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9 - Large herbivores as ‘environmental engineers’

Published online by Cambridge University Press:  26 April 2011

Chris Smit
Affiliation:
Norwegian University of Science and Technology
Rory Putman
Affiliation:
Manchester Metropolitan University
Rory Putman
Affiliation:
Manchester Metropolitan University
Marco Apollonio
Affiliation:
Università degli Studi di Sassari, Sardinia
Reidar Andersen
Affiliation:
Museum of Natural History and Archaeology, Norwegian University of Science and Technology, Trondheim
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Summary

Large herbivores as ‘keystone species’ in ecosystems

It is clear from many chapters in this book that large herbivores may have a very significant impact in the ecological systems of which they are a part – with a major shaping effect on the structure and dynamics of vegetational systems – even at a landscape scale. These effects include consumption of vegetation, redistribution of nutrients via deposition of urine and dung, soil compaction and erosion via trampling, dispersal of seeds via fur or dung, and secondarily, through these effects on the vegetation, alteration and creation of habitats or microenvironments for other plants and animals.

Some of these effects are direct and straightforward: consumption of vegetation by large herbivores obviously leads to profound changes of the morphology of individual plants (height, stature, structure), but also to changes of the physical three-dimensional architecture of the community. The stunted and ‘hedged’ shrubs in the understorey of grazed woodlands or the distinct browseline on the underside of the canopy trees form nice examples. Consumption also leads to changes in species composition, with elimination from the community of grazing-intolerant species, and increase of species which are tolerant to defoliation, or have specific defences against attack: spines, thorns, or chemical defences rendering them less palatable (Callaway et al., 2000). Together with dunging and trampling, consumption further creates gaps within closed swards for the establishment of ephemerals.

Type
Chapter
Information
Ungulate Management in Europe
Problems and Practices
, pp. 260 - 283
Publisher: Cambridge University Press
Print publication year: 2011

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References

Aptroot, A., Dobben, H. F., Slim, P. A. and Olff, H. (2007) The role of cattle in maintaining plant species diversity in wet dune valleys. Biodiversity and Conservation, 16, 1541–1550.CrossRefGoogle Scholar
Armstrong, H. E. (2008) The impacts of cattle in woodlands. In Cresswell, W.et al. (eds.) Grazing Management of Upland Habitats for Nature Conservation. Stroud, UK: Cresswell Associates/The Rannoch Trust.Google Scholar
Bakker, E. S., Olff, H., Vandenberghe, C., et al. (2004) Ecological anachronisms in the recruitment of temperate light-demanding tree species in wooded pastures. Journal of Applied Ecology 41, 571–582.CrossRefGoogle Scholar
Bakker, E. S., Ritchie, M. E., Olff, H., Milchunas, D. G. and Knops, J. M. H. (2006) Herbivore impact on grassland plant diversity depends on habitat productivity and herbivore size. Ecology Letters 9, 780–788.CrossRefGoogle ScholarPubMed
Bakker, J. P. (1989) Nature Management by Grazing and Cutting. Dordrecht, Netherlands: Kluwer Academic Publishers.CrossRefGoogle Scholar
Bakker, J. P. (1998) The impact of grazing on plant communities. In Wallis de Vries, M. F., Bakker, J. P. and Wieren, S. E. (eds.) Grazing and Conservation Management. Dordrecht, Netherlands: Kluwer Academic Publishers, pp. 137–184.CrossRefGoogle Scholar
Bakker, J. P., Bie, S., Dallinga, J. H., Tjaden, P. and Vries, Y. (1983) Sheep-grazing as a management tool for heathland conservation and regeneration in the Netherlands. Journal of Applied Ecology 20, 541–560.CrossRefGoogle Scholar
Bakker, J. P., Leeuw, J. and Wieren, S. E. (1984) Micro-patterns in grassland vegetation created and sustained by sheep grazing. Vegetatio 55, 153–161.CrossRefGoogle Scholar
Bakker, J. P., Bakker, E. S., Rosen, E., Verweij, G. L. and Bekker, R. M. (1996) Soil seed bank composition along a gradient from dry alvar grassland to Juniperus shrubland. Journal of Vegetation Science 7, 165–176.CrossRefGoogle Scholar
Batáry, P., Báldi, A. and Erdos, S. (2007) Grassland versus non-grassland bird abundance and diversity in managed grasslands: Local, landscape and regional scale effects. Biodiversity and Conservation 16, 871–881.CrossRefGoogle Scholar
Benes, J., Cizek, O., Dovala, J. and Konvicka, M. (2006) Intensive game keeping, coppicing and butterflies: the story of Milovicky Wood, Czech Republic. Forest Ecology and Management 237, 353–365.CrossRefGoogle Scholar
Birks, H. J. B. (2005) Mind the gap: how open were European primeval forests?Trends in Ecology and Evolution 20(4), 154–156.CrossRefGoogle ScholarPubMed
Bokdam, J. and Gleichman, M. (2000) Effects of grazing by free-ranging cattle on vegetation dynamics in continental north-west European heathland. Journal of Applied Ecology 37, 415–431.CrossRefGoogle Scholar
Bond, W. (2001) Keystone species: hunting the snark?Science 292, 63–64.CrossRefGoogle ScholarPubMed
Bruinderink, G.W.T.A. and Hazebroek, E. (1996) Wild boar (Sus scrofa scrofa L.) rooting and forest regeneration on podzolic soils in the Netherlands. Forest Ecology and Management 88, 71–80.CrossRefGoogle Scholar
Callaway, R. M., Kikvidzc, Z. and Kikvidzc, D. (2000) Facilitation by unpalatable weeds may conserve plant diversity in overgrazed meadows in the Caucasus Mountains. Oikos 89, 275–282.CrossRefGoogle Scholar
Callaway, R. M., Kikodze, D., Chiboshvili, M. and Khetsuriani, L. (2005) Unpalatable plants protect neighbors from grazing and increase plant community diversity. Ecology 86, 1856–1862.CrossRefGoogle Scholar
Connell, J. H.(1978) Diversity in tropical rain forests and coral reefs. Science 199, 1302–1310.CrossRefGoogle ScholarPubMed
Cornelissen, P.(2006) Vegetatie, grote herbivoren en ganzen in de Oostvaardersplassen. Evaluatie 1996–2005. RIZA werkdocument nr. 2006.044X. Lelystad, Netherlands:Rijksinstituut voor Integraal Zoetwaterbeheer en Afvalwaterbehandeling, RIZA.Google Scholar
Cornelissen, P. and Vulink, J. T. (2001) Effects of cattle and horses on vegetation structure. Are cattle and horses browsers enough to stop development of shrubs and trees? In Gerken, B. and Görner, M. (eds.). Neue Modelle zu Masznahmen der landschaftsentwicklung mit groszen Pflanzenfressern und praktische Erfahrungen bei der Umsetzung. Höxter/Jena, Germany: Natur- und Kulturlandschaft4, pp. 189–197.Google Scholar
Cresswell, W. (2008) A 15-year experiment to assess the impact of cattle grazing on the floral composition of Rannoch Moor. In Cresswell, W.et al. (eds.) Grazing Management of Upland Habitats for Nature Conservation. Stroud, UK: Cresswell Associates/The Rannoch Trust.Google Scholar
Cromsigt, J., Linnartz, L., Verdonschot, R., Esselink, H. and Olff, H. (2007) De Kraansvlak pilot: wilde Wisenten in een Nederlandse context. De Levende Natuur 108, 206–208.Google Scholar
Dennis, P., Skartveit, J., McCracken, D. I., et al. (2008) The effects of livestock grazing on foliar arthropods associated with bird diet in upland grasslands of Scotland. Journal of Applied Ecology 45, 279–287.CrossRefGoogle Scholar
Drees, J. M., Dekker, J. J. A., Lavazza, A. and Cappucci, L. (2007) Voorkomen en verspreiding van Rabbit Haemorrhagic Disease en Myxamatose in Nederlandse konijnenpopulaties. VZZ rapport 2007.17. Arnhem, Netherlands: Zoogdiervereniging VZZ.Google Scholar
Evans, D. M., Redpath, S. M., Evans, S. A., et al. (2006) Low intensity, mixed livestock grazing improves the breeding abundance of a common insectivorous passerine. Biology Letters 2, 636–638.CrossRefGoogle ScholarPubMed
Farley, A. E. (1986) Diets of foxes in the south of England. BSc Honours thesis (Biology), University of Southampton, UK.
Feber, R. E., Brereton, T. M., Warren, M. S. and Oates, M. (2001) The impacts of deer on woodland butterflies: the good, the bad and the complex. Forestry 74, 271–276.CrossRefGoogle Scholar
Flowerdew, J. R. and Ellwood, S. A. (2001) Impacts of woodland deer on small mammal ecology. Forestry 74, 277–288.CrossRefGoogle Scholar
Forrester, N. L., Trout, R. C., Turner, S. L., et al. (2006) Unravelling the paradox of rabbit haemorrhagic disease virus emergence, using phylogenetic analysis; possible implications for rabbit conservation strategies. Biological Conservation 131, 296–306.CrossRefGoogle Scholar
Fuller, R. J. (2001) Responses of woodland birds to increasing numbers of deer: a review of evidence and mechanisms. Forestry 74, 289–298.CrossRefGoogle Scholar
Grant, P. R. (1972) Convergent and divergent character displacement. Biological Journal of the Linnean Society 4, 39–68.CrossRefGoogle Scholar
Hester, A. J. and Baillie, G. J. (1998) Spatial and temporal patterns of heather utilisation by sheep and red deer within natural heather:grass mosaics. Journal of Applied Ecology 35, 772–784.CrossRefGoogle Scholar
Hester, A. J., Gordon, I.J, Baillie, G. J. and Tappin, E. (1999) Foraging behaviour of sheep and red deer within natural heather:grass mosaics. Journal of Applied Ecology 36, 133–146.CrossRefGoogle Scholar
Hill, S. D. (1985) Influences of large herbivores on small rodents in the New Forest. PhD thesis, University of Southampton, UK.Google Scholar
Hirons, G. J. M. (1984) The diet of tawny owls (Strix aluco) and kestrels (Falco tinnunculus) in the New Forest, Hampshire. Proceedings of the Hampshire Field Club and Archaeological Society 40, 21–26.Google Scholar
Insley, H. (1977) An estimate of the population of the red fox (Vulpes vulpes) in the New Forest, Hampshire. Journal of Zoology (London) 183, 549–553.Google Scholar
Kuiters, A. T. (2004) Ontwikkeling van mozaieklandschappen onder invloed van begrazing; Een drietal casestudies. Alterra-rapport 1105. Wageningen, Netherlands: Alterra.Google Scholar
Kuiters, A. T. and Slim, P. A. (2003) Tree colonisation of abandoned arable land after 27 years of horse-grazing: the role of bramble as a facilitator of oak wood regeneration. Forest Ecology and Management 181, 239–251.CrossRefGoogle Scholar
Lamont, L. (1998) Birch regeneration and deer grazing in the Scottish Highlands. MSc thesis, University of Edinburgh, UK.Google Scholar
McNaughton, S. J. (1984) Grazing lawns: animals in herds, plant form, and coevolution. American Naturalist 124, 863–886.CrossRefGoogle Scholar
Milchunas, D. G. and Noy-Meir, I. (2002) Grazing refuges, external avoidance of herbivory and plant diversity. Oikos 99, 113–130.CrossRefGoogle Scholar
Milchunas, D. G., Lauenroth, W.K and Sala, O. E. (1988) A generalized model of the effects of grazing by large herbivores on grassland community structure. American Naturalist 132, 87–106.CrossRefGoogle Scholar
Mitchell, F. J. G. (2005) How open were European primeval forests? Hypothesis testing using palaeoecological data. Journal of Ecology 93, 168–177.CrossRefGoogle Scholar
Mitchell, F. J. G. and Kirby, K. (1990) The impact of large herbivores on the conservation of semi-natural woods in the British uplands. Forestry 63, 333–353.CrossRefGoogle Scholar
Öckinger, E., Eriksson, A. K. and Smith, H. G. (2006) Effects of grassland abandonment, restoration and management on butterflies and vascular plants. Biological Conservation 133, 291–300.CrossRefGoogle Scholar
Olff, H. and Ritchie, M. E. (1998) Effects of herbivores on grassland plant diversity. Trends in Ecology and Evolution 13, 261–265.CrossRefGoogle ScholarPubMed
Olff, H., Vera, F. W. M., Bokdam, J., et al. (1999) Shifting mosaics in grazed woodlands driven by the alternation of plant facilitation and competition. Plant Biology 1, 127–137.CrossRefGoogle Scholar
Ozinga, W. A., Romermann, C., Bekker, R. M., et al. (2009) Dispersal failure contributes to plant losses in NW Europe. Ecology Letters 12, 66–74.CrossRefGoogle ScholarPubMed
Paine, R. T. (1969) A note on trophic complexity and community stability. American Naturalist 103, 91–93.CrossRefGoogle Scholar
Petley-Jones, R. (1995) Deer or butterflies? A woodland dilemma. Enact 3(3), 8–10.Google Scholar
Petty, S. J. and Avery, M. I. (1990) Forest Bird Communities. Occasional Paper 26. Edinburgh, UK: Forestry Commission.Google Scholar
Putman, R. J. (1986) Grazing in Temperate Ecosystems; Large Herbivores and their Effects on the Ecology of the New Forest. London: Croom Helm/Chapman and Hall, 200 pp.Google Scholar
Putman, R. J. (1996) Competition and Resource Partitioning in Temperate Ungulate Assemblies. London: Chapman and Hall, 200 pp.CrossRefGoogle Scholar
Putman, R. J. (2003) An Analysis of Trends in Deer Populations and the Vegetation of Creag Meagaidh National Nature Reserve 1986–2001: Review and Update 2003. Research Reports. Edinburgh, UK: Scottish Natural Heritage.Google Scholar
Putman, R. J. (2008) The effects of reducing grazing pressure from red deer and sheep on vegetation within the Creag Meagaidh National Nature Reserve. In Cresswell, W.et al. (eds.) Grazing Management of Upland Habitats for Nature Conservation. Stroud, UK: Cresswell Associates/The Rannoch Trust.Google Scholar
Putman, R. J., Edwards, P. J., Mann, J.C.E., How, R. C. and Hill, S. D. (1989) Vegetational and faunal changes in an area of heavily grazed woodland following relief of grazing. Biological Conservation 47, 13–32.CrossRefGoogle Scholar
Putman, R. J., Duncan, P. and Scott, R. (2005) Demographic changes in a Scottish red deer population (Cervus elaphus. L.) in response to sustained and heavy culling: an analysis of trends in deer populations of Creag Meagaidh National Nature Reserve 1986–2001. Forest Ecology and Management 206, 263–281.CrossRefGoogle Scholar
Putman, R. J., Duncan, P. and Scott, R. (2006) Tree regeneration without fences? An analysis of vegetational trends within the Creag Meagaidh National Nature Reserve, 1988–2001 in response to significant and sustained reductions in grazing pressure. Practical Ecology and Conservation 6, 52–65.Google Scholar
Rook, A. J., Dumont, B., Isselstein, J., et al. (2004) Matching type of livestock to desired biodiversity outcomes in pastures: a review. Biological Conservation 119, 137–50.CrossRefGoogle Scholar
Rosen, E. and Bakker, J. P. (2005) Effects of agri-environment schemes on scrub clearance, livestock grazing and plant diversity in a low-intensity farming system on Oland, Sweden. Basic and Applied Ecology 6, 195–204.CrossRefGoogle Scholar
Rousset, O. and Lepart, J. (1999) Shrub facilitation of Quercus humilis regeneration in succession on calcareous grasslands. Journal of Vegetation Science 10, 493–502.CrossRefGoogle Scholar
Rousset, O. and Lepart, J. (2000) Positive and negative interactions at different life stages of a colonizing species (Quercus humilis). Journal of Ecology 88, 401–412.CrossRefGoogle Scholar
Schtickzelle, N., Turlure, C. and Baguette, M. (2007) Grazing management impacts on the viability of the threatened bog fritillary butterflyProclossiana eunomia. Biological Conservation 136, 651–660.CrossRefGoogle Scholar
Scott, D., Hirst, D., Staines, B. W. and Elston, D. (1996) Red Deer and Tree Regeneration in the Cairngorms and Monadhliaths. Report on contract RASD/019/95. Edinburgh, UK: Scottish Natural Heritage.Google Scholar
Smit, C., Béguin, D., Buttler, A. and Mueller-Schaerer, H. (2005) Safe sites for tree regeneration in wooded pastures: a case of associational resistance?Journal of Vegetation Science 16, 209–214.CrossRefGoogle Scholar
Smit, C., Ouden, J. and Muller-Scharer, H. (2006) Unpalatable plants facilitate tree sapling survival in wooded pastures. Journal of Applied Ecology 43, 305–312.CrossRefGoogle Scholar
Smit, C., Vandenberghe, C., Ouden, J. and Mueller-Schaerer, H. (2007) Nurse plants, tree saplings and grazing pressure: changes in facilitation along a biotic environmental gradient. Oecologia 152, 265–273.CrossRefGoogle ScholarPubMed
Smit, C., Dekker, J. and Cromsigt, J. (2008) Ruimte voor de wisent in de lage landen. De Levende Natuur 109, 32–33.Google Scholar
Smit, R. (2002) The secret life of woody species. A study on woody species establishment, interactions with herbivores and vegetation succession. PhD thesis, Wageningen University, The Netherlands.
Soderstrom, B., Svensson, B., Vessby, K. and Glimskar, A. (2001) Plants, insects and birds in semi-natural pastures in relation to local habitat and landscape factors. Biodiversity and Conservation 10, 1839–1863.CrossRefGoogle Scholar
Stewart, A. J. A. (2001) The impact of deer on lowland woodland invertebrates: a review of the evidence and priorities for future research. Forestry 74, 259–270.CrossRefGoogle Scholar
Stewart, F. (1996) The effects of red deer (Cervus elaphus) on the regeneration of birch (Betula pubescens) woodland in the Scottish Highlands. PhD thesis, University of Aberdeen, UK.
Stowe, T. J. (1987) The management of sessile oakwoods for pied flycatchers. RSPB Conservation Review 1, 78–83.Google Scholar
Svenning, J. C. (2002) A review of natural vegetation openness in north-western Europe. Biological Conservation 104, 133–148.CrossRefGoogle Scholar
Szabo, P. (2009) Open woodland in Europe in the Mesolithic and in the Middle Ages: can there be a connection?Forest Ecology and Management 257, 2327–2330.CrossRefGoogle Scholar
Tubbs, C.R. and Tubbs, J.M. (1985) Buzzards (Buteo buteo) and land use in the New Forest, Hampshire, England. Biological Conservation 31, 46–65.CrossRefGoogle Scholar
Uytvanck, J., Decleer, K. and Hoffmann, M. (2008a) Establishment patterns of woody species in low intensity-grazed pastures after the cessation of intensive agricultural use. Forest Ecology and Management 256, 106–113.CrossRefGoogle Scholar
Uytvanck, J., Maes, D., Vandenhaute, D. and Hoffmann, M. (2008b) Restoration of woodpasture on former agricultural land: the importance of safe sites and time gaps before grazing for tree seedlings. Biological Conservation 141, 78–88.CrossRefGoogle Scholar
Wieren, S. E. (1991) The management of populations of large mammals. In Spellerberg, I. F., Goldsmith, F. B. and Morris, M. G. (eds.) The Scientific Management of Temperate Communities for Conservation. Oxford, UK: Blackwell, pp. 103–127.Google Scholar
Wieren, S. E. and Bakker, J. P. (2008) The impact of browsing and grazing herbivores on biodiversity. In Gordon, I. J. and Prins, H. H. T. (eds.) The Ecology of Browsing and Grazing. Ecological Studies 195. Berlin: Springer, pp. 263–292.CrossRefGoogle Scholar
Wijk, M. N., Sanders, M. E., Jong, J.J. and Veen, M. P. (2006) Natuurbeheer in de duinen. In Achtergronden bij de natuurbalans 2005. Rapport 408763012/2006. Bilthoven, Netherlands: Milieu en Natuurplanbureau.Google Scholar
Vandenberghe, C., Smit, C., Frelechoux, F., Pohl, M. and Buttler, A. (2008) The influence of grazing intensity on deciduous and coniferous tree sapling responses to facilitation by a thorny shrub. Basic and Applied Ecology, 10, 427–436.CrossRefGoogle Scholar
Vera, F. W. M. (2000) Grazing Ecology and Forest History. Wallingford, UK: CABI Publishing.CrossRefGoogle Scholar
Vera, F.W.M, Bakker, E. S. and Olff, H. (2006) Large herbivores: missing partners of western European light-demanding tree and shrub species? In Danell, K., Duncan, P., Bergström, R. and Pastor, J. (eds.) Large Herbivore Ecology, Ecosystem Dynamics and Conservation. Cambridge, UK: Cambridge University Press, pp. 203–231.CrossRefGoogle Scholar
Virtanen, R., Edwards, G. R. and Crawley, M. J. (2002) Red deer management and vegetation on the Isle of Rum. Journal of Applied Ecology 39, 572–583.CrossRefGoogle Scholar
Vulink, J. T. (2001) Hungry herds: management of temperate lowland wetlands by grazing. PhD thesis, University of Groningen, the Netherlands.
Vulink, J. T. and Eerden, M. R. (1998) Hydrological conditions and herbivory as key operators for ecosystem development in Dutch artificial wetlands. In Wallis de Vries, M. F., Bakker, J. P. and Wieren, S. E. (eds.) Grazing and Conservation Management. Dordrecht, Netherlands: Kluwer Academic Publishers, pp. 217–252.CrossRefGoogle Scholar
Vulink, J. T., Drost, H. and Jans, L. (2000) The influence of different grazing regimes on Phragmites-shrub vegetation in the well-drained zone of a eutrophic wetland. Applied Vegetation Science 3, 73–80.CrossRefGoogle Scholar
Wallis de Vries, M. F., Parkinson, A. E., Dulphy, J. P., Sayer, M. and Diana, E. (2007) Effects of livestock breed and grazing intensity on biodiversity and production in grazing systems. 4. Effects on animal diversity. Grass and Forage Science 62, 185–197.CrossRefGoogle Scholar
Wheeler, P. (2008) Effects of sheep grazing on abundance and predators of field vole (Microtus agrestis) in upland Britain. Agriculture Ecosystems and Environment 123, 49.CrossRefGoogle Scholar

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