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Deer density affects ground-layer vegetation differently in conifer plantations and hardwood forests on the Boso Peninsula, Japan

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Ecological Research

Abstract

Deer overabundance reduces forest ground-layer vegetation and can cause cascading impacts on a forest ecosystem. To predict these effects, we must elucidate the relationship between deer density and the status of ground-layer vegetation. This relationship was studied in the Boso Peninsula, where the deer population density exhibits a clear geographical gradient. We examined species richness and cover of ground-layer vegetation at several cedar plantations and hardwood forests in the Boso Peninsula. We also examined whether deer impacts were altered by light condition, soil water content and forest type (cedar and hardwood). Species richness of ground-layer vegetation was maximized at an intermediate level of deer density, suggesting an intermediate disturbance effect. This phenomenon was compatible with the observation that evergreen species, which were competitive dominants, decreased with increasing deer density, whereas less competitive deciduous species increased until herbivory was intermediate. As deer density increased, cover of ground-layer vegetation gradually decreased, but species unpalatable to deer increased in abundance, suggesting indirect positive effects of deer for unpalatable species. Cedar plantations tended to have greater species richness and ground-layer cover than hardwood forests with similar deer levels. Canopy openness, an indicator of light conditions, increased species richness of hardwood forests and ground-layer cover of cedar plantations, even under deer herbivory. Topographic wetness index, an indicator of soil water content, significantly increased the ground-layer cover of cedar plantations under deer herbivory. These results emphasize the importance of environmental productivity and forest type in the management of ground-layer vegetation experiencing deer overabundance.

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References

  • Akashi N, Terazawa K (2005) Bark stripping damage to conifer plantations in relation to the abundance of sika deer in Hokkaido, Japan. For Ecol Manag 208:77–83

    Article  Google Scholar 

  • Augustine DJ, McNaughton SJ (1998) Ungulate effects on the functional species composition of plant communities: herbivore selectivity and plant tolerance. J Wildl Manage 62:1165–1183

    Article  Google Scholar 

  • Bakker ES, Olff H, Boekhoff M, Gleichman JM, Berendse F (2004) Impact of herbivores on nitrogen cycling: contrasting effects of small and large species. Oelocogia 138:91–101

    CAS  Google Scholar 

  • Bellingham PJ, Allan CN (2003) Forest regeneration and the influences of white-tailed deer (Odocoileus virginianus) in cool temperate New Zealand rain forests. For Ecol Manage 175:71–86

    Article  Google Scholar 

  • Chiba Prefecture, Deer Research Group on Boso (1998) Science report on the management of sika deer on Boso Peninsula 6 (in Japanese). Chiba Prefecture, Chiba

  • Chiba Prefecture (2004) Science report on the management of sika deer on Boso Peninsula (in Japanese). Chiba Prefecture, Chiba

  • Connell JH (1979) Tropical rain forests and coral reefs as open non-equilibrium systems. In: Anderson RM, Turner BD, Taylor LR (eds) Population dynamics. Blackwell, Oxford, pp 141–163

    Google Scholar 

  • Coomes DA, Allen RB, Forsyth DM, Lee WG (2003) Factors preventing the recovery of New Zealand forests following control of invasive deer. Conserv Biol 17:450–459

    Article  Google Scholar 

  • Crawley MJ (1993) GLIM for ecologists. Blackwell, Oxford

    Google Scholar 

  • Furusawa H, Miyanishi H, Kaneko S, Hino T (2003) Movement of soil and litter on the floor of a temperate mixed forest with an impoverished understory grazed by deer (Cervus nippon centralis Temminck) (in Japanese with English abstract). J Jpn For Soc 85:318–325

    Google Scholar 

  • Hester AJ, Edenius L, Buttenschøn RM, Kuiters AT (2000) Interactions between forests and herbivores: the role of controlled grazing experiments. Forestry 73:381–391

    Article  Google Scholar 

  • Huston MA (1994) Biological diversity: the context of species on changing landscapes. Cambridge University Press, Cambridge

    Google Scholar 

  • Inagaki Y, Miura S, Kohzu A (2004) Effects of forest type and stand age on litterfall quality and soil N dynamics in Shikoku district, southern Japan. For Ecol Manage 202:107–117

    Article  Google Scholar 

  • Jorristsma ITM, van Hees AFM, Mohren GMJ (1999) Forest development in relation to ungulate grazing: a modeling approach. For Ecol Manage 120:23–34

    Article  Google Scholar 

  • Kabaya H (1975) Ecological studies on the vegetation of the Boso Mountains I. Distribution and structure of the natural fir-hemlock forests (in Japanese with English summary). Bull Tokyo Univ For 67:51–62

    Google Scholar 

  • Kira T (1991) Forest ecosystems in east and south-east Asia in a global perspective. Ecol Res 6:185–200

    Article  Google Scholar 

  • Kuiters AT, Slim PA (2002) Regeneration of mixed deciduous forests in a Dutch forest-heathland, following a reduction of ungulate densities. Biol Conserv 105:65–74

    Article  Google Scholar 

  • Mainer DJ, Hobbs T (2006) Large herbivores influence the composition and diversity of shrub-steppe communities in the Rocky Mountains, USA. Oecologia 146:641–651

    Article  Google Scholar 

  • Maruyama N, Nakama S (1983) Block count method for estimating serow populations. Jpn J Ecol 33:243–251

    Google Scholar 

  • McNeil SG, Cushman JH (2005) Indirect effects of deer herbivory on local nitrogen availability in a coastal dune ecosystem. Oikos 110:124–132

    Google Scholar 

  • Milchunas DG, Sala OE, Lauenroth WK (1988) A generalized model of the effects of grazing by large herbivores on grassland community structure. Am Nat 132:87–106

    Article  Google Scholar 

  • Milchunas DG, Lauenroth WK (1993) Quantitative effects of grazing on vegetation and soils over a global range of environments. Ecol Monogr 63:327–366

    Article  Google Scholar 

  • Moore ID, Norton TW, Williams JE (1993) Modelling environmental heterogeneity in forested landscapes. J Hydrol 150:717–747

    Article  Google Scholar 

  • Nakane K (1995) Soil carbon cycling in a Japanese cedar (Cryptomeria japonica) plantation. For Ecol Manage 72:185–197

    Article  Google Scholar 

  • Noy-Meir I (1975) Stability of grazing systems: an application of predator graphs. J Ecol 63:459–481

    Article  Google Scholar 

  • Nomiya H, Suzuki W, Kanazashi T, Shibata M, Tanaka H, Nakashizuka T (2002) The response of forest floor vegetation and tree regeneration to deer exclusion and disturbance in a riparian deciduous forest, central Japan. Plant Ecol 164:263–276

    Article  Google Scholar 

  • Olff H, Ritchie ME (1998) Effects of herbivores on grassland plant diversity. Tree 13:261–265

    Google Scholar 

  • Rambo JL, Faeth SH (1999) Effect of vertebrate grazing on plant and insect community structure. Conserv Biol 13:1047–1054

    Google Scholar 

  • R Development Core Team (2005) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria (ISBN 3-900051-07-0). Accessed January 29, 2007. http://www.R-project.org)

  • Rooney TP, Waller DM (2003) Direct and indirect effects of white-tailed deer in forest ecosystems. For Ecol Manage 181:165–176

    Article  Google Scholar 

  • Richardson-Kageler SJ (2004) Effects of large herbivore browsing on the functional groups of woody plants in a southern African savanna. Biol Conserv 13:2145–2163

    Google Scholar 

  • Schmitz OJ, Sinclair ARE (1997) Rethinking the role of deer in forest ecosystem dynamics. In: McShea WJ, Rappole J, Underwood B (eds) The science of overabundance: deer ecology and population management. Smithsonian Press, Washinghton, DC, pp 201–223

  • Shepard D (1968) A two-dimensional interpolation function for irregularly spaced data. Proc 23rd ACM Natl Conf 23:517–524

    Google Scholar 

  • Sørensen R, Zinko U, Seibert J (2005) On the calculation of the topographic wetness index: evaluation of different methods based on field observations. Hydrol Earth Syst Sci Discuss 2:1807–1834

    Google Scholar 

  • Tsujino R, Yumoto T (2004) Effects of sika deer on tree seedlings in a warm temperate forest on Yakushima Island, Japan. Ecol Res 19:291–300

    Article  Google Scholar 

  • Welch D, Staines BW, Scott D, French DD, Catt DC (1991) Leader browsing by red and roe deer on young Sitka spruce trees in Western Scotland. 1. Damage rates and incidence. Forestry 64:61–82

    Article  Google Scholar 

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Acknowledgments

We thank T. Ishihara, K. Kumagawa, and the Deer Research Group on Boso for providing us with their research information on the deer population in the Boso Peninsula. We thank R. Yanai for the many helpful comments on early drafts. The field survey was supported by the Tokyo University Forest in Chiba. We also thank Y. G. Baba, T. T. Yamanoi, M. Kobayashi, S. Harada, H. Horii, Y. Shimizu, M. Takada, K. Tokita, and S. Tomoda for assistance in the field surveys. This study was supported by the Environmental Technology Development Fund, Ministry for the Environment, Japan.

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Correspondence to Maki Suzuki.

Appendix

Appendix

Table 3 List of plants unpalatable to deer found in the study site; all were evergreen

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Suzuki, M., Miyashita, T., Kabaya, H. et al. Deer density affects ground-layer vegetation differently in conifer plantations and hardwood forests on the Boso Peninsula, Japan. Ecol Res 23, 151–158 (2008). https://doi.org/10.1007/s11284-007-0348-1

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