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Energy value of the mud crab Rhithropanopeus harrisii ssp. tridentatus (Crustacea, Decapoda) in relation to season, sex and size

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The energy value of male and female Rhithropanopeus harrisii tridentatus of various carapace width classes was determined. Crab samples were collected in the Vistula Lagoon from April to November 1995. The population of R. harrisii tridentatus from the Vistula Lagoon was characterised by a very low energy value 7.97 [SD] plus_min.1.5 J mg-1 DW, (12.69 [SD] plus_min. 2.1 J mg-1 AFDW). The average amount of ash in this population was 37.66% of dry weight (organic matter was 62.44%). In each month (except September) the calorific value of the females exceeded that of the males; this value also varied seasonally. The calorific value of the population dropped to a minimum in August, whereas the maximum level was recorded in September.
Czasopismo
Rocznik
Strony
231--241
Opis fizyczny
Bibliogr. 28 poz., tab., wykr.
Twórcy
autor
  • Institute of Oceanography, Gdańsk University, Al. Marszałka J. Piłsudskiego 46, 81-378 Gdynia, Poland, oceasz@univ.gda.pl
Bibliografia
  • 1. Buitendijk A. M., Holthuis L. B., 1949, Note on the Zuiderzee crab, R. harrisii (Gould) subspecies tridentatus (Maitland), Zool. Mededelingen, 7, 95-106.
  • 2. Carlton J. T., Geller J. B., 1993, Ecological roulette: the global transport of nonindigenous marine organisms, Science, 261, 17-82.
  • 3. Czeczuga B., Czerpak R., 1970, Pigments in the crab R. harrisii (Gould) subspecies tridentatus (Maitland), Int. Rev. ges. Hydrobiol., 55, 205-212.
  • 4. Czubek J., 1992, Seasonal changes in lipid content and energy value as a function of sex and length of individuals Saduria entomon (L.) from the Gulf of Gdańsk, Wyd. Uniw. Gdańsk, Gdańsk, (in Polish).
  • 5. Demel K., 1953, New species in Baltic fauna, Kosmos, 2, 105-106, (in Polish).
  • 6. Dobrzycka A., Szaniawska A., 1993, Seasonal changes in energy value and lipid content in a population of Corophium volutator (Pallas, 1766) from the Gulf of Gdańsk, Oceanologia, 35, 61-71.
  • 7. Filuk J., Żmudziński L., 1961, Feeding of ichthyofauna of the Vistula Lagoon, Pr. Mor. Inst. Ryb., Gdynia,13, 45-53, (in Polish).
  • 8. Griffiths D., 1977, Calorific variation in Crustacea and other animals, J. Anim. Ecol., 46, 593-605.
  • 9. Klekowski R. Z., Bęczkowski J., 1973, A new modification of the microbomb calorimeter, Ekol. Pol., 16, 229-238, (in Polish).
  • 10. Kujawa S., 1957, The biology and cultivation of crab R. harrisii tridentatus from the Vistula Lagoon, Wszechświat, 2, 57-59, (in Polish).
  • 11. Latała A., 1978, The chlorophyll contents of the waters of the Vistula Lagoon, Stud. i Mater. Oceanol., 21, 81-94, (in Polish).
  • 12. Latała A., 1994, Chlorophyll a and suspensions in the waters of the Vistula Lagoon, Wyd. Wew. Inst. Mor., Gdańsk, 4987, 23-31, (in Polish).
  • 13. Ławiński L., Węglarska B., 1959, Morphological and histochemical investigations on the crab R. harrisii subsp. tridentatus, Acta Med. Biol. Soc. Sci. Gedan., 3, 1-17.
  • 14. Lee R. F., Hirota J., 1973, Wax esters in tropical zooplankton and nekton and the geographical distribution of wax esters in marine copepods, Limnol. Oceanogr., 18, 227-239.
  • 15. Mordukhay-Boltovskoy F. D., 1952, Introduction of a new species of crab into the Don Estuary, Priroda, 1, 113, (in Russian).
  • 16. Murina V. V., Reznichenko O. G., 1952, The process of acclimatisation of the mud crab Rhithropanopeus harrisii tridentatus in the Vistula Lagoon, Tr. Wsesoy. Gridrobiol. Obshch., 10, 255-264, (in Russian).
  • 17. Pautsch F., 1957, Biological Station in Górki Wschodnie, Wszechświat, 8, 245-247, (in Polish).
  • 18. Pliński M., 1989, Biocenotic studies of the Gulf of Gdańsk – Baltic coastal ecosystem under conditions of strong pollution, Proc. 21st European Conf. Mar. Biol. Symp., 367-379.
  • 19. Prus T., 1970, Calorific values as an element of bioenergetic investigations, Pol. Arch. Hydrobiol., 17, 183-199, (in Polish).
  • 20. Prus T., 1975, Measurement of calorific value using the Philipson microbomb calorimeter, Sci. Publ., 149-160.
  • 21. Rathbun M. J., 1930, The Cancroid crabs of America of the families Euryalidae, Portunidae, Atelecyclidae and Xanthidae, Bull. U. S. Nat. Mus., 152, 543-593.
  • 22. Rychter A., 1997, Effects of anoxia on the behaviour, aemolymph lactate and glycogen concentrations in the mud crab Rhithropanopeus harrisii ssp. tridentatus (Maitland) (Crustacea: Decapoda), Oceanologia, 39 (3), 325-335.
  • 23. Snow N. B., 1972, The effect of season and animal size of the calorific content of Daphnia pulicaria Forbes, Limnol. Oceanogr., 17, 902-912.
  • 24. Szaniawska A., 1990, Energy management of benthic invertebrates in the Gulf of Gdańsk, Ph. D. thesis, Uniw. Gdańsk, Gdańsk, (in Polish).
  • 25. Szudarski M., 1963, Distribution of the crab, Rhithropanopeus harrisii (Gould) subsp. tridentatus (Maitland), in Poland, Int. Council Explor. Sea, Baltic –Belt Seas Committee, Gdynia, 73 pp.
  • 26. Turoboyski K., 1973, Biology and ecology of the crab R. harrisii ssp. tridentatus, Mar. Biol., 23, 303-313.
  • 27. Żmudziński L., 1957, Zoobenthos of the Vistula Lagoon, Pr. Mor. Inst. Ryb., Gdynia, 9, 454-485, (in Polish).
  • 28. Żmudziński L., 1961, Ten-legged crustacea in the Baltic Sea, Prz. Zool., 5, 352-360, (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0015-0052
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