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The effect of pH onBrachionus calyciflorus Pallas (Rotifera)

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Abstract

Cohorts of the rotiferBrachionus calyciflorus were grown in media with pH of between 2.5 and 11.5 in increments of 1 unit. pH was shown to exert a major influence on the growth rate and reproductive capacity of theB. calyciflorus. At pH 2.5 theB. calyciflorus showed a negative capacity for population increase (r c). Ther c values of the cohorts reared at pH 3.5 and 4.5 were positive and these cohorts showed high net reproductive rates (R0). Ther c's of cohorts reared at pH of 5.5 and 6.5 were negative, while those of cohorts reared at pH 7.5 to 10.5 were positive with a peak in theR 0 and cohort generation time (T c) at pH 8.5 and 9.5. Total mortality occurred in less that 24 h at pH 11.5.

Successive generations of the progeny from the cohort held at pH 3.5 were reared under the same conditions. Although ther c of the F1 and F2 cohorts increased, the organism was unable to maintain the increased population growth rate, and the F4 generation showed anr c of almost 0.

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References

  • Andrewartha, H. G., 1961. Introduction to the study of Animal Populations. Methuen. 281 pp.

  • Anon., 1969. Water quality criteria for European freshwater fish — extreme pH values and inland fisheries. Wat. Res. 3: 593–611.

    Google Scholar 

  • Anon., 1985. The limnology of Hartebeespoort Dam. South African National Scientific Programmes Report No. 110. Council for Scientific and Industrial Research, Pretoria. 269 pp.

  • Begg, G. W., 1970. Limnological observations on Lake Kariba during 1967 with emphasis on some special features. Limnol. Oceanogr. 15: 776–788.

    Google Scholar 

  • Bevercombe, A. M., N. Cox, M. P. Thomas & J. O. Young, 1973. Studies of the invertebrate fauna of a wet slack in a sand dune system. Arch. Hydrobiol. 71: 487–516.

    Google Scholar 

  • Bulkowski, L., W. F. Krise & K. A. Kraus, 1985. Purification ofCyclops cultures by pH shock (Copepoda). Crustaceana 48: 179–182.

    Google Scholar 

  • Coche, A. G., 1968. Description of physico-chemical aspects of Lake Kariba, an impoundment, in Zambia-Rhodesia. Fish. Res. Bull. Zambia 5: 200–267.

    Google Scholar 

  • Connell, A. D. & D. D. Airey, 1982. The chronic effects of fluoride on the estuarine amphipodsGrandidierella lutosa andG. ligonorum. Wat. Res. 16: 1313–1317.

    Google Scholar 

  • Cowell, B. C., C. J. Dawes, W. E. Gardiner & S. M. Scheda, 1987 The influence of whole lake aeration on the limnology of a hypereutrophic lake in central Florida. Hydrobiologia 148: 3–24.

    Google Scholar 

  • Fisher, R. A. & F. Yates, 1974. Statistical Tables for Biological, Agricultural and Medical Research. Sixth Edition. Longmans. 146 pp.

  • Fryer, G., 1980. Acidity and species diversity in freshwater crustacean faunas. Freshwat. Biol. 10: 41–45.

    Google Scholar 

  • Hargeby, A. & R. C. Petersen, Jr, 1988. Effects of low pH and humus on the survivorship, growth and feeding ofGammarus pulex (L.) (Amphipoda). Freshwat. Biol. 19: 235–247.

    Google Scholar 

  • Havas, M. & T. C. Hutchinson, 1982. Aquatic invertebrates from the Smoking Hills, N.W.T.: Effect of pH and metals on mortality. Can. J. Fish. aquat. Sci. 39: 890–903.

    Google Scholar 

  • Holmes, S., 1986. Henderson's Dictionary of Biological Terms. Ninth Edition. Longman, London. 510 pp.

    Google Scholar 

  • Laughlin, R. B. & J. N. H. E. Guard, 1981. Hormesis: A response to low environmental concentrations of petroleum hydrocarbons. Science 211: 705–706.

    Google Scholar 

  • Malley, D. F. & P. S. S. Chang, 1986. Increase in the abundance at pH 5,1 in experimentally-acidified lake 223, Experimental lakes area, Ontario. Wat. Air Soil Pollut. 30: 629–628.

    Google Scholar 

  • Manny, B. A., G. L. Fahnenstiel & W. S. Gardner, 1987. Acid rain stimulation of Lake Michigan phytoplankton growth. J. Great Lakes Res. 13: 218–223.

    Google Scholar 

  • Mitchell, S. A., 1986. Experiences with outdoor semicontinuous mass culture ofBrachionus calyciflorus. Aquaculture 55: 215–220.

    Google Scholar 

  • Mitchell, S. A. & J. H. B. Joubert, 1986. The effect of elevated pH on the survival and reproduction ofBrachionus calyciflorus. Aquaculture 55: 215–220.

    Google Scholar 

  • O'Brien, W. J. & F. de Noyelles, 1972. Photosynthetically elevated pH as a factor in zooplankton mortality in nutrient enriched ponds. Ecology 53: 605–614.

    Google Scholar 

  • Price, P., 1975. Insect Ecology. John Wiley and Sons, New York. 514 pp.

    Google Scholar 

  • Prophet, C. W., 1963. Physical-chemical characteristics of habitats and seasonal occurrence of some Anostraca on Oklahoma and Kansas. Ecology 44: 798–801.

    Google Scholar 

  • Rask, M., 1984a. The effect of low pH on perch,Perch fluviatilis L. II. The effect of acid stress on different development stages of perch. Ann. zool. Fenn. 21: 9–13.

    Google Scholar 

  • Rask, M., 1984b. The effect of low pH on perch,Perch fluviatilis L. III. The perch population in a small, acidic, extremely humic forest lake. Ann. zool. Fenn. 21: 15–22.

    Google Scholar 

  • Roberts, R. J. & C. J. Shepherd, 1986. Handbook of Trout and Salmon Diseases. Second Edition. Fishing News Books Ltd. Farnham. 222 pp.

    Google Scholar 

  • Roessler, G. S. (editor-in-Chief), 1987. Radiation hormesis. Health Physics 52 (5), Special issue.

  • Sioli, H., 1967. Studies in Amazonian waters. Atas do Simposio sobre a Biota Amazonica Vol. 3 (Limnologia): 9–50.

    Google Scholar 

  • Southwood, T. R. E., 1966. Ecological methods with particular reference to the study of insect populations. Methuen, London. 391 pp.

    Google Scholar 

  • Stebbing, A. R. D., 1981. Hormesis — stimulation of colony growth inCampanularia flexuosa (Hydrozoa) by copper, cadmium and other toxicants. Aquat. Toxicol. 1: 227–238.

    Google Scholar 

  • Stebbing, A. R. D., 1982. Hormesis — the stimulation of growth by low levels of inhibitors. The Science of the Total Environment 22: 213–234.

    Google Scholar 

  • Sutcliffe, D. W. & T. R. Carrick, 1988. Alkalinity and pH of tarns and streams in the English Lake District (Cumbria). Freshwat. Biol. 19: 179–189.

    Google Scholar 

  • Wetzel, R. G., 1983. Limnology. Saunders College Publishing, Philadelphia. 765 pp.

    Google Scholar 

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Mitchell, S.A. The effect of pH onBrachionus calyciflorus Pallas (Rotifera). Hydrobiologia 245, 87–93 (1992). https://doi.org/10.1007/BF00764768

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