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Genetic variability in white-tailed deer
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  • Original Article
  • Published: 01 February 1988

Genetic variability in white-tailed deer

  • David D Breshears1 nAff2,
  • Michael H Smith1,
  • E Gus Cothran1 na1 &
  • …
  • Paul E Johns1 

Heredity volume 60, pages 139–146 (1988)Cite this article

  • 3745 Accesses

  • 19 Citations

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Abstract

Genetic variability at 36 loci was studied in white-tailed deer (Odocoileus virginianus) populations, on the Savannah River Plant (SRP) in South Carolina. Mean multilocus heterozygosity (H̄), percentage of polymorphic loci (P) and average number of alleles per locus (A) for white-tailed deer were calculated and compared with values for white-tailed deer from several locations (SRP deer: H̄ = 9·9 per cent, P0·05 = 30.6 per cent, A = 1·89; white-tailed deer overall: H̄ = 10·4 per cent, P0·05 = 32.3 per cent, A = 1·94). Frequency distributions for single locus heterozygosity values (h) and the number of alleles per locus for white-tailed deer were found to be significantly different from those of mammals in general. Analysis of single-locus data based on quaternary structure and functional groups of proteins failed to demonstrate expected differences as predicted from the literature. White-tailed deer have a high level of heterozygosity, but they do not exhibit many of the life history and environmental characteristics associated with high heterozygosity in other animals.

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References

  • Baccus, R, Hillestad, H O, Johns, P E, Manlove, M N, Marchinton, R L, and Smith, M H. 1977. Prenatal selection in white-tailed deer. Proc Ann Conf Southeast Assoc Fish & Wildl Agencies, 31, 173–179.

    Google Scholar 

  • Baccus, R, Ryman, N, Smith, M H, Reuterwall, C, and Cameron, D. 1983. Genetic variability and differentiation of large grazing mammals. J Mammal, 64, 109–120.

    Article  Google Scholar 

  • Branan, W V. 1984. Ecology and Management of Deer in Suriname, South America. Unpublished Ph.D. Dissertation University of Georgia, Athens. 154 pp.

    Google Scholar 

  • Chesser, R K, Smith, M H, Johns, P E, Manlove, M N, Straney, D O, and Baccus, R. 1982. Spatial, temporal and age-dependent heterozygosity of beta-hemoglobin in white-tailed deer. Wildl Mgmt, 46, 983–990.

    Article  Google Scholar 

  • Chesser, R K, and Smith, M H. Relationship of genetic variation to growth and reproduction in the white-tailed deer. Proc Biology of the Cervidae Symp, Front Royal, Va.In press.

  • Cothran, E G, Chesser, R K, Smith, M H, and Johns, P E. 1983. Influences of genetic variability and maternal factors on fetal growth in white-tailed deer. Evolution, 37, 282–291.

    Article  Google Scholar 

  • Crow, J F, and Kimura, M. 1970. An Introduction to Population Genetics Theory. Harper and Row, New York.

    Google Scholar 

  • Dimichele, L, and Powers, D A. 1982. Physiological basis for swimming endurance differences between Ldh-B genotypes of Fundulus heteroclitus. Science, 216, 1014–1016.

    Article  CAS  Google Scholar 

  • Dratch, P A. 1983. Genetic Subdivision in Scottish Red Deer and North American Wapiti. Ph.D. Dissertation, University of Edinburgh, Edinburgh, 150pp.

    Google Scholar 

  • Erickson, M. 1979. Genetics of White-Tailed Deer of South Texas. M.Sc. Thesis, Texas Tech University, Lubbock, 45pp.

    Google Scholar 

  • Gillespie, J H, and Kojima, K. 1968. The degree of polymorphisms in enzymes involved in energy production compared to that in non-specific enzymes in two Drosphila ananassae populations. Proc Natl Acad Sci, 61, 582–585.

    Article  CAS  Google Scholar 

  • Gyllensten, U, Ryman, N, Reuterwall, C, and Dratch, P. 1983. Genetic differentiation in four European subspecies of red deer (Cervus elaphus L.). Heredity, 51, 561–580.

    Article  Google Scholar 

  • Hall, E R. 1981. The Mammals of North America, 2nd Edition, Vols. I and II. John Wiley & Sons, 1181pp.

    Google Scholar 

  • Harris, H, and Hopkinson, D A. 1976. Handbook of 'Enzyme Electrophoresis in Human Genetics. North Holland Publ. Co., Amsterdam.

    Google Scholar 

  • Hartl, D L. 1980. Principles of Population Genetics. Sinauer Associates, Sunderland, Massachusetts, 488pp.

    Google Scholar 

  • Hillestad, H O. 1984. Stocking and Genetic Variability of White-Tailed Deer in the Southeastern United States. Ph.D. Dissertation, University of Georgia, Athens, 112pp.

    Google Scholar 

  • Huisman, T H J, Dozy, A M, Blunt, M H, and Hayes, F A. 1968. The hemoglobin heterogeneity of the Virginia white-tailed deer: a possible genetic explanation. Arch Biochem Biophys, 127, 711–717.

    Article  CAS  Google Scholar 

  • Johns, P E, Baccus, R, Manlove, M N, Pinder, J E, III, and Smith, M H. 1977. Reproductive patterns, productivity and genetic variability in adjacent white-tailed deer populations. Proc Ann Conf Southeast Assoc Game and Fish Comm, 31, 167–172.

    Google Scholar 

  • Livshits, G, and Kobyliansky, E. 1985. Lerner's concept of developmental homeostasis and the problem of heterozygosity level in natural populations. Heredity, 55, 341–353.

    Article  Google Scholar 

  • Manlove, M H. 1979. Genetic Similarity Among Contiguous and Isolated Populations of White-Tailed Deer in Michigan. M.S. Thesis. Michigan State University, East Lansing, 26pp.

    Google Scholar 

  • Manlove, M N, Avise, J C, Hillestad, H O, Ramsey, P R, Smith, M H, and Straney, D O. 1975. Starch gel electrophoresis for the study of population genetics in white-tailed deer. Proc Ann Conf Southeast Assoc Game Fish Comm, 29, 392–403.

    Google Scholar 

  • Manlove, M N, Smith, M H, Hillestad, H O, Fuller, S E, Johns, P E, and Straney, D O. 1976. Genetic subdivision in a herd of white-tailed deer as demonstrated by spatial shifts in gene frequencies. Proc Ann Conf Southeast Assoc Game and Fish Comm, 30, 487–492.

    Google Scholar 

  • Mitton, J B, and Grant, M C. 1984. Associations among protein heterozygosity, growth rate and developmental homeostasis. Ann Rev Ecol and Syst, 15, 479–499.

    Article  Google Scholar 

  • Nei, M. 1975. Molecular Population Genetics and Evolution. North Holland Publ. Co., Amsterdam, 278pp.

    Google Scholar 

  • Nevo, E. 1978. Genetic variation in natural populations: patterns and theory. Theor Pop Biol, 13, 121–177.

    Article  CAS  Google Scholar 

  • Nevo, E, Beiles, A, and Ben-Shlono, R. 1984. The evolutionary significance of genetic diversity: ecological, demographic and life history correlates. In Mani, G. S. Evolutionary Dynamics of Genetic Diversity, pp. 132–213 Proceedings, Manchester 1983, Springer-Verlag.

    Google Scholar 

  • Nichols, E A, Chapman, V M, and Ruddle, F H. 1973. Polymorphism and linkage for mannosephosphate isomerase in Mus musculus. Biochem Genet, 8, 47–53.

    Article  CAS  Google Scholar 

  • Price, P K, Cartwright, M, and Rogers, M J. 1979. Genic variation in white-tailed deer from Arkansas. Proc Ark Acad Sci, 23, 64–66.

    Google Scholar 

  • Ramsey, P R, Avise, J O, Smith, M H, and Urbston, D F. 1979. Biochemical variation and genetic heterogeneity in South Carolina deer populations. J Wildl Mgmt, 43, 136–142.

    Article  Google Scholar 

  • Ryman, N, Reuterwall, C, Nygren, K, and Nygren, T. 1980. Genetic variation and differentiation in Sandinavian moose (Alces alces): Are large mammals monomorphic? Evolution, 34, 1037–1049.

    Google Scholar 

  • Sanders, E. 1941. A preliminary report on the study of white-tailed deer in the Edwards Plateau of Texas. J Wildl Mgmt, 5, 182–190.

    Article  Google Scholar 

  • Scribner, K T, Smith, M H, and Johns, P E. 1984. Age, condition, and genetic effects on incidence of spike bucks. Proc Ann Conf Southeast Assoc Fish and Wildl Agencies, 38, 23–32.

    Google Scholar 

  • Scribner, K T, Wooten, M C, Smith, M H, and Johns, P E. 1985. Demographic and genetic characteristics of white-tailed deer populations subjected to still or dog hunt-ing. In Beasom, S. L. and Roberson, S. F. (eds.) Proc Symposium on Game Harvest Management, Caesar Kleberg Wildl Research Inst, Kingsville, TX, pp. 197–212.

    Google Scholar 

  • Selander, R K, Smith, M H, Yang, S Y, Johnson, W E, and Gentry, J B. 1971. IV. Biochemical polymorphism and systematics in the genus Peromyscus. I. Variation in the old-field mouse (Peromyscus polionotus). Studies in Genetics VI, 50–90, Univ. Texas Publ. 7103.

    Google Scholar 

  • Sheffield, S R. 1983. Genetic Variation and Differentiation in White-Tailed Deer (Odocoileus virginianus) Populations in Maryland. M.S. Thesis. Frostburg State Coll., Frostburg, 92pp.

    Google Scholar 

  • Smith, M H, Branan, W V, Marchinton, R L, Johns, P E, and Wooten, M C. 1986. Genetic and morphological comparisons of red brocket, brown brocket and white-tailed deer. J Mammal, 67, 103–111.

    Article  Google Scholar 

  • Smith, M H, Hillestad, H O, Baccus, R, and Manlove, M N. 1984. Population genetics of the white-tailed deer. In Halls, L. (ed.) Ecology and Management of White-Tailed Deer, Stackpole books, New York, pp. 119–128.

    Google Scholar 

  • Smith, M H, Chesser, R K, Cothran, E G, and Johns, P E. 1982. Genetic variability and antler growth in a natural population of white-tailed deer. In Brown, R. D. (ed.) Antler Development in Cervidae, Caesar Kleberg Wildl. Research Institute, Kingsville, Texas, pp. 365–387.

    Google Scholar 

  • Smith, M H, Hillestad, H O, Manlove, M N, and Marchinton, R L. 1976. Use of population genetics data for the management of fish and wildlife populations. Trans N Amer Wildl Nat Res Conf, 41, 119–123.

    Google Scholar 

  • Smith, M H, Manlove, M N, and Joule, J. 1978. Spatial and temporal dynamics of the genetic organization of small mammal populations. In Snyder, D. P. (ed.). Populations of Small Mammals Under Natural Conditions, Vol. 5, Univ. of Pittsburgh Press, pp. 99–113.

    Google Scholar 

  • Sokal, R R, and Rohlf, F J. 1969. Biometry. W. H. Freeman and Co. San Francisco, 776pp.

    Google Scholar 

  • Tamarin, R H, and Krebs, C J. 1973. Selection at the transferrin locus in cropped vole populations. Heredity, 30, 53–62.

    Article  CAS  Google Scholar 

  • Urbston, D F. 1976. Descriptive Aspects of Two Fawn Populations as Delineated by Reproductive Differences. Unpublished Ph.D. Dissertation, Virginia Polytechnic Institute, Blacksburg, 104pp.

    Google Scholar 

  • Ward, R D. 1977. Relationship between enzyme heterozygosity and quaternary structure. Biochem Gen, 15, 123–135.

    Article  CAS  Google Scholar 

  • Wooten, M C, and Smith, M H. 1985. Large mammals are genetically less variable? Evolution, 39, 210–212.

    Article  Google Scholar 

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Author information

Author notes
  1. David D Breshears

    Present address: Department of Radiology and Radiation Biology, Colorado State University, Fort Collins, CO, 80523, U.S.A.

  2. E Gus Cothran: University of Kentucky, Department of Veterinary Sciences, 102 Animal Pathology Building, Lexington, KY 40546, U.S.A.

Authors and Affiliations

  1. Savannah River Ecology Laboratory, Drawer E. Aiken, SC 29801, USA

    David D Breshears, Michael H Smith, E Gus Cothran & Paul E Johns

Authors
  1. David D Breshears
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  2. Michael H Smith
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  3. E Gus Cothran
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  4. Paul E Johns
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Cite this article

Breshears, D., Smith, M., Cothran, E. et al. Genetic variability in white-tailed deer. Heredity 60, 139–146 (1988). https://doi.org/10.1038/hdy.1988.20

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  • Received: 22 April 1987

  • Issue date: 01 February 1988

  • DOI: https://doi.org/10.1038/hdy.1988.20

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