Insect parasitoid species respond to forest structure at different spatial scales
Roland and Taylor present data that 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 consequences.
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Published in: | Nature (London) Vol. 386; no. 6626; pp. 710 - 713 |
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Format: | Journal Article |
Language: | English |
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Nature Publishing
17-04-1997
Nature Publishing Group |
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Abstract | Roland and Taylor present data that 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 consequences. |
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AbstractList | Roland and Taylor present data that 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 consequences. There is now a solid body of theoretical work 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 hosts, by the spatial arrangement of the host's habitat and by the spatial scale at which the parasitoid perceives variation in host abundance. Empirical work, however, has been largely restricted to small-scale field studies of less than one hectare with very few larger. 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 consequences. The four species we studied ranged in size from 34 mg for Carcelia malacosomae (Tachinidae) which attack host larvae directly, 41 mg for Patelloa pachypyga and 68 mg for Leschenaultia exul (Tachinidae) which lay eggs on foliage that are subsequently ingested by feeding host caterpillars, and 58 mg for Arachnidomyia (=Sarcophaga) aldrichi (Sarcophagidae) which larviposits on host cocoons. |
Author | Taylor, Philip D Roland, Jens |
Author_xml | – sequence: 1 givenname: Jens surname: Roland fullname: Roland, Jens – sequence: 2 givenname: Philip D surname: Taylor fullname: Taylor, Philip D |
BackLink | http://pascal-francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=2632867$$DView record in Pascal Francis |
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Copyright | 1997 INIST-CNRS Copyright Macmillan Journals Ltd. Apr 17, 1997 |
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Issue | 6626 |
Keywords | Host parasite relation Forests Insecta Environmental factor Spatial scale Lasiocampidae Fragmentation Parasitoid Arthropoda Lepidoptera Population dynamics Habitat Parasitism rate Invertebrata Structure Diptera Malacosoma disstria |
Language | English |
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References | Marino, P. C., Landis, D. A. (b11) 1996; 6 Wilkinson, L., Hill, M., Miceli, S., Birkenbeuel, G., Vang, E. (b21) 1992 Weseloh, R. M. (b18) 1972; 17 Holling, C. S. (b19) 1992; 62 Rogers, D. J., Williams, B. G. (b10) 1994 Godfray, H. C. J. (b15) 1994 Roland, J., Taylor, P. D. (b17) 1995 Waage, J. K. (b5) 1983; 8 Kruess, A., Tscharntke, T. (b6) 1994; 264 Kareiva, P., Wennergren, U. (b4) 1995; 373 Sippell, W. L. (b12) 1962; 94 Roland, J. (b16) 1993; 93 Kareiva, P. (b2) 1990; 330 Kareiva, P. (b9) 1987; 326 Witter, J. A., Kulman, H. M. (b13) 1979; 8 Hassell, M. P., May, R. M. (b1) 1988; 25 McCullagh, P., Nelder, G. A. (b20) 1989 May, R. M. (b3) 1994 Heads, P. A., Lawton, J. H. (b7) 1983; 40 Parry, D. (b14) 1995; 127 Rothman, L. D., Darling, D. C. (b8) 1991; 62 PA Heads (BF386710a0_CR7) 1983; 40 A Kruess (BF386710a0_CR6) 1994; 264 RM Weseloh (BF386710a0_CR18) 1972; 17 MP Hassell (BF386710a0_CR1) 1988; 25 WL Sippell (BF386710a0_CR12) 1962; 94 JA Witter (BF386710a0_CR13) 1979; 8 J Roland (BF386710a0_CR17) 1995 CS Holling (BF386710a0_CR19) 1992; 62 RM May (BF386710a0_CR3) 1994 JK Waage (BF386710a0_CR5) 1983; 8 PC Marino (BF386710a0_CR11) 1996; 6 HCJ Godfray (BF386710a0_CR15) 1994 J Roland (BF386710a0_CR16) 1993; 93 L Wilkinson (BF386710a0_CR21) 1992 P Kareiva (BF386710a0_CR4) 1995; 373 P Kareiva (BF386710a0_CR2) 1990; 330 DJ Rogers (BF386710a0_CR10) 1994 P McCullagh (BF386710a0_CR20) 1989 LD Rothman (BF386710a0_CR8) 1991; 62 P Kareiva (BF386710a0_CR9) 1987; 326 D Parry (BF386710a0_CR14) 1995; 127 |
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Snippet | Roland and Taylor present data that give empirical support to the argument that changes in landscape structure can alter the normal functioning of ecological... There is now a solid body of theoretical work demonstrating that the spatial structure of the habitat combined with animal movement strongly influence... |
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SubjectTerms | Animal and plant ecology Animal populations Animal, plant and microbial ecology Biological and medical sciences Ecology Forests Fundamental and applied biological sciences. Psychology Insects Lasiocampidae Malacosoma disstria Parasites Parasitism Synecology Terrestrial ecosystems |
Title | Insect parasitoid species respond to forest structure at different spatial scales |
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