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Physiological characteristics of the Large Copper butterfly, Lycaena dispar (Lepidoptera: Lycaenidae)

  • Kim, Seong-Hyun (Applied Entomology Division, Department of Agricultural Biology, National Academy of Agricultural Science) ;
  • Hong, Seong-Jin (Applied Entomology Division, Department of Agricultural Biology, National Academy of Agricultural Science) ;
  • Lee, Young-Bo (Applied Entomology Division, Department of Agricultural Biology, National Academy of Agricultural Science) ;
  • Park, Hae-Chul (Applied Entomology Division, Department of Agricultural Biology, National Academy of Agricultural Science) ;
  • Je, Yeon-Ho (School of Agricultural Biotechnology, Seoul National University) ;
  • Kim, Nam-Jung (Applied Entomology Division, Department of Agricultural Biology, National Academy of Agricultural Science)
  • Received : 2011.09.22
  • Accepted : 2011.11.16
  • Published : 2011.12.31

Abstract

To establish an indoor-rearing system for the Large Copper butterfly, $Lycaena$ $dispar$ and the Small Copper butterfly, $Lycaena$ $phlaeas$, the effect of temperature, photoperiod and host plants on larval development was investigated. The larvae of $Lycaena$ $dispar$ fed on $Rumex$ $crispus$, whereas the larvae of $Lycaena$ $phlaeas$ ate both $Rumex$ $crispus$ and $Rumex$ $acetosa$. The duration of the larval period of $Lycaena$ $dispar$ was 13.8 days on $R.$ $crispus$ and that, of $Lycaena$ $phlaeas$ was 15.9 days and 15.2 days on $R.$ $acetosa$ and $R.$ $crispus$ respectively. Laboratory experiments show that the Large Copper larvae are able to feed on other $Rumex$ species without harming their overall survival and can utilize these alternative host plants at least as efficiently as their natural host plant. This result suggests that plant chemistry is not responsible for their lack of utilization of the alternative host plants in the wild. Host plant choice by ovipositing females was measured with the two alternative hosts. $Lycaena$ $dispar$ preferred $R.$ $crispus$ to $R.$ $acetosa$, wheareas $Lycaena$ $phlaeas$ preferred $R.$ $acetosa$ to $R.$ $crispus$. Temperature has been proposed as an important determinant of developmental rate, lifespan and mortality in invertebrates. As temperature increased, length of the developmental period gradually decreased. The developmental period of the Large Copper larvae was 11.0 days and 28.5 days at $30^{\circ}C$ and $17.5^{\circ}C$, respectively.

Keywords

References

  1. Asher J, Fox R, Harding P, Jeffcoate G, Jeffcoate S (2001) The millennium atlas of butterflies in britain and ireland. Oxford University Press.
  2. Ballmer GR, Pratt GF (1989) Instar number and development in Lycaena phlaeas hypophlaeas (Boisduval) (Lycaenidae). J Lep Soc 43, 59-65.
  3. Bink FA (1970) A review of the introductions of Thersamonia dispar Haw. (Lep. Lycaenidae) and the speciation problem. Entomologische Berichten 30, 179-83.
  4. Bink FA (1986) Acid stress in Rumex hydrolapathum (Polygonaceae) and its influence on the phytophage Lycaena dispar (Lepidoptera; Lycaenidae). Oecologia 70, 447-451. https://doi.org/10.1007/BF00379510
  5. Bloemmen MV (2004) European corridors: Strategies for corridor development for target species. ECNC, Tilburg, the Netherlands & Alterra.
  6. Bown D (1995) Royal horticultural society encyclopedia of herbs and their uses. London. Dorling Kindersley.
  7. Bretherton RF (1966) A Distiribution List of the butterflies (Rhopalocera) of western and southern Europe. Trans Br Entomol 17, 1-9.
  8. Chew FS, Rodman JE (1979) Plant resources for chemical defense, pp. 271-307. In G. A. Rosenthal and D. H. Janzen, Herbivores: Their interaction with secondary plant metabolites. Academic Press, N.Y.
  9. Chris VS (1990) Red data book of european butterflies (Rhopalocera). The world conservation union. Nature and Environment. No. 99.
  10. Duffey E (1968) Ecological studies on the Large Copper butterfly Lycaena dispar Haw. Batavus Obth. at woodwalton fen national nature reserve, Huntingdonshire. J appl Ecol 5, 69-96. https://doi.org/10.2307/2401275
  11. Duffey E, Mason G (1970) Some effects of summer floods on woodwalton fen In 1968/1969. Entomol gaz 21, 23-6.
  12. Duffey E (1977) The re-establishment of the Large Copper butterfly Lycaena dispar batava obth. on woodwalton fen national nature Reserve, Cambridgeshire, England, 1969-73. Bio Conserve 12, 143-158. https://doi.org/10.1016/0006-3207(77)90067-2
  13. Hatcher PE, Ayres PG, Paul ND (1995) The effect of natural and simulated insect herbivory, and leaf age, on the process of infection of Rumex crispus L. and R. obtusifolius L. by Uromyces rumicis (Schum.) Wint New Phytol 130 (2), 239- 249. https://doi.org/10.1111/j.1469-8137.1995.tb03045.x
  14. Heath J (1981) British red data book: Insects: progress report. Nature Conservancy Council Information and Library Services. Banbury.
  15. Heath J (1983) Is this the earliest record of Lycarna dispar (Haworth) (Lepidoptera : Lycaenidae). Entomol gaz 34, 228.
  16. Higgins L, Hargreaves B (1983) The butterflies of britain and europe (Collins Field Guide). London.
  17. IUCN (1990) Red List of threatened animals. Compiled by the world conservation monitoring centre, Cambridge.
  18. Kudrna O (2002) The distribution atlas of European butterflies. Oedippus 20, 1-342.
  19. Libert B, Franceschi VR (1987) Oxalate in crop plants. J Agr Food Chem 35, 926-938. https://doi.org/10.1021/jf00078a019
  20. Martin LA, Pullin AS (2004a) Host plant specialisation and habitat restriction in an endangered insect, Lycaena dispar batavus (Lepidoptera : Lycaenidae) I. Larval feeding and oviposition preferences. Eur J Entomol 101, 51-56. https://doi.org/10.14411/eje.2004.012
  21. Martin LA, Pullin AS (2004b) Host plant specialisation and habitat restriction in an endangered insect, Lycaena dispar batavus (Lepidoptera : Lycaenidae) II. Larval survival on alternative host plants in the field. Eur J Entomol 101, 57-62. https://doi.org/10.14411/eje.2004.013
  22. Pullin AS (1995) Ecology and conservation of butterflies. Chapman & Hall, London ; New York.
  23. Pullin AS (1997) Habitat requirements of Lycaena dispar batavus and implications for re-establishment in England. J Insect Conserv 1, 177-185. https://doi.org/10.1023/A:1018407831717
  24. Pullin AS (1998) The status, ecology and conservation of Lycaena dispar (Lycaenidae: Lycaenini) in Europe. Nota Lepidopterol 21, 94-100.
  25. Stanton ML (1979) The role of chemotactile stimuli in the oviposition preferences of colias butterflies. Oecologia 39, 79- 91. https://doi.org/10.1007/BF00345999
  26. Suzuki Y (1976) So-called territorial behaviour of the small copper, Lycaena phlaeas daimio Seitz (Lepidopter: Lycaenida). Kontyu 44, 193-204.
  27. Webb MR, Pullin AS (1996) Larval survival in populations of the Large Copper butterfly Lycaena dispar batavus. Ecography 19, 279-286. https://doi.org/10.1111/j.1600-0587.1996.tb01255.x
  28. Webb MR, Pullin AS (2000) Egg distribution in the Large Copper butterfly Lycaena dispar batavus (Lepidoptera : Lycaenidae): Host plant versus habitat mediated effects. Eur J Entomol 97, 363-367. https://doi.org/10.14411/eje.2000.055
  29. Whittaker RH, Feeny PP (1971) Allelochemics: chemical interactions between species. Science 171, 757-770. https://doi.org/10.1126/science.171.3973.757
  30. Wiklund C (1974) Oviposition preferences in Papilio machaon in relation to the host plants of the larvae. Entomol Exp Appl 17, 189-198. https://doi.org/10.1111/j.1570-7458.1974.tb00335.x
  31. Yoshida M, Cowgill SE, Wightman JA (1997) Roles of oxalic and malic acids in chickpea trichome exudate in host plant resistance to Helicoverpa armigera. J Chem Ecol 23, 1195- 1210. https://doi.org/10.1023/B:JOEC.0000006395.45516.e8
  32. Yoshihara T, Sogawa K, Pathak MD, Juliano BO, Sakamura S (1980) Oxalic acid as a sucking inhibitor of the brown planthopper in rice (Delphacidae, Homoptera). Ent Exp & appl 27, 149-155. https://doi.org/10.1111/j.1570-7458.1980.tb02959.x

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