Effects of disturbance intensity and frequency on early old‐field succession

Journal of Vegetation Science - Tập 12 Số 5 - Trang 721-728 - 2001
Beverly Collins1,2, Gary Wein2, Tom Philippi2
1Current address: Department of Biological Sciences, Florida International University, Miami, FL 33199 USA
2Savannah River Ecology Laboratory, P. O. Drawer E, Aiken, SC, USA 29802

Tóm tắt

Abstract. Early old‐field succession provides a model system for examining vegetation response to disturbance frequency and intensity within a manageable time scale. Disturbance frequency and intensity can interact with colonization and competition to influence relative abundance of earlier and later successional species and determine, respectively, how often and how far succession can be reset. We tested the joint effects of disturbance frequency and intensity on vegetation response (species richness, abundance, canopy structure) during the first six years of succession by clipping the dominant species (D) or all species (T) in spring and fall of each year (S), once per year in summer (Y1), each two years in summer (Y2), or each four years in summer (Y4). Vegetation response reflected disturbance effects on expansion of a later monospecific dominant perennial herb, Solidago altissima, and persistence of the early, richer flora of annuals. A more abundant and taller top Solidago canopy developed on plots clipped each 2 yr or less frequently. Plots clipped yearly or seasonally were richer, but had less abundant, shorter, and differently stratified canopy. Disturbance mediated the relative abundance of early and later successional species; however, frequency and intensity effects were not completely congruent. Persistence of a richer early successional flora increased through the most frequent disturbance (S), and was magnified by disturbance intensity. Disturbance as extreme as clipping all vegetation twice yearly did not cause a drop in species richness, but maintained the early successional community over the first six years of succession. We conclude that clipping disturbance influenced the rate of succession, but the early community could rebound through the range of disturbance frequency and intensity tested.

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Tài liệu tham khảo

Anon., 1999, SAS version 6.12

10.2307/1941323

Armesto J. J., 1986, Removal experiments to test mechanisms of plant succession in oldfields, Vegetatio, 66, 85, 10.1007/BF00045498

10.2307/1940262

10.1111/j.1442-9993.1993.tb00438.x

Clarke K. R., 1994, Change in marine communities: an approach to statistical analyses and interpretation

10.2307/3546963

10.1023/A:1009715519836

10.2307/1941207

10.1126/science.199.4335.1302

10.1007/BF00346960

10.1016/B978-0-12-554520-4.50022-8

10.1111/j.0030-1299.2005.13557.x

10.2307/3235919

10.2307/2996832

10.2307/3545388

10.2307/2996123

10.2307/3237082

10.2307/1936791

10.1086/283366

Huston M., 1994, Biological diversity: the coexistence of species on changing landscapes

10.2307/3237083

10.2307/3237081

Littell R. C., 1996, SAS system for mixed models

10.2307/1939272

10.1086/416457

10.1086/283180

Radford A. E., 1968, Manual of the vascular flora of the Carolinas

Sease E. C., 1970, Soil survey of Shelby county Tennessee

10.1002/(SICI)1099-095X(199801/02)9:1<37::AID-ENV284>3.0.CO;2-T

10.2307/1940604

10.2307/1940812