Eur. J. Entomol. 110 (4): 643-648, 2013 | DOI: 10.14411/eje.2013.087

Molehills as important larval habitats for the grizzled skipper, Pyrgus malvae (Lepidoptera: Hesperiidae), in calcareous grasslands

Merle STREITBERGER, Thomas FARTMANN
Department of Community Ecology, Institute of Landscape Ecology, University of Münster, Robert-Koch-Straße 28, 48149 Münster, Germany; e-mails: m_stre05@uni-muenster.de; fartmann@uni-muenster.de

Small-scale soil disturbance, such as animal mounds created by subterraneous ecosystem engineers are important microhabitats for species of conservation concern. There are many studies on the effects of ecosystem engineers on plant species diversity and soil properties, but the influence of such organisms on other taxa, such as insects, are rarely analyzed. In this paper, we demonstrate for the first time the role of molehills produced by the European Mole (Talpa europaea) (Linnaeus, 1758) as a larval habitat for a threatened butterfly species within central European calcareous grasslands. We selected the grizzled skipper (Pyrgus malvae) (Linnaeus, 1758) as a study species as previous studies revealed that it prefers warm and open microhabitats for oviposition. Our study clearly showed that host plants occurring on or in the close vicinity of molehills were regularly occupied by immature stages of P. malvae. Occupied host plants at these disturbed sites were characterized by a more open vegetation structure with a higher proportion of bare ground or stones and a lower cover of the herb layer compared with available host plants (control samples). Among molehills those were preferred that had the highest cover of host plants, especially Agrimonia eupatoria. Molehills are important larval habitats for P. malvae in calcareous grasslands on deeper soils. At these sites succession occurs rapidly and the amount of bare ground is usually low, even when they are managed. In contrast to other known breeding sites in calcareous grasslands, molehills with a high cover of host plants provide ideal conditions for the successful larval development of P. malvae: (i) sufficient food during the larval period and (ii) warm microclimatic conditions.

Keywords: Lepidoptera, Hesperiidae, Pyrgus malvae, butterfly, disturbance, ecosystem engineer, molehill, Agrimonia eupatoria, habitat requirement, larval ecology, microclimate, oviposition site selection, calcareous grassland, vegetation structure

Received: March 5, 2013; Revised: May 2, 2013; Accepted: May 2, 2013; Prepublished online: October 1, 2013; Published: December 1, 2013  Show citation

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STREITBERGER, M., & FARTMANN, T. (2013). Molehills as important larval habitats for the grizzled skipper, Pyrgus malvae (Lepidoptera: Hesperiidae), in calcareous grasslands. EJE110(4), 643-648. doi: 10.14411/eje.2013.087
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References

  1. BATES D., MAECHLER M. & DAI B. 2008: lme4: Linear Mixed Effects Models Using S4 Classes. R Package Version 0.999375-28. Available from: http://lme4.r-forge.r-project. org/.
  2. CANALS R.-M. & SEBASTIA M.-T. 2000: Soil nutrient fluxes and vegetation changes on molehills. - J. Veg. Sci. 11: 23-30 Go to original source...
  3. DAVIDSON A.D. & LIGHTFOOD D.C. 2007: Interactive effects of keystone rodents on the structure of desert grassland arthropod communities. - Ecography 30: 515-525 Go to original source...
  4. EBERT G. & RENNWALD E. 1991: Die Schmetterlinge BadenWuerttembergs. Band 1, Tagfalter I. Eugen Ulmer, Stuttgart, 552 pp
  5. ELLENBERG H. & LEUSCHNER C. 2010: Vegetation Mitteleuropas mit den Alpen. 6th ed. Eugen Ulmer, Stuttgart, 1357 pp
  6. ELLIS S. 2003: Habitat quality and management for the northern brown argus butterfly Aricia artaxerxes (Lepidoptera: Lycaenidae) in North East England. - Biol. Conserv. 113: 285-294 Go to original source...
  7. FARTMANN T. 2004: Die Schmetterlingsgemeinschaften der Halbtrockenrasen-Komplexe des Diemeltales. BiozGnologie von Tagfaltern und Widderchen in einer alten Hudelandschaft. - Abh. Westf. Mus. Naturk. 66: 1-256
  8. FARTMANN T. 2006: Oviposition preferences, adjacency of old woodland and isolation explain the distribution of the Duke of Burgundy butterfly (Hamearis lucina) in calcareous grasslands in central Germany. - Ann. Zool. Fenn. 43: 335-347
  9. FARTMANN T. & HERMANN G. 2006: LarvalGkologie von Tagfaltern und Widderchen in Mitteleuropa - von den Anfaengen bis heute. In Fartmann T. & Hermann G. (eds): LarvalGkologie von Tagfaltern und Widderchen in Mitteleuropa. - Abh. Westf. Mus. Naturk. 68: 11-57
  10. FLEISCHER K., STREITBERGER M. & FARTMANN T. 2013: The importance of disturbance for the conservation of a lowcompetitive herb in mesotrophic grasslands. - Biologia 68: 398-403 Go to original source...
  11. GARCIA-BARROS E. & FARTMANN T. 2009: Butterfly oviposition: sites, behaviour and modes. In Settele J., Shreeve T.G., Konvicka M. & van Dyck H. (eds): Ecology of Butterflies in Europe. Cambridge University Press, Cambridge, pp. 29-42
  12. GRONING J., KRAUSE S. & HOCHKIRSCH A. 2007: Habitat preferences of an endangered insect species, Cepero's groundhopper (Tetrix ceperoi). - Ecol. Res. 22: 767-773 Go to original source...
  13. JACQUEMART A.-L., CHAMPLUVIER D. & DE SLOOVER J. 2003: A test of mowing and soil-removal restoration techniques in wet heaths of the High Ardenne, Belgium. - Wetlands 23: 376-385 Go to original source...
  14. JENTSCH A. 2007: The challenge to restore processes in face of nonlinear dynamics - on the crucial role of disturbance regimes. - Restor. Ecol. 15: 334-339 Go to original source...
  15. JONES C.G., LAWTON J.H. & SHACHAK M. 1994: Organisms as ecosystem engineers. - Oikos 69: 373-386 Go to original source...
  16. KING T.J. 1977: The plant ecology of ant-hills in calcareous grasslands. I Patterns of species in relation to ant-hills in southern England. - J. Ecol. 65: 235-256 Go to original source...
  17. KRAMER B., KAMPF I., ENDERLE J., PONIATOWSKI D. & FARTMANN T. 2012: Microhabitat selection in a grassland butterfly: a trade-off between microclimate and food availability. - J. Insect Conserv. 16: 857-865 Go to original source...
  18. KUER A. & FARTMANN T. 2005: Prominent shoots are preferred: microhabitat preferences of Maculinea alcon ([Denis & Schiffermueller], 1775) in Northern Germany. - Nota Lepid. 27: 309-319
  19. MCCUNE B. & KEON D. 2002: Equations for potential annual direct incident radiation and heat load. - J. Veg. Sci. 13: 603-606 Go to original source...
  20. MULLER-WILLE W. 1981: Westfalen. Landschaftliche Ordnung und Bindung eines Landes. 2. Auflage. Aschendorffsche Verlagsbuchhandlung, Muenster, 411 pp
  21. ODMAN A.M., SCHNOOR T.K., RIPA J. & OLSSON P.A. 2012: Soil disturbance as a restoration measure in dry sandy grasslands. - Biodivers. Conserv. 21: 1921-1935 Go to original source...
  22. PICKETT S.T.A. & WHITE P.S. 1985: The Ecology of Natural Disturbance und Patch Dynamics. Academic Press, Orlando, 472 pp
  23. PORTER K. 1992: Eggs and egg-laying. In Dennis R.L.H. (ed.): The Ecology of Butterflies in Britain. Oxford University Press, Oxford, pp. 46-72 Go to original source...
  24. REICHMAN O.J. 2007: The influence of pocket gophers on the biotic and abiotic environement. In Begall S., Burda H. & Schleich C.E. (eds): Subterranean Rodents. News from Underground. Springer, Berlin, Heidelberg, pp. 271-286 Go to original source...
  25. REINHARDT R. & BOLZ R. 2011: Rote Liste und Gesamtartenliste der Tagfalter (Rhopalocera) (Lepidoptera: Papilionoidea et Hesperioidea) Deutschlands. - Natursch. Biol. Vielfalt. 70: 167-194
  26. ROY D.B. & THOMAS J.A. 2003: Seasonal variation in the niche, habitat availability and population fluctuations of a bivoltine thermophilous insect near its range margin. - Oecologia 134: 439-444 Go to original source...
  27. SALZ A. & FARTMAN T. 2009: Coastal dunes as important strongholds for the survival of the rare Niobe fritillary (Argynnis niobe). - J. Insect Conserv. 13: 643-654 Go to original source...
  28. SASAKI T. & YOSHIHARA Y. 2013: Local-scale disturbance by Siberian marmots has little influence on regional plant richness in a Mongolian grassland. - Plant Ecol. 214: 29-34 Go to original source...
  29. SEIFAN M., TIELBORGER K., SCHLOZ-MURER D. & SEIFAN T. 2010: Contribution of molehill disturbances to grassland community composition along a productivity gradient. - Acta Oecol. 36: 569-577 Go to original source...
  30. SETTELE J., FELDMANN R. & REINHARDT R. (eds) 1999: Die Tagfalter Deutschlands. Eugen Ulmer, Stuttgart, 452 pp
  31. SIMKIN S.M. & MICHENER W.K. 2004: Mound microclimate, nutrients and seedling survival. - Am. Midl. Nat. 152: 12-24 Go to original source...
  32. STOUTJESDIJK P. & BARKMAN J.J. 1992: Microclimate Vegetation and Fauna. Opulus Press, Uppsala, 216 pp
  33. THOMAS J.A. 1991: Rare species conservation: case studies of European butterflies. In Spellerberg I.F., Goldsmith F.B. & Morris M.G. (eds): The Scientific Management of Temperate Communities for Conservation. Blackwell Scientific, Oxford, pp. 149-197
  34. TOCKNER K. & STANFORD J.A. 2002: Riverine flood plains: present state and future trends. - Environ. Conserv. 29: 308-330 Go to original source...
  35. TSCHOPE O. & TIELBORGER K. 2010: The role of successional stage and small-scale disturbance for establishment of pioneer grass Corynephorus canescens. - Appl. Veg. Sci. 13: 326-335 Go to original source...
  36. WAGNER W. 2006: Die Gattung Pyrgus in Mitteleuropa und ihre Okologie - Larvalhabitate, Naehrpflanzen und Entwicklungszyklen. In Fartmann T. & Hermann G. (eds): LarvalGkologie von Tagfaltern und Widderchen in Mitteleuropa. - Abh. Westf. Mus. Naturk. 68: 83-122
  37. WALKER L.R. 2011: Integration of the study of natural and anthropogenic disturbances using severity gradients. - Austral Ecol. 36: 916-922 Go to original source...
  38. WALKER L.R. 2012: The Biology of Disturbed Habitats. Oxford University Press, Oxford, 319 pp Go to original source...
  39. WARREN S.D. & BUTTNER R. 2008: Active military training areas as refugia for disturbance-dependent endangered insects. - J. Insect Conserv. 12: 671-676 Go to original source...
  40. WEISS S.B., MURPHY D.D. & WHITE R.R. 1988: Sun, slope, and butterflies: topographic determinants of habitat quality for Euphydryas editha. - Ecology 69: 1486-1496. Go to original source...
  41. WHITE P.S. & JENTSCH A. 2004: Disturbance, succession and community assembly in terrestrial plant communities. In Temperton V.M., Hobbs R.J., Nuttle T. & Halle S. (eds): Assembly Rules in Restoration Ecology - Bridging the Gap between Theory and Practice. Island Press, Washington, D.C, pp. 341-366
  42. WUNSCH Y., SCHIRMEL J. & FARTMANN T. 2012: Conservation management of coastal dunes for Orthoptera has to consider oviposition and nymphal preferences. - J. Insect Conserv. 16: 501-510 Go to original source...
  43. YOSHIHARA Y., OHKURO T., BUUVEIBAATAR B., UNDARMAA J. & TAKEUCHI K. 2010: Pollinators are attracted to mounds created by burrowing animals (marmots) in a Mongolian grassland. - J. Arid Environ. 74: 159-163 Go to original source...
  44. ZAITLIN B. & HAYASHI M. 2012: Interactions between soil biota and the effects of geomorphological features. - Geomorphology 157/158: 142-152 Go to original source...
  45. ZHANG Y., ZHANG Z. & LIU J. 2003: Burrowing rodents as ecosystem engineers: the ecology and management of plateau zokors Myospalax fontanierii in alpine meadow ecosystems on the Tibetan Plateau. - Mamm. Rev. 33: 284-294 Go to original source...

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