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Effects of habitat and growing season fires on resprouting of shrubs in longleaf pine savannas

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The effects of habitat and timing of growing season fires on resprouting of shrubs were studied in second-growth longleaf pine savannas of the west Gulf coastal plain in the southeastern United States. Within the headwaters of three different drainages of the Calcasieu River in the Kisatchie National Forest in western Louisiana, replicated permanent transects were established that extended from xeric upland longleaf pine savannas into downslope hydric seepage savannas. All shrubs were mapped and tagged, and numbers of stems were counted prior to any fires. Replicated prescribed fires were set early (June) and late (August) during the 1990 growing season; maximum fire temperatures were measured within both upland and seepage habitats within each transect. Shrubs were relocated; stems were recensused two and twelve months after the fires. At least some shrubs of all species resprouted from underground organs; none regenerated solely from seed banks in the soil. There was no reduction in total numbers of stems one year after fires compared to before fires, either in the upland or in seepage savannas. In addition, there was no reduction in total numbers of stems one year after early or late growing season fires. Fire-related mortality was restricted to small shrubs (< 18 stems) and was not associated with high fire temperatures. The rate of resprouting varied among species and between habitats. Resprouting occurred more rapidly in seepage than upland savannas, but more resprouts were produced in upland than seepage savannas one year after fires. In contrast to other upland species, Vaccinium arboreum and V. elliottii delayed resprouting more than two months following fire. Stems of Rhus copallina and Pyrus arbutifolia, species with long rhizomes, increased more after fires in June than fires in August. We suggest that growing season fires may block further recruitment of shrubs into longleaf pine savannas, but reduction in numbers of large shrubs may require additional management.

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References

  • Abrahamson, W. G. 1984a. Post-fire recovery of Florida Lake Wales ridge vegetation. American Journal of Botany 71: 9–21.

    Google Scholar 

  • Abrahamson, W. G. 1984b. Species responses to fire on the Florida Lake Wales ridge. American Journal of Botany 71: 35–43.

    Google Scholar 

  • Allen, C. M., C. H.Stag & Parris, S. D. 1988. Analysis of the vegetation in pitcher plant bogs in two baygalls at Fort Polk in west central Louisiana. Proceedings Louisiana Academy of Sciences 50: 1–7.

    Google Scholar 

  • Boerner, R. E. J. 1981. Forest structure dynamics following wildfire and prescribed burning in the New Jersey Pine Barrens. American Midland Naturalist 105: 321–333.

    Google Scholar 

  • Boyer, W. D. 1990. Growing-season burns for control of hardwoods in longleaf pine stands. USDA Forest Service Research Paper, SO-256.

  • Brewer, J. S. & Platt, W. J. 1994a. Effects of fire season and herbivory on reproductive success in a clonal forb, Pityopsis graminifolia (Michx.). Nutt. Journal of Ecology 82: 665–675.

    Google Scholar 

  • Brewer, J. S. & Platt, W.J. 1994b. Effects of fire season and soil fertility on clonal growth in a pyrophilic forb, Pityopsis graminifolia (Asteraceae). American Journal of Botany 81: 805–814.

    Google Scholar 

  • Bridges, E. L. & Orzell, S.L. 1989a. Longleaf pine communities of the west gulf coastal plain. Natural Areas Journal 9: 246–263.

    Google Scholar 

  • Bridges, E. L. & Orzell, S.L. 1989b. Additions and noteworthy vascular plant collections from Texas and Louisiana with historical, ecological, and geographic notes. Phytologia 66: 12–69.

    Google Scholar 

  • Brooks, A. R., Nixon, E. S. & Neal, J. A. 1993. Woody vegetation of wet creek bottom communities in eastern Texas. Castanea 58: 185–196.

    Google Scholar 

  • Chapin, F. S.III. 1980. The mineral nutrition of wild plants. Annual Review of Ecology and Systematics. 11: 233–260.

    Google Scholar 

  • Chapman, H. H. 1932. Is the longleaf type a climax? Ecology 13: 328–334.

    Google Scholar 

  • Christensen, N. L. 1981. Fire regimes in southeastern ecosystems. In: Mooney, H. A., Bonnickson, J. M., Christensen, N. L., Lotan, J. E. & Reiners, W. A. (eds.) Fire regimes and ecosystem properties, pp. 112–136. USDA Forest Service General Technical Report, Washington, D.C.

  • Correll, D. S. & Johnston, M. C. 1970. Manual of the vascular plants of Texas. Texas Research foundation, Renner, Texas.

    Google Scholar 

  • Edgington, E. S. 1987. Randomization tests. Marcel Dekker, New York, New York.

    Google Scholar 

  • Folkerts, G. W. 1982. The gulf coastal pitcher plant bogs. American Scientist 70: 260–267.

    Google Scholar 

  • Garren, K. H. 1943. Effects of fire on vegetation of the southeastern United States. Botanical Review 9: 617–654.

    Google Scholar 

  • Gibson, D. J., Hartnett, D. C. & Merrill, G. L. S. 1990. Fire temperature heterogeneity in contrasting fire prone habitats: Kansas tall-grass prairie and Florida sandhill. Bulletin of the Torrey Botanical Club 117: 349–356.

    Google Scholar 

  • Gill, M. A. 1981. Fire adaptive traits of vascular plants. In: In: Mooney, H. A., Bonnickson, J. M., Christensen, N. L., Lotan, J. E. & Reiners, W. A. (eds.) Fire regimes and ecosystem properties, pp. 208–230. USDA Forest Service General Technical Report WO-26, Washington, D.C.

  • Gilliam, F. S., Yurish, B. M. & Goodwin, L. M. 1993. Community composition of an old growth longleaf pine forest: Relationship to soil texture. Bulletin of the Torrey Botanical Club 120: 287–294.

    Google Scholar 

  • Glitzenstein, J. S., Platt, W. J. & Streng, D. R., 1995. Effects of fire regime and habitat on tree dynamics in north Florida longleaf pine savannas. Ecological Monographs (in press).

  • Glitzenstein, J. S., Streng, D. R. & Platt, W. J. 1990. Evaluating the effects of season of burn on vegetation in longleaf pine savannas. Final Report, GFC-84–014. Florida Game and Fresh Water Fish Commission, Nongame Wildlife Program, Tallahassee, Florida.

    Google Scholar 

  • Harcombe, P. A., Glitzenstein, J. S., Knox, R. G., Orzell, S. L. & Bridges, E. L. 1995. Vegetation of the longleaf pine region of the west Gulf coastal plain. Proceedings Tall Timbers Fire Ecology Conference 18 (in press).

  • Harper, R. M. 1920. A week in eastern Texas. Bulletin Torrey Botanical Club 47: 289–317.

    Google Scholar 

  • Hartnett, D. C. 1987. Effects of fire on clonal growth dynamics of Pityopsis graminifolia (Asteraceae). American Journal of Botany 74: 1737–1743.

    Google Scholar 

  • Heyward, F. 1939. The relation of fire to stand composition of longleaf pine forests. Ecology 20: 287–304.

    Google Scholar 

  • Huitema, B. E. 1980. The analysis of covariance and alternatives. John Wiley & Sons, New York.

    Google Scholar 

  • James, S. 1984. Lignotubers and Burls. Their structure, function and ecological significance in Mediterranean ecosystems. The Botanical Review 50: 225–266.

    Google Scholar 

  • Kaczor, S. A. & Hartnett, D. C. 1990. Gopher tortoise (Gopherus polyphemus) effects on soils and vegetation in a Florida sandhill community. American Midland Naturalist 123: 100–111.

    Google Scholar 

  • Keeley, J. E. 1981. Reproductive cycles and fire regimes. Pages 231–277. In: Mooney, H. A., Bonnickson, J. M., Christensen, N. L., Lotan, J. E. & Reiners, W. A. (eds.) Fire regimes and ecosystem properties. USDA Forest Service General Technical Report WO-26, Washington, D.C.

  • Komarek, E. V. 1964. The natural history of lightning. Proc. Tall Timbers Fire Ecology Conference 3: 139–183.

    Google Scholar 

  • Komarek, E. V. 1974. Effects of fire on temperate forests and related ecosystems: Southeastern United States. In: Kozolowski, T. T. & Ahlgren, C. E. (eds.) Fire and ecosystems, pp. 251–278. Academic Press, New York.

    Google Scholar 

  • Lemon, P. C. 1949. Successional responses of the herbs in the longleaf-slash pine forest after fire. Ecology 30: 135–145.

    Google Scholar 

  • Lemon, P. C. 1967. Effects of fire on herbs of the southeastern United States and central Africa. Proceedings Tall Timbers Fire Ecology Conference 6: 112–127.

    Google Scholar 

  • MacRoberts, B. R. & MacRoberts, M. H. 1990. Vascular flora of two west Louisiana pitcher plant bogs. Phytologia 68: 271–275.

    Google Scholar 

  • MacRoberts, B. R. & MacRoberts, M. H. 1991. Floristics of three bogs in western Louisiana. Phytologia 70: 135–141.

    Google Scholar 

  • MacRoberts, B. R. & MacRoberts, M. H. 1992. Floristics of four small bogs in western Louisiana, with observations on species/area relationships. Phytologia 73: 49–56.

    Google Scholar 

  • Martin, D. L. & Smith, L. M. 1991. A survey and description of the natural plant communities of the Kisatchie National Forest, Winn and Kisatchie districts. Louisiana Department of Wildlife and Fisheries, Baton Rouge, Louisiana.

    Google Scholar 

  • Matlack, G. R. & Good, R. E. 1990. Spatial heterogeneity in the soil seed bank of a mature coastal plain forest. Bulletin of the Torrey Botanical Club 117: 143–152.

    Google Scholar 

  • Matlack, G. R., Gibson, D. J. & Good, R. E. 1993. Clonal propogation, local disturbance, and the structure of vegetation: Ericaceous shrubs in the pine barrens of New Jersey. Biological Convervation 63: 1–8.

    Google Scholar 

  • Means, D. B. & Mohler, P. E. 1979. The pine barrens treefrog: Fire, seepage bogs, and management implications. In: Odum, R. R. & Landers, L. L. (eds.) Proceedings of rare and endangered wildlife symposium, pp. 77–83. Georgia Department of Natural Resources, Game and Fish Division, Technical Bulletin WL4.

  • Milliken, G. A. & Johnson, D. E. 1984. Analysis of messy data. Volume I: Designed experiments. Lifetime Learning Publications.

  • Miyanishi, K. & Kellman, M. 1986. The role of root nutrient reserves in regrowth of two savanna shrubs. Canadian Journal of Botany 64: 1244–1248.

    Google Scholar 

  • Neter, J., Wasserman, W. & Kutner, M. H. 1990. Applied linear statistical models 3rd edition. Irwin Inc. Homewood, II.

    Google Scholar 

  • Olson, M. S. 1992. Effects of early and late growing season fires on resprouting of shrubs in upland longleaf pine savannas and embedded seepage savannas. Masters Thesis. Louisiana State University, Baton Rouge, LA.

  • Peet, R. K. & Allard, D. J. 1995. Longleaf pine vegetation of the southern Atlantic and eastern Gulf regions: A preliminary classification. Proceedings Tall Timber Fire Ecology Conference 18 (in press).

  • Platt, W. J. & Schwartz, M. 1990. Temperate hardwood forests. In: Myers, R. & Ewel, J. J. (eds.) Ecosystems of Florida, pp. 194–229. Academic Press, New York.

    Google Scholar 

  • Platt, W. J., Evans, G. W. & Davis, M. M. 1988a. Effects of fire season on flowering of forbs and shrubs in longleaf pine forests. Oecologia 76: 353–363.

    Google Scholar 

  • Platt, W. J., Evans, G. W. & Rathbun, S. L. 1988b. The population dynamics of a long-lived conifer (Pinus palustris). American Naturalist. 131: 491–525.

    Google Scholar 

  • Platt, W. J., Glitzenstein, J. S. & Streng, D. R. 1991. Evaluating pyrogenicity and its effects on vegetation in longleaf pine savannas. Proceedings of the 17th Tall Timbers Fire Ecology Conference, pp. 143–161. Tall Timbers Research Station.

  • Potkin, C. & Roff, D. A. 1993. Distribution-free and robust statistical methods: Viable alternatives to parametric statistics? Ecology 74: 1617–1628.

    Google Scholar 

  • Radford, A. E., Ahles, H. E. & Bell, R. C. 1981. Manual of the vascular flora of the Carolinas. University of North Carolina Press, Chapel Hill.

    Google Scholar 

  • Rebertus, A. J., Williamson, G. B. & Moser, E.B. 1989. Fire-induced changes in Quercus laevis spatial pattern in Florida sandhills. Journal of Ecology 77: 638–650.

    Google Scholar 

  • Rebertus, A. J., Williamson, G. B. & Platt, W. J. 1995. Impacts of temporal variation in fire regime on savanna oaks and pines. Proceedings Tall Timbers Fire Ecology Conference 18 (in press).

  • Reiners, W. A. 1965. Ecology of a heath-shrub synusia in the pine barrens of Long Island, New York. Bulletin of the Torrey Botanical Club 92: 448–464.

    Google Scholar 

  • Rizzini, C. T. 1965. Experimental studies on seedling development of Cerrado woody plants. Annals of the Missouri Botanical Garden 52: 410–426.

    Google Scholar 

  • Robbins, L. E. & Myers, R. L. 1992. Seasonal effects of prescribed burning in Florida: A review. Tall Timbers Research Station Miscellaneous Publication 8.

  • Sarmiento, G. & Monasterio, M. 1983. Life forms and phenology. In: Bourdiere, F. (ed.) Ecosystems of the world. 13 tropical savannas, pp. 79–108. Elsevier Scientific Publishing Co., New York.

    Google Scholar 

  • SAS Institute Inc. 1987. SAS/STAT guide for personal computers, Version 6 edition. SAS Institute, Cary, N.C.

    Google Scholar 

  • Schneider, R. E. 1988. The effect of variation in season of burning on pine-wiregrass savanna in the green swamp, North Carolina. Dissertation. Duke University, Durham, North Carolina.

  • Schwarz, G. F. 1907. The longleaf pine in virgin forest. John Wiley & Sons, New York.

    Google Scholar 

  • Steel, R. G. & Torrie, J. H. 1980. Principles and procedures of statistics: A biometrical approach. McGraw-Hill, New York.

    Google Scholar 

  • Streng, D. R. & Harcombe, P. A. 1982. Why don't east Texas savannas grow up to forest? American Midland Naturalist 108: 278–294.

    Google Scholar 

  • Streng, D. R., Glitzenstein, J. S. & Platt, W. J. 1995. Evaluating effects of season of burn on longleaf pine forests: A critical literature review and some results from an ongoing long-term study. Proceedings Tall Timbers Fire Ecology Conference 18 (in press).

  • Wahlenberg, W. G. 1946. Longleaf pine: Its use, ecology, regeneration, protection, growth, and management. Charles Lathrop Pack Forestry Foundation, Washington D.C.

    Google Scholar 

  • Waldrop, T. A., White, D. L. & Jones, S. M. 1992. Fire regimes for pine-grassland communities in the southeastern United States. Forest Ecology and Management 47: 195–210.

    Google Scholar 

  • Walker, J. & Peet, R. K. 1983. Composition and species diversity of pine-wiregrass savannas of the Green Swamp, North Carolina. Vegetatio 55: 163–179.

    Google Scholar 

  • Ware, S., Frost, C. & Doerr, P. D. 1993. Southern mixed hardwood forest: The former longleaf pine forest. In: Martin, W. H., Boyce, S. G. & Echternacht, A. C. (eds.) Biodiversity of the Southeastern United States, pp. 447–493. Wiley & Sons, New York.

    Google Scholar 

  • Williamson, G. B. & Black, E. M. 1981. High temperature of forest fires under pines as a selective advantage over oaks. Nature 293: 643–644.

    Google Scholar 

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Olson, M.S., Platt, W.J. Effects of habitat and growing season fires on resprouting of shrubs in longleaf pine savannas. Vegetatio 119, 101–118 (1995). https://doi.org/10.1007/BF00045593

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