern and Gulf Coast Florida dating between 400 B.C. and A.D. 1700 serves to illustrate the complexity of the agricultural transition in that region. Isotope analysis of 185 collagen samples drawn from early prehistoric, late prehistoric, and contact-period mortuary sites encompasses two major adaptive shifts in the region, namely the adoption of maize agriculture in late prehistory and the increased emphasis on maize during the mission period. Prior to European contact—and especially before the establishment of Spanish missions among the Guale, Yamasee, Timucua, and Apalachee tribal groups—diet was strongly influenced by local environmental factors. Before contact, coastal and inland populations had different patterns of food consumption, as did populations living in Georgia and Florida. Coastal populations consumed more marine and less terrestrial foods than inland populations. In general, maize was adopted during the eleventh century A.D. by virtually all Georgia populations. However, with the exception of the Lake Jackson site, a major Mississippian center in northern Florida, Florida populations show little use of maize before contact. Following European contact, maize became wide-spread, regardless of location or habitat within the broad region of Spanish Florida. Missionization appears to have been an important factor in the convergence of native diets toward agriculture and away from foraging. This increased emphasis on maize contributed to a decline in quality of life for native populations.

Résumé

Résumé

La reconstrucción dietética usando carbón e isótopos estables provenientes de muestras arqueológicas de huesos humanos de la costade Georgia, y elnortey Golfo de Florida datados entre 400 a.C. y 1700 d.C, sirvepara ilustrar la complejidadde la transición agricultural en esa región. Análisis isotópicos de 185 muestras de colágeno extraidos de sitios mortuarios correspondientes a los períodos prehistoricos tempranos, prehistóricos tardíos, y contacto incluyen dos cambios adaptativos mayores en la región, especificamente la adopción de la agricultura del maíz en el peráodo prehistórico tardáo y el énfasis en el incremento del maíz durante el período de las misiones. Antes del contacto europeo, y especialmente con anterioridad al establecimiento de las misiones españolas entre las tribus de los Guales, Yamasee, Timucua, y Apalachee, la dietafue influenciada fuertemente por factores ambientales locales. Antes del contacto, las poblaciones costeñas y del interior tenían patrones diferentes con respecto al consume) de alimentos, así como también las residentes en Georgia y Florida. Las poblaciones costeñas consumieron mayor cantidad de alimentos marinos y menor cantidad de alimentos terrestres que las poblaciones del interior. En general, el maíz fué adoptado en el sigh XI de nuestra era por casi todas las poblaciones de Georgia. Sin embargo, con la excepción del sito del Lago Jackson que es un centro mayor del Misisipí en el norte de Florida, las poblaciones de Florida antes del contacto muestran un escaso uso del maíz. Después del contacto europeo, se enfatizó y diseminó el uso del maíz, indiferentemente de la localidad o habitación dentro de la amplia región española de Florida. Parece que el proceso misionización fue un factor importante en la convergencia de las dietas nativas en la agricultura y declinamiento de la caza, pesca, y recolección. Tal incremento en el énfasis de maíz contribuyó al decaimiento en la calidad de vida de las poblaciones nativas después del arribo de los europeos.

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Articles
Copyright
Copyright © The Society for American Archaeology 1998

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References

References Cited

Alexander, M. M. 1984 Paleoethnobotany of the Fort Walton Indians : High Ridge, Velda, and Lake Jackson Sites. Unpublished Master's thesis, Florida State University, Tallahassee.Google Scholar
Ambrose, S. H. 1990 Preparation and Characterization of Bone and Tooth Collagen for Isotopic Analysis. Journal of Archaeological Science 17 : 431451.CrossRefGoogle Scholar
Ambrose, S., and Non, L. 1992 On Stable Isotopic Data and Prehistoric Subsistence in the Soconusco Region. Current Anthropology 33 : 401104.CrossRefGoogle Scholar
Ambrose, S., and Non, L. 1993 Experimental Evidence for the Relationship of the Carbon Isotope Ratios of Whole Diet and Dietary Protein to Those of Bone Collagen and Carbonate. In Molecular Archaeology of Prehistoric Human Bone, edited by Lambert, J. and Grupe, G., pp. 137. Springer-Verlag, Berlin.Google Scholar
Anderson, D. G. 1994 The Savannah River Chiefdoms : Political Change in the Late Prehistoric Southeast. University of Alabama Press, Tuscaloosa.Google Scholar
Bender, M. M. 1968 Mass Spectrometric Studies of Carbon-13 in Corn and Other Grasses. Radiocarbon 10 : 468172.CrossRefGoogle Scholar
Bender, M. M., Barreis, D. A., and Steventon, R. L. 1981 Further Light on Carbon Isotopes and Hopewell Agriculture. American Antiquity 46 : 346353.Google Scholar
Bourne, E. G. (editor) 1922 Narratives in the Career of Hernando de Soto. Two volumes. Translated by Bourne, E. G.. Allerton Book, New York.Google Scholar
Brown, R. B., Stone, E. L., and Carlisle, V. W. 1990 Soils. In Ecosystems of Florida, edited by Myers, R. L. and Ewel, J.J. pp. 3569. University of Central Florida Press, Orlando.Google Scholar
Buikstra, J. E. 1992 Diet and Disease in Late Prehistory. In Disease and Demography in the Americas, edited by Verano, J. W. and Ubelaker, D.H. pp. 87101. Smithsonian Institution Press, Washington, D.C. Google Scholar
Buikstra, J. E., Autry, W., Breitburg, E., Eisenberg, L., and van der Merwe, N. 1988 Diet and Health in the Nashville Basin : Human Adaptation and Maize Agriculture in Middle Tennessee. In Diet and Subsistence : Current Archaeological Perspectives, edited by Kennedy, B. V. and LeMoine, G.M. pp. 243269. University of Calgary Archaeological Association, Calgary, Alberta.Google Scholar
Buikstra, J. E., and Milner, G. R. 1991 Isotopic and Archaeological Interpretations of Diet in the Central Mississippi Valley. Journal of Archaeological Science 18 : 319329.CrossRefGoogle Scholar
Bushnell, A. T. 1994 Situado and Sabana : Spain's Support System for the Presidio and Mission Provinces of Florida. Anthropological Paper No. 74. American Museum of Natural History, New York.Google Scholar
Caldwell, J., and McCann, C. 1941 Irene Mound Site, Chatham County, Georgia. University of Georgia Press, Athens.Google Scholar
Crook, M. R., Jr. 1984 Evolving Community Organization on the Georgia Coast. Journal of Field Archaeology 11 : 247263.Google Scholar
DeNiro, M. 1985 Postmortem Preservation and Alteration of In Vivo Bone Collagen Isotope Ratios in Relation to Paleodietary Reconstruction. Nature 317 : 806809.Google Scholar
DeNiro, M., and Epstein, S. 1978 Influence of Diet on the Distribution of Carbon Isotopes in Animals. Geochimica et Cosmochimica Acta 42 : 495506.CrossRefGoogle Scholar
DeNiro, M., and Epstein, S. 1981 Influence of Diet on the Distribution of Nitrogen Isotopes in Animals. Geochimica et Cosmochimica Acta 45 : 341351.Google Scholar
DePratter, C. B. 1979 Ceramics. In The Anthropology of St. Catherines Island : 2. The Refuge-Deptford Mortuary Complex, edited by Thomas, D. H. and Larsen, C.S. pp. 109123. Anthropological Paper No. 56, Part 1. American Museum of Natural History, New York.Google Scholar
DePratter, C. B. 1991 W.P.A. Archaeological Excavations in Chatham County, Georgia : 1937-1942. Laboratory of Archaeology Series Report No. 29. University of Georgia, Athens.Google Scholar
Dunn, M. E. 1981 Botanical Remains from the Cemochechobee Site. In Cemochechobee : Archaeology of a Mississippian Ceremonial Center on the Chattahootchee River, by Schnell, F. T., Knight, V. J., and Schnell, G. S., pp. 252255. University of Florida Press, Gainesville.Google Scholar
Fitzgerald, C. 1987 Analysis of the Faunal Remains at the Bayonet Field Site (8-CI197), Citrus County, Florida. Report on file, Florida Museum of Natural History, Gainesville.Google Scholar
Fresia, A. E., Ruff, C. B., and Larsen, C. S. 1990 Temporal Decline in Bilateral Asymmetry of the Upper Limb on the Georgia Coast. In The Archaeology of Mission Santa Catalina de Guale : 2. Biocultural Interpretations of a Population in Transition, pp. 121132. Anthropological Paper No. 68. American Museum of Natural History, New York.Google Scholar
Gardner, W. M. 1966 The Waddells Mill Pond Site. The Florida Anthropologist 19 : 4364.Google Scholar
Hann, J. H. 1988 Apalachee : The Land Between the Rivers. University of Florida Press, Gainesville.Google Scholar
Hann, J. H. 1990 Summary Guide to Spanish Florida Missions and Visitas, with Churches in the Sixteenth and Seventeenth Centuries. The Americas 56 : 417513.CrossRefGoogle Scholar
Hann, J. H. 1996 A History of the Timucua Indians and Missions. University of Florida Press, Gainesville.Google Scholar
Hoshower, L. 1992 Bioanthropological Analysis of a Seventeenth- Century Native American Spanish Mission Population : Biocultural Impacts on the Northern Utina. Unpublished Ph.D. dissertation, University of Florida, Gainesville.Google Scholar
Hoshower, L., and Milanich, J. T. 1993 Excavations in the Fig Springs Mission Burial Area. In The Spanish Missions of La Florida, edited by McEwan, B. G., pp. 217243. University of Florida Press, Gainesville.Google Scholar
Hudson, C. 1997 Knights of Spain, Warriors of the Sun : Hernando De Soto and the South's Ancient Chiefdoms. University of Georgia Press, Athens.Google Scholar
Hudson, C., Smith, M. T., DePratter, C. B., and Kelley, E. 1989 The Tristan de Luna Expedition, 1559-1561. Southeastern Archaeology 8 : 31—4-5.Google Scholar
Hulse, F. S. 1941 The People Who Lived at Irene : Physical Anthropology. In Irene Mound Site, Chatham County, Georgia, by Caldwell, J. and McCann, C., pp. 5768. University of Georgia Press, Athens.Google Scholar
Hutchinson, D. L. 1991 Postcontact Native American Health and Adaptation : Assessing the Impact of Introduced Diseases in Sixteenth Century Gulf Coast Florida. Unpublished Ph.D. dissertation, University of Illinois, Champaign-Urbana.Google Scholar
Hutchinson, D. L., and Larsen, C. S. 1988 Determination of Stress Episode Duration from Linear Enamel Hypoplasias : A Case Study from St. Catherines Island, Georgia. Human Biology 60 : 93110.Google ScholarPubMed
Hutchinson, D. L., and Larsen, C. S. 1990 Stress and Lifeway Change : The Evidence from Enamel Hypoplasias. In The Archaeology of Mission Santa Catalina de Guale : 2. Biocultural Interpretations of a Population in Transition, pp. 5065. Anthropological Paper No. 68. American Museum of Natural History, New York.Google Scholar
Hutchinson, D. L., and Norr, L. 1991 Corn and Subsistence in Central Gulf Coast Florida : The Evidence from Stable Isotope Analysis. Paper Presented at the 1991 Annual Meeting of the Society for American Archaeology, New Orleans.Google Scholar
Hutchinson, D. L., and Norr, L. 1994 Late Prehistoric and Early Historic Diet in Gulf Coast Florida. In In the Wake of Contact : Biological Responses to Conquest, edited by Larsen, C. S. and Milner, G.R. pp. 920. Wiley-Liss, New York.Google Scholar
Hutchinson, D. L., and Norr, L. 1997 Unpublished data on file at Department of Anthropology, University of Florida, Gainesville.Google Scholar
Hutchinson, D. L., and Norr, L. 1996 Mississippian Adaptation on the Northern Periphery : Settlement, Subsistence and Interaction in the Cumberland Valley of Southeastern Kentucky. Southeastern Archaeology 15 : 128.Google Scholar
Johannessen, S. 1984 Paleoethnobotany. In American Bottom Archaeology, edited by Bareis, C. and Porter, J., pp. 197214. University of Illinois Press, Urbana.Google Scholar
Johannessen, S. 1993 Farmers of the Late Woodland. In Foraging and Farming in the Eastern Woodlands, edited by Scarry, C. M., pp. 5777. University of Florida Press, Gainesville.Google Scholar
Johannessen, S., and Whalley, L. A. 1988 Floral Analyses. In Late Woodland Sites in the American Bottom Uplands, edited by Bentz, C., McElrath, D., Finney, F, and Lacampagne, R., pp. 265288. American Bottom Archaeology FAI-270 Site Reports No. 18, University of Illinois Press, Urbana.Google Scholar
Johnson, W. G. 1990 The Role of Maize in South Florida Aboriginal Societies : An Overview. The Florida Anthropologist 43 : 209214.Google Scholar
Jones, B. C. 1982 Southern Cult Manifestations at the Lake Jackson Site, Leon County, Florida : Salvage Excavation of Mound 3. Midcontinental Journal of Archaeology 7 : 344.Google Scholar
Jones, B. C, Storey, R., and Widmer, R. 1991 The Patale Cemetery : Evidence Concerning the Apalachee Mission Mortuary Complex. In San Pedro y San Pablo de Patale : A Seventeenth-Century Spanish Mission in Leon County, Florida, edited by Jones, B. C., Hann, J., and J. F. Scarry. Florida Archaeology No. 5. Florida Bureau of Archaeological Research, Tallahassee.Google Scholar
Jones, B. C, Storey, R., and Widmer, R. 1995 Stable Isotope Evidence for Maize Horticulture and Paleodiet in Southern Ontario, Canada. American Antiquity 60 : 335350.Google Scholar
Keegan, W. F. 1987 Diffusion of Maize from South America : The Antillean Connection Reconstructed. In Emergent Horticultural Economies of the Eastern Woodlands, edited by Keegan, W. F., pp. 329344. Occasional Paper No. 7. Center for Archaeological Investigations, Southern Illinois University, Carbondale.Google Scholar
Keegan, W. F. 1988 Stable Carbon- and Nitrogen-Isotope Ratios of Bone Collagen Used to Study Coral-Reef and Terrestrial Components of Prehistoric Bahamian Diet. American Antiquity 53 : 320336.Google Scholar
Larsen, C. S. 1982 The Anthropology of St. Catherines Island : 3. Prehistoric Human Biological Adaptation. Anthropological Paper No. 57, Part 3. American Museum of Natural History, New York.Google Scholar
Larsen, C. S. 1990 The Archaeology of Mission Santa Catalina de Guale : 2. Biocultural Interpretations of a Population in Transition (editor). Anthropological Paper No. 68. American Museum of Natural History, New York.Google Scholar
Larsen, C. S. 1993 On the Frontier of Contact : Mission Bioarchaeology in La Florida. In The Spanish Missions of La Florida, edited by McEwan, B. G., pp. 322356. University of Florida Press, Gainesville.Google Scholar
Larsen, C. S. 1996 Unpublished data on file at Research Laboratories of Anthropology, University of North Carolina, Chapel Hill.Google Scholar
Larsen, C. S., Crosby, A. W., Griffin, M. C., Hutchinson, D. L., 1998 A Biohistory of Health and Behavior in the Georgia Bight : 1. The Agricultural Transition and the Impact of European Contact. In The Backbone of History : Health and Nutrition in the Western Hemisphere, Volume 1, edited by Steckel, R. H. and Rose, J.C. in press. Cambridge University Press, Cambridge.Google Scholar
Larsen, C. S., and Harn, D. E. 1994 Health in Transition : Disease and Nutrition in the Georgia Bight. In Paleonutrition : The Diet and Health of Prehistoric Americans, edited by Sobolik, K. D., pp. 222234. Occasional Paper No. 22. Center for Archaeological Investigations, Southern Illinois University, Carbondale.Google Scholar
Larsen, C. S., and Hutchinson, D. L. 1992 Dental Evidence for Physiological Disruption : Biocultural Interpretations from the Eastern Spanish Borderlands, U.S.A. In Recent Contributions to the Study of Enamel Developmental Defects, edited by Goodman, A. H. and Capasso, L.L. pp. 151169. Journal of Paleopathology Monographic Publications No. 2.Google Scholar
Larsen, C. S., and Ruff, C. B. 1994 The Stresses of Conquest in Spanish Florida : Structural Adaptation and Change before and after Contact. In In the Wake of Contact : Biological Responses to Conquest, edited by Larsen, C. S. and Milner, G.R. pp. 2134. Wiley-Liss, New York.Google Scholar
Larsen, C. S., Ruff, C. B., Schoeninger, M. J., and Hutchinson, D. L. 1992 Population Decline and Extinction in La Florida. In Disease and Demography in the Americas, edited by Verano, J. W. and Ubelaker, D.H. pp. 2539. Smithsonian Institution Press, Washington, D.C. Google Scholar
Larsen, C. S., Schoeninger, M. J., Hutchinson, D. L., F., K. 1990 Beyond Demographic Collapse : Biological Adaptation and Change in Native Populations of La Florida. In Columbian Consequences : Archaeological and Historical Perspectives on the Spanish Borderlands East, vol. 2, edited by Thomas, D. H., pp. 409^28. Smithsonian Institution Press, Washington, D.C. Google Scholar
Larsen, C. S., Schoeninger, M. J., van der Merwe, N. J., M., K. 1992 Carbon and Nitrogen Stable Isotope Signatures of Human Dietary Change in the Georgia Bight. American Journal of Physical Anthropology 89 : 197214.CrossRefGoogle ScholarPubMed
Larsen, C. S., Shavit, R., and Griffin, M. C. 1991 Dental Caries Evidence for Dietary Change : An Archaeological Context. In Advances in Dental Anthropology, edited by Kelley, M. A. and Larsen, C.S. pp. 179202. Wiley-Liss, New York.Google Scholar
Larsen, C. S., and Thomas, D. H. 1982 The Anthropology of St. Catherines Island : 4. The St. Catherines Period Mortuary Complex. Anthropological Paper No. 57, Part 4. American Museum of Natural History, New York.Google Scholar
Larsen, C. S., and Thomas, D. H. 1986 The Archaeology of St. Catherines Island : 5. The South End Mound Complex. Anthropological Paper No. 63, Part 1. American Museum of Natural History, New York.Google Scholar
Little, E. A., and Schoeninger, M. J. 1995 The Late Woodland Diet on Nantucket Island and the Problem of Maize in Coastal New England. American Antiquity 60 : 351368.CrossRefGoogle Scholar
Loucks, L. J. 1976 Early Alachua Tradition Burial Ceremonialism : the Henderson Mound, Alachua County, Florida. Unpublished Master's thesis, University of Florida, Gainesville.Google Scholar
Lynott, M. J., Boutton, T. W, Price, J. E., and Nelson, D. E. 1986 Stable Carbon Isotopic Evidence for Maize Agriculture in Southeast Missouri and Northeast Arkansas. American Antiquity 51 : 5165.CrossRefGoogle Scholar
Marrinan, R. A. 1984-1991. In The Spanish Missions of La Florida, edited by McEwan, B. G., pp. 244294. University of Florida Press, Gainesville.Google Scholar
Martinez, C. A. 1975 Culture Sequence on the Central Georgia Coast, 1000 B.C-1650 A.D. Unpublished Master's thesis, University of Florida, Gainesville.Google Scholar
McEwan, B. G. 1993 Hispanic Life on the Seventeenth Century Florida Frontier. In The Spanish Missions of La Florida, edited by McEwan, B. G., pp. 295321. University of Florida Press, Gainesville.Google Scholar
Mikell, G. A. 1990 The Sheephead Bayou Site (8BY150) : A Single Component Fort Walton Hamlet Site in Northwest Florida. The Florida Anthropologist 43 : 198208.Google Scholar
Milanich, J. T. 1980 Coastal Georgia Deptford Culture : Growth of a Concept. In Excursions in Southeastern Geology : The Archaeology-Geology of the Georgia Coast, edited by Howard, J. D., DePratter, C. B., and Frey, R. W., pp. 170178. Guidebook 20. Georgia Geological Survey, Atlanta.Google Scholar
Milanich, J. T. 1994 Archaeology of Precolumbian Florida. University of Florida Press, Gainesville.Google Scholar
Mitchem, J. M. 1989 Redefining Safety Harbor : Late Prehistoric/ Protohistoric Archaeology in West Peninsular Florida. Unpublished Ph.D. dissertation, University of Florida, Gainesville.Google Scholar
Moore, J. F. 1985 Archaeobotanical Analyses at Five Sites in the Richard B. Russell Reservoir, Georgia and South Carolina. In Prehistoric Human Ecology Along the Upper Savannah River : Excavations at the Rucker's Bottom, Abbeville, and Bullard Site Groups, assembled by Anderson, D. G. and Schuldenrein, J., vol. 2, pp. 673694. Archaeological Services Branch, Southeast Regional Office, National Park Service, U.S. Department of the Interior, Atlanta.Google Scholar
Myers, R. L., and Ewel, J. J. (editors) 1990 Ecosystems of Florida. University of Central Florida Press, Orlando.Google Scholar
Newsom, L. A. 1987 Analysis of Botanical Remains from Hontoon Island (8Vo202), Florida : 1980-1985 Excavations. Florida Anthropologist 40 : 4784.Google Scholar
Newsom, L. A. 1991 Archaeobotanical Analysis of Four Features from the South End Project at Fig Springs (8C01), Columbia County, Florida. Report on file, Florida Museum of Natural History, Gainesville.Google Scholar
Newsom, L. A., and Quitmyer, I. R. 1992 Archaeobotanical and Faunal Remains. In Excavations on the Franciscan Frontier, by Weisman, B. R., pp. 206233. University of Florida Press, Gainesville.Google Scholar
Norr, L. 1990 Nutritional Consequences of Prehistoric Subsistence Strategies in Lower Central America. Unpublished Ph.D. dissertation, University of Illinois, Urbana-Champaign.Google Scholar
Norr, L. 1995 Interpreting Dietary Maize from Bone Stable Isotopes in the American Tropics : The State of the Art. In Archaeology in the Lowland American Tropics, edited by Stahl, P. W., pp. 198223. Cambridge University Press, Cambridge.CrossRefGoogle Scholar
Norr, L., and Cooke, R. G. 1998 Unpublished data on file at Department of Anthropology, University of Florida, Gainesville.Google Scholar
O'Leary, M. H. 1988 Carbon Isotopes in Photosynthesis. BioScience. 38 : 328336.CrossRefGoogle Scholar
Oviedo, G. F. 1944 Historia General y Natural de las Indias : Islas y Tierra-Firme del Mar Oceano. 16 vols. Editorial Guarania, Asuncion del Paraguay.Google Scholar
Powell, M. L. 1990 On the Eve of the Conquest : Life and Death at Irene Mound, Georgia. In The Archaeology of Mission Santa Catalina De Guale : 2. Biocultural Interpretations of a Population in Transition, edited by Larsen, C. S., pp. 2635. Anthropological Paper No. 68. American Museum of Natural History, New York.Google Scholar
Reitz, E. J. 1985 A Comparison of Spanish and Aboriginal Subsistence on the Atlantic Coastal Plain. Southeastern Archaeology 4 : 4150.Google Scholar
Reitz, E. J. 1988 Evidence for Coastal Adaptations in Georgia and South Carolina. Archaeology of Eastern North America 16 : 137158.Google Scholar
Reitz, E. J. 1990 Zooarchaeological Evidence for Subsistence at La Florida Missions. In Columbian Consequences : Archaeology and History of the Spanish Borderlands East, vol. 2, edited by Thomas, D. H., pp. 507516. Smithsonian Institution Press, Washington, D.C. Google Scholar
Reitz, E. J. 1992 Vertebrate Fauna from Seventeenth-Century St. Augustine. Southeastern Archaeology 11 : 7994.Google Scholar
Reitz, E. J. 1993 Evidence for Animal Use at the Missions of Spanish Florida. In The Spanish Missions of La Florida, edited by McEwan, B. G., pp. 376398. University of Florida Press, Gainesville.Google Scholar
Reitz, E. J., and Scarry, C. M. 1985 Reconstructing Historic Subsistence with an Example from Sixteenth-Century Spanish Florida. Special Publication No. 3. Society for Historical Archaeology, Ann Arbor, Michigan.Google Scholar
Reitz, E. J., and Scarry, C. M. 1990 Herbs, Fish, Scum, and Vermin : Subsistence Strategies in Sixteenth-Century Spanish Florida. In Columbian Consequences : Archaeology and History of the Spanish Borderlands East, vol. 2, edited by Thomas, D. H., pp. 343354. Smithsonian Institution Press, Washington, D.C. Google Scholar
Ruff, C. B., and Larsen, C. S. 1990 Postcranial Biomechanical Adaptations to Subsistence Strategy Changes on the Georgia Coast. In The Archaeology of Mission Santa Catalina de Guale : 2. Biocultural Interpretations of a Population in Transition, edited by Larsen, C. S., pp. 94120. Anthropological Paper No. 68. American Museum of Natural History, New York.Google Scholar
Ruhl, D. L. 1990 Spanish Mission Paleoethnobotany and Culture Change : A Survey of the Archaeobotanical Data and Some Speculations on Aboriginal and Spanish Agrarian Interactions in La Florida. In Columbian Consequences : Archaeology and History of the Spanish Borderlands East, vol. 2, edited by Thomas, D. H., pp. 555580. Smithsonian Institution Press, Washington, D.C. Google Scholar
Ruhl, D. L. 1993 Old Customs and Traditions in New Terrain : Sixteenth- and Seventeenth-Century Archaeobotanical Data from La Florida. In Foraging and Farming in the Eastern Woodlands, edited by Scarry, C. M., pp. 255283. University of Florida Press, Gainesville.Google Scholar
Saunders, R. 1988 Excavations at 8NA41 : Two Mission Period Sites on Amelia Island, Florida. Miscellaneous Project Report Series No. 35. Department of Anthropology, Florida State Museum, Gainesville.Google Scholar
Scarry, C. M. 1993a Agricultural Risk and the Development of the Moundville Chiefdom. In Foraging and Farming in the Eastern Woodlands, edited by Scarry, C. M., pp. 157181. University of Florida Press, Gainesville.Google Scholar
Scarry, C. M. 1993b Variability in Mississippian Crop Production Strategies. In Foraging and Farming in the Eastern Woodlands, edited by Scarry, C. M., pp. 7890. University of Florida Press, Gainesville.Google Scholar
Scarry, C. M. 1993c Plant Production and Procurement in Apalachee Province. In The Spanish Missions of La Florida, edited by McEwan, B. G., pp. 357375. University of Florida Press, Gainesville.Google Scholar
Scarry, J. 1990a The Rise, Transformation and Fall of Apalachee. In Lamar Archaeology, edited by Williams, M. and Shapiro, G., pp. 175186. University of Alabama Press, Tuscaloosa.Google Scholar
Scarry, J. 1990b Mississippian Emergence in the Fort Walton Area : The Evolution of the Cayson and Lake Jackson Phases. In Mississippian Emergence : The Evolution of Ranked Agricultural Societies in Eastern North America, edited by Smith, B. D., pp. 227250. Smithsonian Institution Press, Washington, D.C. Google Scholar
Scarry, J. 1994 The Apalachee Chiefdom : A Mississippian Society on the Fringe of the Mississippian World. In The Forgotten Centuries : Indians and Europeans in the American South, 1521-1704, edited by Hudson, C. and Tesser, C.C. pp. 156178. University of Georgia Press, Athens.Google Scholar
Schoeber, M.J., DeNiro, M. J., and Tauber, H. 1983 Stable Nitrogen Isotope Ratios of Bone Collagen Reflect Marine and Terrestrial Components of Prehistoric Human Diet. Science 220 : 13811383.Google Scholar
Schoeber, M.J., DeNiro, M. J., and Tauber, H. 1989 Reconstructing Prehistoric Human Diet. In The Chemistry of Prehistoric Human Bone, edited by Price, T. D., p. 3867. Cambridge University Press, Cambridge.Google Scholar
Schoeber, M.J., DeNiro, M. J., and Tauber, H. 1995 Stable Isotope Studies in Human Evolution. Evolutionary Anthropology 4 : 8398.Google Scholar
Schoeninger, M. J., and DeNiro, M. J. 1981 Diagenetic Effects on Stable Isotope Ratios in Bone Apatite and Collagen. American Journal of Physical Anthropology 60 : 252.Google Scholar
Schoeninger, M. J., and DeNiro, M. J. 1984 Nitrogen and Carbon Isotopic Composition of Bone Collagen from Marine and Terrestrial Animals. Geochimica et Cosmochimica Acta 48 : 625639.Google Scholar
Schoeninger, M. J., and Moore, K. 1992 Bone Stable Isotope Studies in Archaeology. Journal of World Prehistory 6 : 247296.CrossRefGoogle Scholar
Schoeninger, M. J., Sattenspiel, L., and Schurr, M. R 1996 Transitions at Moundville : Diet, Habitation, and Health. American Journal of Physical Anthropology Supplement 22 : 209.Google Scholar
Schoeninger, M. J., van der Merwe, N. J., Moore, K., Lee, J. 1990 Decrease in Diet Quality between the Prehistoric and Contact Periods. In The Archaeology of Mission Santa Catalina de Guale : 2. Biocultural Interpretations of a Population in Transition, edited by Larsen, C. S., pp. 7894. Anthropological Paper No. 68. American Museum of Natural History, New York.Google Scholar
Schurr, M. R., and Redmond, B. G. 1991 Stable Isotope Analysis of Incipient Maize Horticulturalists from the Gard Island 2 Site. Midcontinental Journal of Archaeology 16 : 6984.Google Scholar
Sears, W. H. 1959 Two Weeden Island Period Burial Mounds, Florida : The W. H. Browne Mound, Duval County; The MacKenzie Mound, Marion County. Contributions of the Florida State Museum Social Sciences No. 5. University of Florida, Gainesville.Google Scholar
Shapiro, G., and McEwan, B. G. 1992 Archaeology at San Luis. Part One : The Apalachee Council House. Florida Archaeology No. 6. Florida Bureau of Archaeological Research, Tallahassee.Google Scholar
Shearer, G., and Kohl, D. H. 1994 Information Derived from Variation in the Natural Abundance of N in Complex Biological Systems. In Isotopes in Organic Chemistry : Heavy Atom Isotope Effects, edited by Buncel, E. and H, W.. J. Saunders, pp. 191237. Elsevier Science Press, Amsterdam.Google Scholar
Simmons, S., Larsen, C. S., and Russell, K. F. 1989 Demographic Interpretations from Ossuary Remains in Northern Spanish Florida. American Journal of Physical Anthropology 78 : 302.Google Scholar
Simpson, S. W., Hutchinson, D. L., and Larsen, C. S. 1990 Coping with Stress : Tooth Size, Dental Defects, and Age-at-Death. In The Archaeology of Mission Santa Catalina de Guale : 2. Biocultural Interpretations of a Population in Transition, edited by Larsen, C. S., pp. 6677. Anthropological Paper No. 68. American Museum of Natural History, New York.Google Scholar
Smith, B. D. 1986 The Archaeology of the Southeastern United States : From Dalton to de Soto, 10,500-500 B.P. In Advances in World Archaeology, edited by Wendorf, F. and Close, A.E. vol. 5, pp. 191. Academic Press, New York.Google Scholar
Smith, B. D. 1990 Mississippian Emergence : The Evolution of Ranked Agricultural Societies in Eastern North America. Smithsonian Institution Press, Washington, D.C. Google Scholar
Smith, B. D. 1992 Prehistoric Plant Husbandry in Eastern North America. In The Origins of Agriculture : An International Perspective, edited by Cowan, C. W. and Watson, P.J. pp. 101119. Smithsonian Institution Press, Washington, D.C. Google Scholar
Smith, B. N., and Epstein, S. 1971 Two Categories of C/ C Ratios in Plants. Botanical Gazette 137 : 99104.CrossRefGoogle Scholar
Smith, B. (editor) 1968 [1866] Narratives in the Career of Hernando de Soto in the Conquest of Florida. Translated by B. Smith. Kallman Publishing, Gainesville, Florida.Google Scholar
Teaford, M. F. 1991 Dental Microwear : What Can It Tell Us about Diet and Dental Function? In Advances in Dental Anthropology, edited by Kelley, M. A. and Larsen, C.S. pp. 341356. Wiley-Liss, New York.Google Scholar
Thomas, D. H. 1987 The Archaeology of Mission Santa Catalina de Guale : I. Search and Discovery. Anthropological Paper No. 63, Part 2. American Museum of Natural History, New York.Google Scholar
Thomas, D. H., and Larsen, C. S. 1979 The Anthropology of St. Catherines Island : 2. The Refuge-Deptford Mortuary Complex. Anthropological Paper No. 56, Part 1. American Museum of Natural History, New York.Google Scholar
Tieszen, L. L. 1991 Natural Variations in the Carbon Isotope Values of Plants : Implications for Archaeology, Ecology, and Paleoecology. Journal of Archaeological Science 18 : 227248.CrossRefGoogle Scholar
Tuross, N., Fogel, M. L., Newsom, L., and Doran, G. H. 1994 Subsistence in the Florida Archaic : The Stable- Isotope and Archaeobotanical Evidence from the Windover Site. American Antiquity 59 : 288303.Google Scholar
van der Merwe, N. J., and Vogel, J. C. 1978 C Content of Human Collagen as a Measure of Prehistoric Diet in Woodland North America. Nature 276 : 815816.Google Scholar
Vogel, J. C, and van der Merwe, N. J. 1977 Isotopic Evidence for Early Maize Cultivation in New York State. American Antiquity 42 : 238242.Google Scholar
Wada, E. 1980 Nitrogen Isotope Fractionation and Its Significance in Biogeochemical Processes Occurring in Marine Environments. In Isotope Marine Geochemistry, edited by Goldberg, E. D., Y Horibe, and K. Saruhaski, pp. 375398. Uchida Rokakuho Publishing, Tokyo.Google Scholar
Walker, P. L. 1986 Porotic Hyperostosis in a Marine-Dependent California Indian Population. American Journal of Physical Anthropology 69 : 345354.Google Scholar
Walker, P. L., Lambert, P., and DeNiro, M. J. 1989 The Effects of European Contact on the Health of Alta California Indians. In Columbian Consequences : Archaeological and Historical Perspectives on the Spanish Borderlands West, vol. 1, edited by Thomas, D. H., pp. 349364. Smithsonian Institution Press, Washington, D.C. Google Scholar
Wallace, R. L. 1975 An Archeological, Ethnohistoric, and Biochemical Investigation of the Guale Aborigines of the Georgia Coastal Strand. Unpublished Ph.D. dissertation, University of Florida, Gainesville.Google Scholar
Watson, P. J. 1989 Early Plant Cultivation in the Eastern Woodlands of North America. In Foraging and Farming : The Evolution of Plant Exploitation, edited by Harris, D. R. and Hillman, G.C. pp. 555571. Unwin Hyman, London. 199 Excavations on the Franciscan Frontier : Archaeology at the Fig Springs Mission. University of Florida Press, Gainesville.Google Scholar
Weisman, B. R. 1993 Archaeology of Fig Springs Mission, Ichetucknee Springs State Park. In The Missions of La Florida, edited by McEwan, B. G., pp. 165192. University of Florida Press, Gainesville.Google Scholar
Willey, G. R. 1982 Archaeology of the Florida Gulf Coast. Reprinted. Florida Book Store, Gainesville.Google Scholar
Wymer, D. A. 1987 The Paleoethnobotanical Record of the Lower Tennessee-Cumberland Region. Southeastern Archaeology 6 : 124129.Google Scholar
Worth, J. E. 1995 The Struggle for the Georgia Coast. Anthropological Paper No. 75. American Museum of Natural History, New York.Google Scholar
Yarnell, R. A., and Black, M. J. 1985 Temporal Trends Indicated by a Survey of Archaic and Woodland Plant Food Remains from Southeastern North America. Southeastern Archaeology 4 : 93106.Google Scholar
Zahler J., W, Jr. 1976 A Morphological Analysis of a Protohistoric-Historic Skeletal Population from St. Simons Island, Georgia. Unpublished Master's thesis, University of Florida, Gainesville.Google Scholar