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Original Articles

Growth optimization of the invasive cyanobacterium Cylindrospermopsis raciborskii in response to phosphate fluctuations

, &
Pages 134-141 | Received 12 Mar 2013, Accepted 04 Oct 2013, Published online: 20 Mar 2014

References

  • Aubriot, L. & Bonilla, S. (2012). Rapid regulation of phosphate uptake in freshwater cyanobacterial blooms. Aquatic Microbial Ecology, 67: 251–263.
  • Aubriot, L., Bonilla, S. & Falkner, G. (2011). Adaptive phosphate uptake behaviour of phytoplankton to environmental phosphate fluctuations. FEMS Microbiology Ecology, 77: 1–16.
  • Aubriot, L., Wagner, F. & Falkner, G. (2000). The phosphate uptake behaviour of phytoplankton communities in eutrophic lakes reflects alterations in the phosphate supply. European Journal of Phycology, 35: 255–262.
  • Bonilla, S., Aubriot, L., Soares, M.C.S., González-PIana, M., Fabre, A., Huszar, V.L.M., Lürling, M., Antoniades, D., Padisák, J. & Kruk, C. (2012). What drives the distribution of the bloom-forming cyanobacteria Planktothrix agardhii and Cylindrospermopsis raciborskii? FEMS Microbiology Ecology, 79: 594–607.
  • Briand, J., Leboulanger, C., Humbert, J., Bernard, C. & Dufour, P. (2004). Cylindrospermopsis raciborskii (Cyanobacteria) invasion at mid-latitudes: selection, wide physiological tolerance, or global warming? Journal of Phycology, 40: 231–238.
  • Burford, M. & Davis, T. (2011). Physical and chemical processes promoting dominance of the toxic cyanobacterium Cylindrospermopsis raciborskii. Chinese Journal of Oceanology and Limnology, 29: 883–891.
  • Burford, M.A. & O’Donohue, M.J. (2006). A comparison of phytoplankton community assemblages in artificially and naturally mixed subtropical water reservoirs. Freshwater Biology, 51: 973–982.
  • Catherine, A., Quiblier, C., Yéprémian, C., Got, P., Groleau, A., Vinçon-Leite, B., Bernard, C. & Troussellier, M. (2008). Collapse of a Planktothrix agardhii perennial bloom and microcystin dynamics in response to reduced phosphate concentrations in a temperate lake. FEMS Microbiology Ecology, 65: 61–73.
  • Chonudomkul, D., Yongmanitchai, W., Theeragool, G., Kawachi, M., Kasai, F., Kaya, K. & Watanabe, M.M. (2004). Morphology, genetic diversity, temperature tolerance and toxicity of Cylindrospermopsis raciborskii (Nostocales, Cyanobacteria) strains from Thailand and Japan. FEMS Microbiology Ecology, 48: 345–355.
  • Chorus, I. & Bartram, J. (1999). Toxic Cyanobacteria in Water. A Guide to their Public Health Consequences, Monitoring and Management. Chapman & Hall, London.
  • Dignum, M., Matthijs, H.C.P., Pel, R., Laanbroek, H.J. & Mur, L.R. (2005). Nutrient limitation of freshwater Cyanobacteria. In Harmful Cyanobacteria (Huisman, J., Matthijs, H. & Visser, P., editors), 65–86. Springer, Dordrecht.
  • Falkner, R., Priewasser, M. & Falkner, G. (2006). Information processing by cyanobacteria during adaptation to environmental phosphate fluctuations. Plant Signaling and Behavior, 1: 212–220.
  • Guillard, R.R.L. (1978). Counting slides. In Phytoplankton Manual (Sournia, A., editor), 182–190. Unesco, Paris.
  • Hamilton, P.B., Ley, L.M., Dean, S. & Pick, F.R. (2005). The occurrence of the cyanobacterium Cylindrospermopsis raciborskii in Constance Lake: an exotic cyanoprokaryote new to Canada. Phycologia, 44: 17–25.
  • Hillebrand, H., Dürselen, C., Kirschtel, D., Zohary, T. & Pollingher, U. (1999). Biovolume calculation for pelagic and benthic microalgae. Journal of Phycology, 35: 403–424.
  • Istvánovics, V., Shafik, H.M., Présing, M. & Juhos, S. (2000). Growth and phosphate uptake kinetics of the cyanobacterium Cylindrospermopsis raciborskii (Cyanophyceae) in throughflow cultures. Freshwater Biology, 43: 257–275.
  • Kokociński, M. & Soininen, J. (2012). Environmental factors related to the occurrence of Cylindrospermopsis raciborskii (Nostocales, Cyanophyta) at the north-eastern limit of its geographical range. European Journal of Phycology, 47: 12–21.
  • Kokociński, M., Stefaniak, K., Mankiewicz-Boczek, J., Izydorczyk, K. & Soininen, J. (2010). The ecology of the invasive cyanobacterium Cylindrospermopsis raciborskii (Nostocales, Cyanophyta) in two hypereutrophic lakes dominated by Planktothrix agardhii (Oscillatoriales, Cyanophyta). European Journal of Phycology, 45: 365–374.
  • Leroi, A.M., Bennett, A.F. & Lenski, R.E. (1994). Temperature acclimation and competitive fitness: an experimental test of the beneficial acclimation assumption. Proceedings of the National Academy of Sciences USA, 91: 1917–1921.
  • Lürling, M., Eshetu, F., Faassen, E.J., Kosten, S. & Huszar, V.L.M. (2012). Comparison of cyanobacterial and green algal growth rates at different temperatures. Freshwater Biology, 58: 552–559.
  • Mehnert, G., Leunert, F., Cirés, S., Jöhnk, K.D., Rücker, J., Nixdorf, B. & Wiedner, C. (2010). Competitiveness of invasive and native cyanobacteria from temperate freshwaters under various light and temperature conditions. Journal of Plankton Research, 32: 1009–1021.
  • Monod, J. (1950). La technique de culture continue: theorie et applications. Annales Institut Pasteur Lille, 79: 390–410.
  • Moustaka-Gouni, M., Kormas, K.A., Vardaka, E., Katsiapi, M. & Gkelis, S. (2009). Raphidiopsis mediterranea Skuja represents non-heterocytous life-cycle stages of Cylindrospermopsis raciborskii (Woloszynska) Seenayya et Subba Raju in Lake Kastoria (Greece), its type locality: evidence by morphological and phylogenetic analysis. Harmful Algae, 8: 864–872.
  • Muhid, P., Davis, T.W., Bunn, S.E. & Burford, M.A. (2013). Effects of inorganic nutrients in recycled water on freshwater phytoplankton biomass and composition. Water Research, 47: 384–394.
  • Murphy, J. & Riley, J.P. (1962). A modified single solution method for the determination of phosphate in natural waters. Analytical Chemical Acta, 27: 31–36.
  • Padisák, J. (1997). Cylindrospermopsis raciborskii (Woloszyska) Seenayya et Subba Raju, an expanding, highly adaptive cyanobacterium: worldwide distribution and review of its ecology. Archiv für Hydrobiologie, Supplement, 107: 563–593.
  • Piccini, C., Aubriot, L., Fabre, A., Amaral, V., González-Piana, M., Giani, A., Figueredo, C.C., Vidal, L., Kruk, C. & Bonilla, S. (2011). Genetic and eco-physiological differences of South American Cylindrospermopsis raciborskii isolates support the hypothesis of multiple ecotypes. Harmful Algae, 10: 644–653.
  • Piccini, C., Aubriot, L., D´aLessandro, B., Martigani, F. & Bonilla, S. (2013). Revealing toxin signatures in cyanobacteria: report of genes involved in cylindrospermopsin synthesis from saxitoxin-producing Cylindrospermopsis raciborskii. Advances in Microbiology, 3: 289–296.
  • Pitt, F.D., Mazard, S., Humphreys, L. & Scanlan, D.J. (2010). Functional characterization of Synechocystis sp. strain PCC 6803 pst1 and pst2 gene clusters reveals a novel strategy for phosphate uptake in a freshwater cyanobacterium. Journal of Bacteriology, 192: 3512–3523.
  • Posselt, A.J., Burford, M.A. & Shaw, G. (2009). Pulses of phosphate promote dominance of the toxic cyanophyte Cylindrospermopsis raciborskii in a subtropical water reservoir. Journal of Phycology, 45: 540–546.
  • Reynolds, C.S. (1997). Vegetation Process in the Pelagic: A Model for Ecosystem Theory. Ecology Institute, Oldendorf, Germany.
  • Saker, M.L. & Neilan, B.A. (2001). Varied diazotrophies, morphologies, and toxicities of genetically similar isolates of Cylindrospermopsis raciborskii (Nostocales, Cyanophyceae) from northern Australia. Applied and Environmental Microbiology, 67: 1839–1845.
  • Schindler, D. (1977). Evolution of phosphorus limitation in lakes. Science, 195: 260–262.
  • Schwarz, R. & Forchhammer, K. (2005). Acclimation of unicellular cyanobacteria to macronutrient deficiency: emergence of a complex network of cellular responses. Microbiology, 151: 2503–2514.
  • Shafik, H.M., Vörös, L., Sprőber, P., Présing, M. & Kovács, A.W. (2003). Some special morphological features of Cylindrospermopsis raciborskii in batch and continuous cultures. Hydrobiologia, 506–509: 163–167.
  • Soares, M.C.S., Lürling, M. & Huszar, V.L.M. (2013). Growth and temperature-related phenotypic plasticity in the cyanobacterium Cylindrospermopsis raciborskii. Phycological Research, 61: 61–67.
  • Stanier, R., Kunisawa, R., Mandel, M. & Cohen-BAzire, G. (1971). Purification and properties of unicellular blue-green algae (order Chroococcales). Bacteriological Reviews, 35: 171–205.
  • Stomp, M., Van Dijk, M.A., Van Overzee, H.M.J., Wortel, M.T., Sigon, C.A.M., Egas, M., Hoogveld, H., Gons, H.J. & Huisman, J. (2008). The timescale of phenotypic plasticity and its impact on competition in fluctuating environments. American Naturalist, 172: E169–E185.
  • Stüken, A., Rücker, J., Endrulat, T., Preussel, K., Hemm, M., Nixdorf, B., Karsten, U. & Wiedner, C. (2006). Distribution of three alien cyanobacterial species (Nostocales) in northeast Germany: Cylindrospermopsis raciborskii, Anabaena bergii and Aphanizomenon aphanizomenoides. Phycologia, 45: 696–703.
  • Vidal, L. & Kruk, C. (2008). Cylindrospermopsis raciborskii (Cyanobacteria) extends its distribution to latitude 34°53′S: taxonomical and ecological features in Uruguayan eutrophic lakes. Pan-American Journal of Aquatic Sciences, 3: 142–151.
  • Wagner, F., Falkner, R. & Falkner, G. (1995). Information about previous phosphate fluctuations is stored via an adaptive response of the high-affinity phosphate uptake system of the cyanobacterium Anacystis nidulans. Planta, 197: 147–155.
  • Walters, R.G. (2005). Towards an understanding of photosynthetic acclimation. Journal of Experimental Botany, 56: 435–447.
  • Wu, Z., Shi, J. & Li, R. (2009). Comparative studies on photosynthesis and phosphate metabolism of Cylindrospermopsis raciborskii with Microcystis aeruginosa and Aphanizomenon flos-aquae. Harmful Algae, 8: 910–915.
  • Wu, Z., Zeng, B., Li, R. & Song, L. (2012). Physiological regulation of Cylindrospermopsis raciborskii (Nostocales, Cyanobacteria) in response to inorganic phosphorus limitation. Harmful Algae, 15: 53–58.

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