Eur. J. Entomol. 104 (2): 217-224, 2007 | DOI: 10.14411/eje.2007.034

Eurytoma robusta (Hymenoptera: Eurytomidae), a local key factor in the population dynamics of Urophora cardui (Diptera: Tephritidae): a comparative analysis

Helmut ZWÖLFER1, Marc BÖHEIM2, Erwin BECK2
1 University of Bayreuth, c/o Department of Animal Ecology I, Universitäts-Str., D-95440 Bayreuth, Germany; e-mail: helmut.zwoelfer@uni-bayreuth. de
2 Department of Plant Physiology, e-mail: erwin.beck@uni-bayreuth.de


Eurytoma robusta
Mayr (Chalcidoidea) exploits host galls either as a primary or secondary parasitoid, an entomophytophagous inquiline or occasionally even as a predator. We present data on its ecology and impact on gall densities and population trends of the gall fly Urophora cardui (L.) on Cirsium arvense (L.) Scop. Habitat preference, host gall selection, clutch size, and high incidence of superparasitism causing empty gall cells show that E. robusta, a generalist with a broad host spectrum, is relatively poorly adapted to parasitising U. cardui. The influence of E. robusta on U. cardui in the Belfort-Sundgau region (1970-2004), in the Upper Rhine Valley (1973-2004) and in north-eastern Bavaria (1977-2004), differed considerably. In the forests of the Upper Rhine Valley and the Belfort-Sundgau region, where U. cardui has relatively stable source-sink populations, E. robusta is present but not the dominant mortality factor of the gall fly. In most areas of north-eastern Bavaria U. cardui occurs in fragmented populations and short lived non-equilibrium metapopulations. In these systems E. robusta became more abundant over the last five years, which resulted in a high incidence of superparasitism, an increase in the number of empty gall cells and reduced gall quality. The greatly increased degree of parasitism and an excess of empty cells resulted recently in the collapse of most local populations of U. cardui in the study area south of Bayreuth (north-eastern Bavaria). Together with earlier records the data presented here suggest that in north-eastern Bavaria E. robusta cause fluctuations in the abundance of U. cardui, which have a periodicity of 5-7 years. A remarkable feature of the oligophagous E. robusta is its high fidelity to formerly abundant U. cardui populations, which, with declining host densities, leads to overexploitation, resulting in a high incidence of superparasitism and high larval mortality. The possible influence of the habitat structure on the effect of E. robusta on the population dynamics of U. cardui is discussed. Our data plus that of other authors suggest that, with regard to U. cardui, E. robusta can develop a temporary local host specialisation.

Keywords: Hymenoptera, Eurytomidae, Diptera, Tephritidae, entomophytophagy, superparasitism, gall ecology, local host specialisation, population dynamics, Eurytoma robusta, Urophora cardui

Received: May 17, 2006; Revised: November 13, 2006; Accepted: November 13, 2006; Published: April 25, 2007  Show citation

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ZWÖLFER, H., BÖHEIM, M., & BECK, E. (2007). Eurytoma robusta (Hymenoptera: Eurytomidae), a local key factor in the population dynamics of Urophora cardui (Diptera: Tephritidae): a comparative analysis. EJE104(2), 217-224. doi: 10.14411/eje.2007.034
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References

  1. BOGAHAWATTE C.N.L. & VAN EMDEN H.F. 1996: The influence of the host plant of diamond-back moth (Plutella xylostella) on the plant preferences of its parasitoid Cotesia plutellae in Sri Lanka. Physiol. Entomol. 21: 93-96 Go to original source...
  2. CLARIDGE M.F. 1961: Biological observations on some eurytomid (Hym. Chalicidoidea) parasites associated with Compositae, and some taxonomic implications. Proc. R. Entomol. Soc. London (A) 36: 153-158 Go to original source...
  3. DEMPSTER J.P., ATKINSON D.A. & CHEESMAN O.D. 1995: The spatial population dynamics of insects exploiting a patchy food resource. Oecologia 104: 340-353 Go to original source...
  4. EBER S. & BRANDL R. 1994: Ecological and genetic spatial patterns of Urophora cardui (Diptera: Tephritidae) as evidence for population structure and biogeographical processes. J. Anim. Ecol. 63: 187-199 Go to original source...
  5. EBER S. & BRANDL R. 1996: Metapopulation dynamics of the tephritid fly Urophora cardui: an evaluation of incidencefunction model assumption with field data. J. Anim. Ecol. 65: 621-630 Go to original source...
  6. EBER S. & BRANDL R. 2003: Regional patch dynamics of the weed Cirsium arvense, and possible implications for plant animal interactions. J. Veg. Sci. 14: 259-266 Go to original source...
  7. FRENZEL M., EBER S., KLOTZ S. & BRANDL R. 2000: Ecological comparisons across geographical distributions: the thistle gall fly Urophora cardui (Diptera: Tephritidae) on different Cirsium hosts. Eur. J. Entomol. 97: 183-189. Go to original source...
  8. JOHANNESEN J. & SEITZ A. 2003a: Larval distributions of the ectoparasitoid wasp Eurytoma robusta relative to the host tephritid gall fly Urophora cardui. Entomol. Exp. Appl. 107: 47-55 Go to original source...
  9. JOHANNESEN J. & SEITZ A. 2003b: Comparative population genetic structures of the fruit fly Urophora cardui and its primary parasitoid Eurytoma robusta. Entomol. Exp. Appl. 107: 149-157 Go to original source...
  10. KANKARE M., STEFANESCU C., VAN NOUHUYS S. & SHAW M.R. 2005: Host specialization by Cotesia wasps (Hymenoptera: Braconidae) parasitizing species-rich Melitaeini (Lepidoptera: Nymphalidae) communities in north-eastern Spain. Biol. J. Linn. Soc. 86: 45-65 Go to original source...
  11. KRAAIJEVELD A.R. 2004: Experimental evolution in hostparasitoid interactions. In Ehler L E., Sforza R. & Mateille T. (eds): Genetics, Evolution and Biological Control. CABI International, Wallingford, pp. 163-181
  12. LALONDE R.G. & SHORTHOUSE J.D. 1984: Developmental morphology of the gall of Urophora cardui (Diptera, Tephritidae) in the stems of Canada thistle (Cirsium arvense). Can. J. Botany 62: 1372-1384 Go to original source...
  13. PESCHKEN D.P. & DERBY J.L. 1997: Establishment of Urophora cardui (Diptera: Tephritidae) on Canada Thistle, Cirsium arvense (Asteraceae), and colony development in relation to habitat and parasitoids in Canada.. Ecol. Stud. 130: 53-66 Go to original source...
  14. ROTHERAY G.E. 1986: Effect of moisture on emergence of Urophora cardui (L.) (Diptera: Tephritidae) from its gall on Cirsium arvense (L.). Entomol. Gaz. 37: 41-44
  15. ROSENZWEIG M.L., BROWN J.S. & VINCENT T.L. 1987: Red queens and ESS: the coevolution of evolutionary rates. Evol. Ecol. 1: 59-94 Go to original source...
  16. SCHLUMPRECHT H. 1990: Untersuchungen zur PopulationsGkologie des Phytophagen-Parasitoid-Systems von Urophora cardui L. (Diptera: Tephritidae). PhD Thesis, University of Bayreuth, 143 pp
  17. SHORTHOUSE J.D. 1973: The insect community associated with rose galls of Diplolepis polita (Cynipidae, Hymenoptera). Quest. Entomol. 9: 55-98
  18. SEITZ A. & KOMMA M. 1984: Genetic polymorphism and its ecological background in tephritid populations (Diptera: Tephritidae). In WGhrmann K. & Loeschke V. (eds): Population Biology and Evolution. Springer, Heidelberg, pp. 143-158 Go to original source...
  19. VAN EMDEN H.F., SPONAGL B., WAGNER E., BAKER T., GANGULY S. & DOULOUMPAKA S. 1996: Hopkins' "host selection principle", another nail in its coffin. Physiol. Entomol. 21: 325-328 Go to original source...
  20. VARLEY G.C. 1941: On the search for hosts and the egg distribution of some chalcid parasites of the knapweed gall-fly. Parasitology 33: 47-66 Go to original source...
  21. VARLEY G.C. 1947: The natural control of population balance in the knapweed gall-fly (Urophora jaceana). J. Anim. Ecol. 16: 139-187 Go to original source...
  22. VET L.E. & DICKE M. 1992: Ecology of infochemical use by natural enemies in a tritrophic context. Annu. Rev. Entomol. 37: 141-72 Go to original source...
  23. VIKBERG V. 2005: The thistle stem gall-fly (Urophora cardui) and its chalcidoid parasitoids in southern Finland (Hymenoptera: Chalcidoidea). Sahlbergia 10: 30-49 [in Finish, with English abstr.]
  24. WEIS A.E., ABRAHAMSON W.G. & MCCREA K.D. 1985: Host gall size and oviposition success by the parasitoid Eurytoma gigantea. Ecol. Entomol. 10: 341-348 Go to original source...
  25. ZWOLFER H. 1979: Strategies and counterstrategies in insect population systems competing for space and food in flower heads and plant galls. Fortschr. Zool. 25: 331-353
  26. ZWOLFER H. 1994: Structure and biomass transfer in food webs: stability, fluctuations, and network control. In Schulze E.-D. (ed.): Flux Control in Biological Systems from Enzymes to Populations and Ecosystems. Academic Press, San Diego, pp. 365-419 Go to original source...
  27. ZWOLFER H. & ARNOLD-RINEHART J. 1993: The evolution of interactions and diversity in plant-insect systems. The Urophora-Eurytoma food web in galls on Palearctic Cardueae. Ecological Studies. Vol. 99. Springer, Berlin, Heidelberg, New York, pp. 211-233 Go to original source...
  28. ZWOLFER H. & ARNOLD-RINEHART J. 1994: Parasitoids as a driving force in the evolution of gall size of Urophora on Cardueae hosts. In Williams M.A.J. (ed.): Plant Galls. Systematics Association Special Volume No. 49. Clarendon Press, Oxford, pp. 245-57 Go to original source...
  29. ZWOLFER H. & SCHLUMPRECHT H. 1993: Resource utilization, population structures and population dynamics of Urophora cardui L. (Dipt.: Tephritidae), a gall former on stems of Cirsium arvense. In den Boer P.J., Mols M. & Szysko J. (eds): Dynamics of Populations, Proceedings of the meeting on population problems, Smolarnia, Poland, 9-15 Sept. 1992, Agricultural University, Warsaw, pp. 55-58

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