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Effects of water acidification on the distribution pattern and the reproductive success of amphibians

  • The Ecological Effects of Acid Deposition Part II
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Summary

Nine amphibian species were encountered in poorly buffered waters of The Netherlands (alkalinity ≦1 meq·l−1). These soft water systems are highly sensitive to acidifying precipitation. The number of species as well as the percentage of waters which harbour amphibian populations are strongly reduced in the extremely acid pH-class\((\bar pH< 4.0)\). The reproductive success of amphibians is negatively affected by low pH. The eggs become heavily infested with fungi (Saprolegniaceae). In acidifying systems many physico-chemical parameters are significantly correlated with the pH of the water. Strongly acidified waters are characterized by low alkalinity, conductivity and ionic content but high acidity and high concentrations of (heavy) metals and ammonium and a high relative sulphate concentration. Culture experiments with eggs and larvae ofRana arvalis. Rana ‘esculenta’, Rana temporaria andBufo bufo show that apart from the pH, elevated aluminium, cadmium and ammonium contents may also affect the reproductive success of amphibians.

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References

  1. Beebee, T. J. C., and Griffin, J. R., A preliminary investigation into Natherjack toad (Bufo calamita) breeding site characteristics in Britain. J. Zool. Lond.181 (1977) 341–350.

    Article  Google Scholar 

  2. Brunström, B., Effects of egg hatching and early development ofRana temporaria andR. arvalis in waters of different pH values and ion contents. Snoken8 (1978) 117–125 (in Swedish).

    Google Scholar 

  3. Carroll, E. J., Jr., and Hedrick, J. L., Hatching in the toadXenopus laevis: morphological events and evidence for a hatching enzyme. Devl Biol.38 (1974) 1–13.

    Article  CAS  Google Scholar 

  4. Clausnitzer, H. J., Durch Umwelteinflüsse gestörte Entwicklung beim Laich des Moorfrosches (Rana arvalis L.). Beitr. Naturk. Niedersachs.32 (1979) 68–78.

    Google Scholar 

  5. Cook, R. P., Effects of acid precipitation on embryonic mortality of spotted salamanders (Ambystoma maculatum) and Jefferson salamanders (Ambystoma jeffersonianum) in the Connecticut Valley of Massachusetts. Thesis, University of Massachusetts Amherst 1978.

    Google Scholar 

  6. Cooke, A. S., and Frazer, J. F. D., Characteristics of newt breeding sites. J. Zool. Lond.178 (1976) 223–236.

    Article  Google Scholar 

  7. Dale, J., and Freedman, B., Effects of acidity on Nova Scotia amphibians, in: Workshop Proceedings Kejimkujik Calibrated Catchments Program, p. 71. Ed. J. Kerekes. Life Science Centre, Dalhousie University, Halifax, Nova Scotia 1983.

    Google Scholar 

  8. Dale, J., and Freedman, B., Effects of acidity on Nova Scotia amphibians. First Annual Report. Prepared for the Canadian Wildlife Service 1983.

  9. Dam, H. van, Suurmond, G., and Braak, C. J. F. ter, Impact of acidification on diatoms and chemistry of Dutch moorland pools. Hydrobiologia83 (1981) 425–459.

    Article  Google Scholar 

  10. Drabløs, D., and Tollan, A. (eds), Ecological Impact of Acid Precipitation. Proc. Int. Conf. Ecol. Impact Acid Precip., Norway 1980, SNSF project, Oslo-Aas 1980.

    Google Scholar 

  11. Dunson, W. A., and Connell, J., Specific inhibition of hatching in amphibian embryos by low pH. J. Herpetol.16 (1982) 314–316.

    Article  Google Scholar 

  12. Gellhorn, E., Studien zur Ionenphysiologie an den Spermatozoen und Eiern vonStrongylocentrotus lividus. Pflügers Arch. ges. Physiol.216 (1927) 198–219.

    Article  CAS  Google Scholar 

  13. Gosner, K. L., and Black, I. H., The effects of acidity on the development and hatching of New Jersey frogs. Ecology38 (1957) 256–262.

    Article  CAS  Google Scholar 

  14. Hagström, T., The extinction of frogs in a lake acidified by atmospheric pollution. Sver. Nat.11 (1977) 367–369 (in Swedish).

    Google Scholar 

  15. Hagström, T., Reproductive strategy and success of amphibians in waters acidified by atmospheric pollution. Proc. Eur. Herp. Symp. C.W.L.P. Oxford (1980) 55–57.

  16. Haines, T. H., Acidic precipitation and its consequences for aquatic systems: a review. Trans. Amer. Fish. Soc.110 (1981) 669–707.

    Article  CAS  Google Scholar 

  17. Hall, R. J., and Likens, G. E., Ecological effects of experimental acidification on a stream ecosystem, in: Ecological Impact of Acid Precipitation, pp. 375–376. Eds D. Drabløs and A. Tollan. Proc. Int. Conf. Ecol. Impact Acid Precip., Norway 1980, SNSF project, Oslo-Aas 1980.

    Google Scholar 

  18. Honegger, R. E., Threatened amphibians and reptiles in Europe. Akademische Verlags Gesellschaft, Wiesbaden 1981.

    Google Scholar 

  19. Huckabee, J. W., Goodyear, C. P., and Jones, R. D., Acid rock in the Great Smokies: Unanticipated impact on aquatic biota of road construction in regions of sulfide miniralization. Trans. Am. Fish. Soc.104 (1975) 677–684.

    Article  CAS  Google Scholar 

  20. Johnson, R. E., Ed., Acid rain/Fisheries. Proc. Int. Symp. Acid Precip. Fish. Imp., American Fisheries Society, Bethesda, Maryland 1982.

  21. Karns, D. R., Toxic bog water in northern Minnesota peatlands: ecological and evolutionary consequences for breeding amphibians. Ph. D. Thesis, University of Minnesota 1983.

  22. Lenders, A. J. W., Het voorkomen van de Knoflookpad (Pelobates fuscus [Laurenti]) in relatie met de zuurgraad van het voortplantingswater. Natuurh. Maandbl.73 (1984) 30–35.

    Google Scholar 

  23. Leuven, R. S. E. W., and Schuurkes, J. A. A. R., Effecten van zure, stikstof- en zwavelhoudende neerslag op kalk en voedselarme wateren, vol. 47, pp. 1–131. Ministry of Housing, Physical Planning and Environment. Publikatiereeks Lucht 1985.

  24. Leuven, R. S. E. W., Hartog C. den, Christiaans, M. M. C., and Oyen, F. G. F., Effects of acid precipitation on amphibians and fish, in: Proc. Acid. Precip. Symp. 's-Hertogenbosch, pp. 184–186. Eds E. H. Adema and J. van Ham, Pudoc, Wageningen 1984.

    Google Scholar 

  25. Nielsen, C. L., Pough, F. H., and Gorn, J. A., The effect of acid precipitation on reproduction in salamanders: egg transplantation studies. Am. Zool.17 (1977) 947.

    Google Scholar 

  26. Overrein, L. N., Seip, H. M., and Tollan A., Acid precipitation-effects on forest and fish. Final report of the SNSF project 1972–1980. Oslo-Aas 1981.

  27. Petranka, J. W., Just, J. J., and Crawford, E. C., Hatching of amphibian embryos: the physiological trigger. Science217 (1982) 257–259.

    Article  CAS  PubMed  Google Scholar 

  28. Peterson, R. H., Daye, P. G., and Metcalfe, J. L., The effects of low pH on hatching of Atlantic salmon eggs, in: Ecological Impact of Acid Precipitation, p. 328. Eds D. Drabløs and A. Tollan. Proc. Int. Conf. Ecol. Impact Acid Precip., Norway 1980, SNSF project, Oslo-Aas 1980.

    Google Scholar 

  29. Pierce, B. A., Hoskins, J. B., and Epstein, E., Acid tolerance in Connecticut wood frogs (Rana sylvatica). J. Herpetol.18 (1984) 159–167.

    Article  CAS  Google Scholar 

  30. Pough, F. H., Acid precipitation and embryonic mortality of spotted salamanders,Ambystoma maculatum. Science192 (1976) 68–72.

    Article  CAS  PubMed  Google Scholar 

  31. Pough, F. H., and Wilson, R. E., Acid precipitation and reproductive success ofAmbystoma salamanders. Water, Air Soil Pollut.7 (1977) 531–544.

    Article  Google Scholar 

  32. Prescot, I., Cooke, A. S., and Corbett, K. F., in: The Changing Flora and Fauna of Britain, pp. 229–254. Ed. D. L. Hawksworth. Systematics Association special volume No. 6, Academic Press, London 1974.

    Google Scholar 

  33. Roelofs, J. G. M., Impact of acidification and eutrophication on macrophyte communities in soft waters in The Netherlands. I. Field observations. Aquat. Bot.17 (1983) 139–155.

    Article  CAS  Google Scholar 

  34. Roelofs, J. G. M., Schuurkes, J. A. A. R., and Smits, A. J. M., Impact of acidification and eutrophication on macrophyte communities in soft waters. II. Experimental studies. Aquat. Bot.18 (1984) 389–411.

    Article  CAS  Google Scholar 

  35. Runn, P., Johansson, N., and Milbrink, G., Some effects of low pH on the hatchability of eggs of perch,Perca fluviatilis. L. Zoon5 (1977) 115–125.

    CAS  Google Scholar 

  36. Saber, P. A., and Dunson, W. A., Toxicity of bog water to embryonic and larval anuran amphibians. J. expl Zool.204 (1978) 33–42.

    Article  Google Scholar 

  37. Salthe, S. N., Increase in volume of the perivitelline chamber during development ofRana pipiens Schreber. Physiol. Zool.38 (1965) 80–98.

    Article  Google Scholar 

  38. Salthe, S. N., and Mecham, J. S., Reproductive and courtship patterns, in: Physiology of the Amphibia, vol. II, pp. 310–521. Ed. B. Lofts. Academic Press, New York 1964.

    Google Scholar 

  39. Schlichter, L., Low pH affects the fertilization and development ofRana pipiens eggs. Can. J. Zool.59 (1980) 1693–1699.

    Article  Google Scholar 

  40. Schoots, A. F. M., and Denucé, J. M., Purification and characterization of hatching enzyme of the pike (Esox lucius). Int. J. Bioch.13 (1981) 591–602.

    Article  CAS  Google Scholar 

  41. Strijbosch, H., Habitat selection of amphibians during their aquatic phase. Oikos33 (1979) 363–372.

    Article  Google Scholar 

  42. Tome, M. A., and Pough, F. H., Responces of amphibians to acid precipitation, in: Acid Rain/Fisheries, pp. 245–254. Ed. R. E. Johnson. Proc. Int. Symp. Acid Precip. Fish. Imp., Am. Fish. Soc., Bethesda, Maryland 1982.

  43. Urch, U. A., and Hedrick, J. L., Isolation and characterization of the hatching enzyme from the amphibian,Xenopus laevis. Archs Biochem. Biophys.206 (1981) 424–431.

    Article  CAS  Google Scholar 

  44. Vangenechten, J. H. D., Puymbroeck, S. van, Vanderborght, O. L. J., Bosmans, F., and Deckers, H., Physico-chemistry of surface waters in the Campine region of Belgium, with special reference to acid moorland pools. Archs Hydrobiol.90 (1981) 369–396.

    CAS  Google Scholar 

  45. Witschi, E., Development of Vertebrates. Sounders Company London 1956.

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Leuven, R.S.E.W., den Hartog, C., Christiaans, M.M.C. et al. Effects of water acidification on the distribution pattern and the reproductive success of amphibians. Experientia 42, 495–503 (1986). https://doi.org/10.1007/BF01946687

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