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Shrub invasion into subalpine vegetation: implications for restoration of the native ecosystem

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Abstract

The ability of plant communities to recover after non-native species invasion will depend upon the nature of their soil seed bank and seed rain characteristics. This study assessed changes in the soil seed bank and seed rain associated with the invasion of the non-native shrub Cytisus scoparius in subalpine vegetation. Soil seed bank and seed rain composition, density and richness were investigated at three areas of different stages of invasion: (i) recent (8–10 years), (ii) mature (15–16 years) and (iii) long-term (25 years). There were few changes in seed bank composition or richness regardless of invasion stage. By contrast, the seed rain composition, richness and density was substantially different within long-invaded areas. Very few seeds were able to colonise the dense barrier characteristic of larger, more mature C. scoparius stands. Some prominent herbs from the native vegetation were under-represented or absent from the seed bank, both in invaded and uninvaded areas. Laboratory germination experiments demonstrated that most native species germinate easily, which may imply a transient seed bank, rather than a persistent one. The majority of herbaceous and shrub species were capable of resprouting vegetatively. Therefore, regeneration appeared more reliant on the bud and tuber bank than a persistent soil seed bank. The dominance of graminoid species and C. scoparius rather than other herbaceous, shrub or tree species suggests that the regenerating vegetation will be dominated by grass species and/or C. scoparius. Hence, in areas where long-invaded C.␣scoparius stands are present the recovery of native subalpine vegetation maybe difficult. Recovery may only be possible through wind dispersal from the surrounding intact vegetation or through actively reseeding the area. This study highlights the importance of early intervention in invasive species management.

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Abbreviations

Ross:

(2003)

References

  • Alexander J.M., D’Antonio C.M. (2003). Seed bank dynamics of French Broom in coastal California grasslands: Effects of stand age and prescribed burning on control and restoration. Restoration Ecology 11: 185–197

    Article  Google Scholar 

  • Ashton D.H., and Williams R.J., (1989). Dynamics of sub-alpine vegetation in the Victorian region. In: Good R. (ed). The Scientific Significance of the Australian Alps, Proceedings of the First Fenner Conference. Australian Alps Liaison Committee, Canberra, pp. 143–168, September 1988

    Google Scholar 

  • Auld T.D., Keith D.A., Bradstock R.A. (2000). Patterns in longevity of soil seedbanks in fire-prone communities of southeastern Australia. Australian Journal of Botany 48: 539–548

    Article  Google Scholar 

  • Bakker J.P., Poschlod P., Strykstra R.J., Bekker R.M., Thompson K. (1996). Seed banks and seed dispersal: important topics in restoration ecology. Acta Botanica Neerlandica 45: 461–490

    Google Scholar 

  • Billings W.D., Mooney H.A. (1968). The ecology of arctic and alpine plants. Biological Review 43: 481–489

    Article  Google Scholar 

  • Bossard C.C. (1991). The role of habitat disturbance, seed predation and ant dispersal on establishment of the exotic shrub Cytisus scoparius in California. American Midland Naturalist 126: 1–13

    Article  Google Scholar 

  • Bossard C.C. (1993). Seed germination in the exotic shrub Cytisus scoparius (Scotch broom) in California. Madroño 40: 47–61

    Google Scholar 

  • Bray R.J., Curtis J.T. (1957). An ordination of the upland forest communities of southern Wisconsin. Ecological Monographs 27: 325–349

    Article  Google Scholar 

  • Clarke K.R. (1993). Non-parametric multivariate analyses of changes in community structure. Australian Journal of Ecology 18: 117–143

    Article  Google Scholar 

  • D’Antonio C., Meyerson L.A. (2002). Exotic plant species as problems and solutions in ecological restoration: a synthesis. Restoration Ecology 4: 703–713

    Article  Google Scholar 

  • Dessaint F., Chadoeuf R., Barralis G., (1991). Spatial pattern analysis of weed seeds in the cultivated soil sed bank. Journal of Applied Ecology 28: 721–730

    Article  Google Scholar 

  • Downey P.O., Smith J.M.B. (2000). Demography of the invasive shrub Scotch Broom (Cytisus scoparius) at Barrington Tops, New South Wales: insights for management. Austral Ecology 25: 477–485

    Article  Google Scholar 

  • Edwards G.R., Crawley M.J., (1999). Herbivores, seed banks, and seedling establishment in mesic grassland. Journal of Ecology 87: 423–435

    Article  Google Scholar 

  • Faith D.P., Minchin P.R., Belbin L. (1987). Compositional dissimilarity as a robust measure of ecological distance. Vegetatio 69: 57–68

    Article  Google Scholar 

  • Fallavollita E. and Norris K. 1992. The occurrence of Broom, Cytisus scoparius, in the Australian Alps National Parks. A report prepared for the NSW National Parks and Wildlife Service, Department of Conservation and Environment, Victoria and ACT Department of Parks and Gardens

  • Fogarty G., Facelli J.M., (1999). Growth and competition of Cytisus scoparius, an invasive shrub, and Australian native shrubs. Plant Ecology 144: 27–35

    Article  Google Scholar 

  • Grime J.P. (1979). Plant Strategies and Vegetation Processes. Wiley, Chichester, UK

    Google Scholar 

  • Hobbs R.J., Norton D.A. (1996). Towards a conceptual framework for restoration ecology. Restoration Ecology 4: 93–110

    Article  Google Scholar 

  • Holmes P.M. (2001). Shrubland restoration following woody invasion and mining effects of topsoil depth, seed source and fertilizer addition. Restoration Ecology 9: 71–84

    Article  Google Scholar 

  • Holmes P. (2002). Depth, distribution and composition of seed-banks in alien-invaded and uninvaded fynbos vegetation. Austral Ecology. 27: 110–120

    Article  Google Scholar 

  • Holmes P.M., Cowling R.M. (1997). The effects of invasion by Acacia saligna on the guild structure and regeneration capabilities of South African fynbos shrublands. Journal of Applied Ecology 34: 317–332

    Article  Google Scholar 

  • Körner C. (1999). Alpine Plant Life: Functional Plant Ecology of High Mountain Ecosystems. Springer-Verlag, Heidelberg

    Google Scholar 

  • Kruskal J.B. (1964). Nonmetric multidimensional scaling: a numerical method. Psychometrika 29: 115-129

    Article  Google Scholar 

  • Lavorel S., Lebreton J.D. (2002). Evidence of lottery recruitment in Mediterranean old field. Journal of Vegetation Science 3: 91–100

    Article  Google Scholar 

  • Lunt I.D. (1997). Germinable soil seed banks of anthropogenic native grasslands and grassy forest remnants in temperate south-eastern Australia. Plant Ecology 130: 21–34

    Article  Google Scholar 

  • Maron J.L., Connors P.G. (1996). A native nitrogen-fixing shrub facilitates weed invasion. Oecologia 105: 302–312

    Article  Google Scholar 

  • McDougall K.L. (1982). The alpine vegetation of the Bogong High Plains. Environmental Studies. Ministry for Conservation, Melbourne, Publication No. 357

    Google Scholar 

  • McIntyre S. (1990). Germination in eight native species of herbaceous dicot and implications for their use in revegetation. Victorian Naturalist 107: 154–158

    Google Scholar 

  • Minchin P.R. (1989). DECODA: Database for Ecological Community Data. Anutech Pty Ltd, Canberra

    Google Scholar 

  • Mitchell R.J., Marrs R.H., Auld M.H.D. (1998). A comparative study of the seed banks of heathland and successional habitats in Dorset, southern England. Journal of Ecology 86: 588–596

    Article  Google Scholar 

  • Morgan J.W., Lunt I.D., (1994). Germination characteristics of eight common grassland and woodland forbs. Victorian Naturalist 111: 10–17

    Google Scholar 

  • Noss R. (1990). Indicators for monitoring biodiversity: a hierarchical approach. Conservation Biology 4: 355–364

    Article  Google Scholar 

  • Parker I.M. (2001). Safe site and seed limitation in Cytisus scoparius (Scotch Broom): invasibility, disturbance, and the role of cryptogams in a glacial outwash prairie. Biological Invasions 3: 323–332

    Article  Google Scholar 

  • Parker I.M., Harpole W.S., Dionne D. (1997). Plant community diversity and invasion of the exotic shrub Cytisus scoparius testing hypotheses of invasibility and impact. In: Dunn P.V., Ewing K. (eds). Ecology and Conservation of the South Puget Sound Prairie Landscape. The Nature Conservancy, Washington USA, pp. 149–162

    Google Scholar 

  • Paynter Q., Fowler S.V., Memmott J., Sheppard A.W. (1998). Factors affecting the establishment of Cytisus scoparius in southern France: implications for managing both native and exotic populations. Journal of Applied Ecology 35: 582–595

    Article  Google Scholar 

  • Rabinowitz D. (1981). Buried viable seeds in a North American tall grass prairie: resemblance of their abundance and composition to dispersing seeds. Oikos 36: 191–195

    Article  Google Scholar 

  • Robertson D.C., Morgan J.W., White M. (1999). Use of prescribed fire to enhance control of English broom (Cytisus scoparius) invading a subalpine snowgum woodland in Victoria. Plant Protection Quarterly 14: 51–56

    Google Scholar 

  • Ross J.H., (2003). A Census of the Vascular Plants of Victoria. National Herbarium of Victoria, Melbourne

    Google Scholar 

  • Sheppard A.W., Hodge P., Paynter Q., Rees M. (2002). Factors affecting the invasion and persistence of broom Cytisus scoparius in Australia. Journal of Applied Ecology 39: 721–734

    Article  Google Scholar 

  • Smith J.M.B. (1994). The changing ecological impact of broom (Cytisus scoparius) at Barrington Tops, New South Wales. Plant Protection Quarterly 9: 6–11

    Google Scholar 

  • Smith J.M.B., Harlen R.L. (1991). Preliminary observations on the seed dynamics of broom (Cytisus scoparius) at Barrington Tops, New South Wales. Plant Protection Quarterly 6: 73–78

    Google Scholar 

  • Suding K.N., Gross K.L., Houseman G.R. (2004). Alternative states and positive feedbacks in restoration ecology. Trends in Ecology and Evolution 19: 46–53

    Article  Google Scholar 

  • Thompson K. (1986). Small-scale heterogeneity in an acid grassland seed bank. Journal of Ecology 67: 893–921

    Google Scholar 

  • Thompson K., Grime J.P. (1979). Seasonal variation in the seed banks of herbaceous species in ten contrasting habitats. Journal of Ecology 67: 893–921

    Article  Google Scholar 

  • Thompson K., Grime J.P. (1983). A comparative study of germination responses to diurnally fluctuating temperatures. Journal of Applied Ecology 20: 141–156

    Article  Google Scholar 

  • Thompson K. (2000). The functional ecology of soil seed banks. In: Fenner M. (ed). Seeds. The Ecology of Regeneration in Plant Communities. CABI Publishing, Wallingford, UK, pp. 215–235

    Google Scholar 

  • Urbanska K.M., Fattorini M. (1998a). Seed bank studies in the Swiss Alps. I. Unrestored ski run and adjacent intact grassland at high elevation. Botanica Helvetica 108: 93–104

    Google Scholar 

  • Urbanska K.M., Fattorini M. (1998b). Seed bank studies in the Swiss Alps. II. Restoration plots in a high-alpine ski run. Botanica Helvetica 108: 289–301

    Google Scholar 

  • Van der Valk A.G., Pederson R.L. (1989). Seed banks and the management and restoration of natural vegetation. In: Leck M.A., Parker V.T., Simpson R.L., (eds). Ecology of Soil Seed Banks. Academic Press, San Diego, pp. 329–346

    Google Scholar 

  • Wahren C-H., Williams R.J., Papst W.A. (1999). Alpine and subalpine wetland vegetation on the Bogong High Plains, south-eastern Australia. Australian Journal of Botany 47: 165–188

    Article  Google Scholar 

  • Waterhouse B.M. (1988). Broom (Cytisus scoparius) at Barrington Tops, New South Wales. Australian Geographical Studies 26: 239–48

    Article  Google Scholar 

  • Wearne L.J., Morgan J.W. (2004). Community-level changes in subalpine vegetation following invasion by the non-native shrub Cytisus scoparius. Journal of Vegetation Science 15: 595–604

    Article  Google Scholar 

  • Wesson G., Wareing P.F. (1969). The role of light in the germination of naturally occurring populations of buried weed seeds. Journal of Experimental Botany 20: 414–425

    Article  Google Scholar 

  • Williams P.A. (1981). Aspects of the ecology of broom (Cytisus scoparius) in Canterbury, New Zealand. New Zealand Journal of Botany 19: 31–43

    Google Scholar 

  • Williams P.A. (1983). Secondary vegetation succession on the Port Hills, Banks Peninsula, Canterbury, New Zealand. New Zealand Journal of Botany 21: 237–247

    Google Scholar 

  • Williams R.J., Costin A.B. (1994). Alpine and subalpine vegetation. In: Groves R.H. (ed). Australian Vegetation, 2nd edn. Cambridge University Press, Melbourne, pp. 467–500

    Google Scholar 

  • Zar J.H., (1984). Biostatisical Analysis. New Jersey, Prentice-Hall

    Google Scholar 

  • Zavaleta E.S., Hobbs R.J., Mooney H.A. (2001). Viewing invasive species removal in a whole-ecosystem context. Trends in Ecology and Evolution. 18: 454–459

    Article  Google Scholar 

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Acknowledgements

We thank Susanna Venn, Marty Gent, Wayne Gebert and Sheri Macfarlane for their enthusiasm and assistance in the field. The work was supported by a La Trobe Postgraduate Scholarship and a CRC for Weed Managements Systems Studentship to LW. The manuscript was improved by comments from Bob Parsons and an anonymous referee.

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Correspondence to L. J. Wearne.

Appendix 1.

Appendix 1.

Table 1 Species and their contribution to the seed bank study. Highlighted species contributed highly across all sites.

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Wearne, L.J., Morgan, J.W. Shrub invasion into subalpine vegetation: implications for restoration of the native ecosystem. Plant Ecol 183, 361–376 (2006). https://doi.org/10.1007/s11258-005-9046-7

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