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Vegetation patterns related to environmental factors in a Negev Desert watershed

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Plant community ecology: Papers in honor of Robert H. Whittaker

Part of the book series: Advances in vegetation science ((AIVS,volume 7))

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Abstract

Three strip transects, each ca 100 contiguous 0.5 × 1 m2 quadrats, were sampled during the spring bloom of March 1981 across four surface structural units of a Negev Desert research watershed at Sede Boqer, Israel. Presence of all vascular plants was recorded. Data were subjected to detrended correspondence analysis (DCA ordination), and resulting spatial patterns of species distribution and abundance were compared. Large-scale gradients of vegetation were related to differences in soil moisture availability among the four structural units. Where micro-scale vegetation patterns were important, these correlated with rock and crevice microtopography. Species richness was influenced by high numbers of therophytes on the dry upper slope of the watershed and their reduced importance on the lower three units. Relationships between vegetational patterns and known ecosystem properties of the watershed are discussed.

Nomenclature follows Zohary (1962).

We thank the staff of the Desert Research Institute at Sede Boqer for facilities and field assistance in the execution of the transect work for this study. In particular, we wish to thank Dr Yitzchak Gutterman, Ms Jael Bar, and Mr Bert Boeken for their help in the field and identification of species. We also thank Dr Avinoam Danin for help with species identification. Computer analyses were conducted by the senior author at Cornell University, where we thank Mr Hugh Gauch, Jr., for advice and assistance with the computer programs, and his comments on interpretation of the data. We thank Dr Danin and Prof. Zev Naveh for advice and comment.

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References

  • Arkin, Y. & Braun, M., 1965. Type sections of Upper Cretaceous formations in the northern Negev. Geol. Surv., Stratigraphie Section 2A. Jerusalem.

    Google Scholar 

  • Danin, A., Orshan, G. & Zohary, M., 1975. The vegetation of the northern Negev and the Judean Desert of Israel. Isr. J. Bot. 24: 118–172.

    Google Scholar 

  • Ellner, S., Shmida, A., 1982. Why are adaptations for long range seed dispersal rare in desert plants? Oecologia 51: 133–134.

    Google Scholar 

  • Evenari, M., Shanan, L., Tadmor, N., 1971. The Negev: the challenge of a desert. Harvard University Press, Cambridge, Massachusetts. 343 pp.

    Google Scholar 

  • Friedman, J., Orshan, G., Ziger-Cfir, Y., 1977. Suppression of annuals by Artemisia herba-alba in the Negev Desert of Israel. J. Ecol. 65: 413–426.

    Article  Google Scholar 

  • Gauch, H. G., 1982. Multivariate Analysis in Community Ecology. Cambridge Univ. Press, Cambridge. 298 pp.

    Google Scholar 

  • Gauch, H. G., Whittaker, R. H., 1972. Coenocline simulation. Ecology 53: 446–451.

    Article  Google Scholar 

  • Gauch, H. G., Whittaker, R. H., Wentworth, T. R., 1977. A comparative study of reciprocal averaging and other ordination techniques. J. Ecol. 65: 157–174.

    Article  Google Scholar 

  • Greig-Smith, P., 1964. Quantitative Plant Ecology, 2nd ed. Butterworths, London. 256 pp.

    Google Scholar 

  • Hill, M. O., 1973. Reciprocal averaging: an eigenvector method of ordination. J. Ecol. 61: 237–249.

    Article  Google Scholar 

  • Hill, M. O., 1974. Correspondence analysis: a neglected multivariate method. J. Roy. Stat. Soc. Ser. C 23: 240–254.

    Google Scholar 

  • Hill, M. O., 1979. DECORANA — A FORTRAN program for detrended correspondence analysis and reciprocal averaging. Section of Ecology and Systematics, Cornell University, Ithaca, New York 14853.

    Google Scholar 

  • Hill, M. O., Gauch, H. G., 1980. Detrended correspondence analysis, an improved ordination technique. Vegetatio 42: 47–58.

    Article  Google Scholar 

  • Kershaw, K. A., 1957. The use of cover and frequency in the detection of pattern in plant communities. Ecology 38: 291–299.

    Article  Google Scholar 

  • Loria, M., Noy Meir, I., 1979. Dynamics of some annual populations in a desert loess plain. Isr. J. Bot. 28: 211–225.

    Google Scholar 

  • Olsvig(-Whittaker), L., 1979. Pattern and diversity analysis of the irradiated oak-pine forest, Brookhaven, New York. Vegetatio 40: 67–78.

    Google Scholar 

  • Pielou, E. C., 1974. Population and Community Ecology: principles and methods. Gordon & Breach, New York. 424 pp.

    Google Scholar 

  • Pomeroy, L. R., 1974. Cyclings of Essential Elements. Dowden, Hutchinson & Ross, Stroudsburg, Pennsylvania. 373 pp.

    Google Scholar 

  • Shachak, M., 1983. Some aspects of the relationship between experimental scale and ecosystem properties. Submitted to Oecologia.

    Google Scholar 

  • Shmida, A., Whittaker, R. H., 1981. Pattern and biological microsite effects in two shrub communities, southern California. Ecology 62: 234–251.

    Article  Google Scholar 

  • Whittaker, R. H., 1960. Vegetation of the Siskiyou Mountains, Oregon and California. Ecol. Monogr. 30: 279–338.

    Article  Google Scholar 

  • Whittaker, R. H., 1972. Evolution and measurement of species diversity. Taxon 21: 213–251.

    Article  Google Scholar 

  • Whittaker, R. H., 1975. Communities and Ecosystems, 2nd ed. Macmillan, New York. 385 pp.

    Google Scholar 

  • Whittaker, R. H., 1977. Evolution of species diversity in land communities. Evol. Biol. 10: 1–67.

    Google Scholar 

  • Whittaker, R. H., Gilbert, L. E., Connell, J. H., 1979. Analysis of two-phase pattern in a mesquite grassland, Texas. J. Ecol. 67: 935–952.

    Google Scholar 

  • Whittaker, R. H., Naveh, Z., 1979. Analysis of two phase patterns. In: Patil, G. P., Rosenzweig, M. L. (eds.), Contemporary Quantitative Ecology and Related Ecometrics, pp. 157–165. Stat. Ecol. Ser. 12. International Cooperative Publishing House, Burtonsville, Maryland.

    Google Scholar 

  • Whittaker, R. H., Niering, W. A., Crisp, M. D., 1979. Structure, pattern, and diversity of a mallee community in New South Wales. Vegetatio 39: 65–76.

    Article  Google Scholar 

  • Wilson, M. V., Mohler, C. L., 1982. GRADBETA — A FORTRAN program for measuring compositional change along gradients. Section of Ecology and Systematics, Cornell University, Ithaca, New York 14853.

    Google Scholar 

  • Wilson, M. W. , Mohler, C. L., 1983. Measuring compositional change along gradients. Vegetatio (in press).

    Google Scholar 

  • Yaalon, D. H., Dan, J., 1974. Accumulation of loess derived deposits in the semidesert and desert fringe areas of Israel. Zeitschr. für Geom. N. P. 20: 91–105.

    Google Scholar 

  • Yair, A., Danin, A., 1980. Spatial variation in vegetation as related to the soil moisture regime over an arid limestone hillside, northern Negev, Israel. Oecologia 47: 83–88.

    Google Scholar 

  • Yair, A., de Ploey, J., 1979. Field observations and laboratory experiments concerning the creep process of rock blocks in an arid environment. Catena 6: 245–258.

    Google Scholar 

  • Yair, A., Lavee, H., 1981. An investigation of source areas of sediment and sediment transport by overland flow along arid hillslopes. In: Proc. Florence Symp. Erosion and Sediment Transport Measurement, pp. 433–446. IAHS Publ. 133.

    Google Scholar 

  • Yair, A. , Shachak, M., 1982. A case study of energy, water, and soil flow chains in an arid ecosystem. Oecologia (in press).

    Google Scholar 

  • Yair, A., Sharon, D., Lavee, H., 1978. An intrumented watershed for the study of partial area contribution of runoff in an arid area. Zeitschr. für Geom. Suppl. B 29: 71–82.

    Google Scholar 

  • Yair, A., Sharon, D., Lavee, H., 1980. Trends in runoff and erosion processes over an arid limestone hillside, northern Negev, Israel. Hydrol. Sei. Bull. 25: 243–255.

    Google Scholar 

  • Zohary, M., 1962. Plant Life of Palestine. Ronald Press, New York. 262 pp.

    Google Scholar 

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R. K. Peet

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© 1985 Dr W. Junk Publishers, Dordrecht

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Olsvig-Whittaker, L., Shachak, M., Yair, A. (1985). Vegetation patterns related to environmental factors in a Negev Desert watershed. In: Peet, R.K. (eds) Plant community ecology: Papers in honor of Robert H. Whittaker. Advances in vegetation science, vol 7. Springer, Dordrecht. https://doi.org/10.1007/978-94-009-5526-4_11

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  • DOI: https://doi.org/10.1007/978-94-009-5526-4_11

  • Publisher Name: Springer, Dordrecht

  • Print ISBN: 978-94-010-8939-5

  • Online ISBN: 978-94-009-5526-4

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