Insect parasitoid species respond to forest structure at different spatial scales (original) (raw)
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- Published: 17 April 1997
Nature volume 386, pages 710–713 (1997) Cite this article
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Abstract
There is now a solid body of theoretical work1–4 demonstrating that the spatial structure of the habitat combined with animal movement strongly influence host–parasitoid dynamics. The spatial pattern over which parasitoid search takes place can be affected by the distribution of the hosts5, by the spatial arrangement of the host's habitat6 and by the spatial scale at which the parasitoid perceives variation in host abundance7,8. Empirical work, however, has been largely restricted to small-scale field studies of less than one hectare6,9 with very few larger10,11. Here we report initial results of a many-year, large-scale study that is among the first to examine the interaction between a population-level process (parasitism) and anthropogenic forest fragmentation at large and at multiple spatial scales. We demonstrate that parasitism by four species of parasitoids attacking the forest tent caterpillar, Malacosoma disstria, is significantly reduced or enhanced depending on the proportion of forested to unforested land. Each of the parasitoid species responds to this mosaic at four different spatial scales that correspond to their relative body sizes. Our data give empirical support to the argument that changes in landscape structure can alter the normal functioning of ecological processes such as parasitism, with large-scale population consequences3,4.
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References
- Hassell, M. P. & May, R. M. Spatial heterogeneity and the dynamics of parasitoid-host systems. Ann. Zool. Fennici 25, 55–61 (1988).
Google Scholar - Kareiva, P. Population dynamics in spatially complex environments: theory and data. Phil. Trans. R. Soc. B 330, 175–190 (1990).
Article ADS Google Scholar - May, R. M. in Large-scale Ecology and Conservation Biology (eds Edwards, P. J., May, R. M. & Webb, N. R.) 1–17 (Blackwell Scientific, Oxford, 1994).
Google Scholar - Kareiva, P. & Wennergren, U. Connecting landscape pattern to ecosystem and population processes. Nature 373, 299–302 (1995).
Article ADS CAS Google Scholar - Waage, J. K. Aggregation in field parasitoid populations: foraging time allocation by a population of Diadegma (Hymenoptera, Ichneumonidae). Ecol. Entomol. 8, 447–453 (1983).
Article Google Scholar - Kruess, A. & Tscharntke, T. Habitat fragmentation, species loss, and biological control. Science 264, 1581–1584 (1994).
Article ADS CAS Google Scholar - Heads, P. A. & Lawton, J. H. Studies on the natural enemy complex of the holly leaf-miner: the effects of scale on the detection of aggregative responses and the implications for biological control. Oikos 40, 267–276 (1983).
Article Google Scholar - Rothman, L. D. & Darling, D. C. Spatial density dependence: effects of scale, host spatial pattern and parasitoid reproductive strategy. Oikos 62, 221–230 (1991).
Article Google Scholar - Kareiva, P. Habitat fragmentation and the stability of predator-prey interactions. Nature 326, 388–390 (1987).
Article ADS Google Scholar - Rogers, D. J. & Williams, B. G. in Large-scale Ecology and Conservation Biology (eds Edwards, P. J., May, R. M. & Webb, N. R.) 247–271 (Blackwell Scientific, Oxford, 1994).
Google Scholar - Marino, P. C. & Landis, D. A. Effects of landscape structure on parasitoid diversity and parasitism in agroecosystems. Ecol. Appl. 6, 276–284 (1996).
Article Google Scholar - Sippell, W. L. Outbreaks of the forest tent caterpillar, Malacosoma disstria Hbn., a periodic defoliator of broad-leaved trees in Ontario. Can. Entomol. 94, 408–416 (1962).
Article Google Scholar - Witter, J. A. & Kulman, H. M. The parasite complex of the forest tent caterpillar in northern Minnesota. Env. Entomol. 8, 723–731 (1979).
Article Google Scholar - Parry, D. Larval and pupal parasitism of the forest-tent caterpillar Malacosoma disstria Hübner (Lepidoptera, Lasiocampidae) in Alberta, Canada. Can. Entomol 127, 877–893 (1995).
Article Google Scholar - Godfray, H. C. J. Parasitoids: Behavioral and Evolutionary Ecology (Princeton Univ. Press, Princeton, 1994).
Google Scholar - Roland, J. Large-scale forest fragmentation increases the duration of forest tent caterpillar outbreak. Oecologia 93, 25–30 (1993).
Article ADS Google Scholar - Roland, J. & Taylor, P. D. in Population Dynamics: New Approaches and Synthesis (eds Cappuccino, N. & Price, P. W.) 195–208 (Academic, San Diego, 1995).
Book Google Scholar - Weseloh, R. M. Spatial distribution of gypsy moth (Lepidoptera: Lymantriidae) and some of its parisitoids within a forest environment. Entomophaga 17, 339–351 (1972).
Article Google Scholar - Holling, C. S. Cross-scale morphology, geometry and dynamics of ecosystems. Ecol. Monogr. 62, 447–502 (1992).
Article Google Scholar - McCullagh, P. & Nelder, G. A. Generalized Linear Models (Chapman & Hall, London, 1989).
Book Google Scholar - Wilkinson, L., Hill, M., Miceli, S., Birkenbeuel, G. & Vang, E. SYSTAT for Windows: V.5 (Evanston, Illinois, 1992).
Google Scholar
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Authors and Affiliations
- Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada, T6G 2E9
Jens Roland - Atlantic Cooperative Wildlife Ecology Research Network, Department of Biology, Acadia University, Wolfville, Nova Scotia, Canada, B0P 1X0
Philip D. Taylor
Authors
- Jens Roland
- Philip D. Taylor
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Roland, J., Taylor, P. Insect parasitoid species respond to forest structure at different spatial scales.Nature 386, 710–713 (1997). https://doi.org/10.1038/386710a0
- Received: 15 July 1996
- Accepted: 18 February 1997
- Issue date: 17 April 1997
- DOI: https://doi.org/10.1038/386710a0