Hostname: page-component-848d4c4894-jbqgn Total loading time: 0 Render date: 2024-07-03T06:47:28.111Z Has data issue: false hasContentIssue false

Seasonal dynamics of egg laying and egg-laying strategy of the ectoparasite Argulus coregoni (Crustacea: Branchiura)

Published online by Cambridge University Press:  13 May 2004

T. HAKALAHTI
Affiliation:
Department of Biological and Environmental Science, P.O. Box 35 (ya), FIN-40014 University of Jyväskylä, Finland
A. F. PASTERNAK
Affiliation:
Institute of Oceanology, Russian Academy of Sciences, Moscow, Russia
E. T. VALTONEN
Affiliation:
Department of Biological and Environmental Science, P.O. Box 35 (ya), FIN-40014 University of Jyväskylä, Finland

Abstract

Substrate preferences, spatial aggregation patterns and seasonal dynamics in the egg laying of ectoparasitic Argulus coregoni were studied at a commercial fish farm in Finland. Pilot experiments showed that A. coregoni females selected specific types of substrates for egg laying. Significantly more A. coregoni eggs were laid on dark substrates than on light ones suggesting the use of visual cues. Therefore, egg-laying plates of dark colour were constructed for further experiments. Most A. coregoni eggs were deposited in locations in shadow and in the deepest water in a 2 m deep farming canal. Relatively more eggs were laid on bottom stones situated near each egg-laying trap than on artificial egg-laying plates indicating a preference for irregular stones in the deeper locations in the canal. The plates were located 20 cm above the bottom. However, a total of 5863 A. coregoni egg clutches, corresponding approximately to 1·5 million unhatched metanauplii, were successfully destroyed with the plates indicating that egg-laying traps can be used as an ecological control method against argulids in certain situations. For traps to be effective, ponds should not contain stones or any other hard substrata attracting female lice. The egg laying of A. coregoni in this study started on 5 July in 2001 and extended over 3·5 months up to mid-October. The egg-laying pattern of A. coregoni population was unimodal, supporting the view that only a single A. coregoni generation occurred annually in Central Finland.

Type
Research Article
Copyright
2004 Cambridge University Press

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

AVENANT, A., VAN AS, J. G. & LOOTS, G. C. (1989). On the hatching and morphology of Dolops ranarum larvae (Crustacea: Branchiura). Journal of Zoology, London 217, 511519.CrossRefGoogle Scholar
BAUER, O. N. (1959). The ecology of parasites of freshwater fish. In Parasites of Freshwater Fish and the Biological Basis of their Control. Bulletin of the State Scientific Research Institute of Lake and River Fisheries, vol. XLIX, pp. 3207. Translated from Russian: Israel Program for Scientific Translations Jerusalem 1962.
BOWER-SHORE, C. (1940). An investigation of the common louse, Argulus foliaceus (Linn). Parasitology 32, 361371.CrossRefGoogle Scholar
GAULT, N. F. S., KILPATRIC, D. J. & STEWARD, M. T. (2002). Biological control of the fish louse in a rainbow trout fishery. Journal of Fish Biology 60, 226237.CrossRefGoogle Scholar
HAKALAHTI, T. & VALTONEN, E. T. (2003). Population structure and recruitment of the ectoparasite Argulus coregoni Thorell (Crustacea: Branchiura) on a fish farm. Parasitology 127, 7985.CrossRefGoogle Scholar
HERTER, K. (1927). Reizphysiologische Untersuchungen an der Karpfenlaus (Argulus foliaceus L.). Zeitschrift für Vergleichende Physiologie 5, 283370.Google Scholar
MEYER-ROCHOW, V. B., AU, B. & KESKINEN, E. (2001). Photoreception in fish lice (Branchiura): The eyes of Argulus foliaceus Linné, 1978 and A. coregoni Thorell, 1865. Acta Parasitologica 46, 321331.Google Scholar
MIKHEEV, V. N., VALTONEN, E. T. & RINTAMÄKI-KINNUNEN, P. (1998). Host searching in Argulus foliaceus L. (Crustacea: Branchiura): the role of vision and selectivity. Parasitology 116, 425430.Google Scholar
MIKHEEV, V. N., PASTERNAK, A. F., VALTONEN, E. T. & LANKINEN, Y. (2001). Spatial distribution and hatching of overwintered eggs in a fish ectoparasite Argulus coregoni Thorell (Crustacea: Branchiura). Diseases of Aquatic Organisms 46, 123128.CrossRefGoogle Scholar
PASTERNAK, A. F., MIKHEEV, V. N. & VALTONEN, E. T. (2000). Life history characteristics of Argulus foliaceus L. (Crustacea: Branchiura) populations in Central Finland. Annales Zoologici Fennici 37, 2535.Google Scholar
POULIN, R. (1988). Evolutionary Ecology of Parasites. From Individuals to Communities. Chapman and Hall, London.
SHIMURA, S. (1983). Seasonal occurrence, sex ratio and site preference of Argulus coregoni Thorell (Crustacea: Branchiura) parasitic on cultured freshwater salmonids in Japan. Parasitology 86, 537552.CrossRefGoogle Scholar
SHIMURA, S. & EGUSA, S. (1980). Some ecological notes on the egg deposition of Argulus coregoni Thorell (Crustacea: Branchiura). Fish Pathology 15, 4347. (In Japanese with English summary).CrossRefGoogle Scholar
VALTONEN, E. T., HOLMES, J. C. & KOSKIVAARA, M. (1997). Eutrophication, pollution and fragmentation: effects on parasite communities in roach (Rutilus rutilus) and perch (Perca fluviatilis) in four lakes in Central Finland. Canadian Journal of Fish Aquatic Sciences 54, 572585.CrossRefGoogle Scholar