PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników

Czasopismo

2014 | 18 | 4 |

Tytuł artykułu

Phytoplankton succession in an artificial, periodically drained small water body

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
This study was undertaken to monitor the course of a secondary succession of phytoplankton in temporary water bodies, based on a man-made periodically drained pond. Results of phycological analyses showed, that small Chlorophyceae from the order Chlorococcales predominated qualitatively throughout the study period. Chlorophyceae, e.g. stress-resistant Haematococcus pluvialis, developed best as the first algae (after the pond was re-filled). In the next stages of diatom succession (Ulnaria ulna) predominated quantitatively, followed by the longest period of Cyanobacteria (Aphanothece elabens) predominance, replaced again by Chlorophyceae (Tetraëdron minimum and Oocystis lacustris). Total abundance of algae, similarly as that of Cyanobacteria, were positively correlated with temperature and pH of water.

Wydawca

-

Czasopismo

Rocznik

Tom

18

Numer

4

Opis fizyczny

p.191-197,fig.,ref.

Twórcy

  • Department of Botany, Poznan University of Life Sciences, Wojska Polskiego 71C, 60-625 Poznan, Poland
autor
  • Department of Botany, Poznan University of Life Sciences, Wojska Polskiego 71C, 60-625 Poznan, Poland

Bibliografia

  • Antón-Garrido B., Romo S., Villena M.J. (2013): Diatom species composition and indices for determining the ecological status of coastal Mediterranean Spanish lakes. Anales del Jardin Botánico de Madrid 70 (2): 122–135.
  • Blanco S., Álvarez-Blanco I., Cejudo-Figuerias C., Recio Espejo J.M., Borja Barrera C., Becares E., Diaz del Olmo F., Cámara Artigas R. (2013): The diatom flora in temporary ponds of Doňana National Park (southwest Spain): five new taxa. Nordic Journal of Botany 31: 489–499.
  • Catalan J., Camarero L., Felip M., Pla S., Ventura M., Buchaca T., Bartumeus F., De Mendoza G., Miró A., Casamayor E.O. (2006): High mountain lakes: extreme habitats and witnesses of environmental changes. Limnetica 25 (1–2): 551–584.
  • van Dam H., Mertens A., Sinkeldam J. (1994): A coded checklist and ecological indicator values of freshwater diatoms from the Netherlands. Netherlands Journal of Aquatic Ecology 28 (1): 117–133.
  • Dominguez-Bocanegra A.R., Legarreta I.G., Jeronimo F.M., Campocosio A.T. (2004): Influence of environmental ronmental and nutritional factors in the production of astaxanthin from Haematococcus pluvialis. Bioresource Technology 92: 209–214.
  • Falkowski M., Nowicka-Falkowska K. (2006 a): Szata roślinna stawów rybnych Niziny Południowopodlaskiej. Cz. 2. Związek Potamion [Vegetation cover in fish ponds in the Southern Podlasie Lowland. Part 2. The Potamion alliance]. Fragmenta Floristica et Geobotanica Polonica 13 (1): 95–112.
  • Falkowski M., Nowicka-Falkowska K. (2006 b): Szata roślinna stawów rybnych Niziny Południowopodlaskiej. Cz. 3. Związek Nymphaeion [Vegetation cover in fish ponds in the Southern Podlasie Lowland. Part 2. The Nymphaeion alliance]. Fragmenta Floristica et Geobotanica Polonica 13(2): 351–360.
  • Hindák F. (1984): Studies on the Chlorococcal Algae (Chlorophyceae) III. VEDA Publishing House of the Slovak Academy of Sciences, Bratislava.
  • Hindák F. (1988 a): Studies on the Chlorococcal Algae (Chlorophyceae) IV. VEDA Publishing House of the Slovak Academy of Sciences, Bratislava.
  • Hindák F. (1988 b): Studies on the Chlorococcal Algae (Chlorophyceae) V. VEDA Publishing House of the Slovak Academy of Sciences, Bratislava.
  • Kawecka B., Eloranta P.V. (1994): Zarys ekologii glonów wód słodkich i środowisk lądowych. Wyd. Nauk. PWN, Warszawa.
  • Klochkova T.A., Kwak M.S., Han J.W., Motomura T., Nagasato Ch., Kim G.H. (2013): Cold-tolerant strain of Haematococcus pluvialis (Haematococcaceae, Chlorophyta) from Blomstrandhalvoya (Svalbard). Algae 28 (2): 185–192.
  • Komárek J., Anagnostidis K. (1998): Cyanoprokaryota. 1. Teil: Chroococcales. Süsswasserflora von Mitteleuropa 19/1. Fischer Verlag, Stuttgart.
  • Komárek J., Anagnostidis K. (2005): Cyanoprokaryota. 2. Teil: Oscillatoriales. Süsswasserflora von Mitteleuropa 19/2. Elsevier GmbH, Spektrum Akademischer Verlag, Heidelberg.
  • Kosten S., Jeppesen E., Huszar V.L.M., Mazzeo N., van Nes E.H., Peeters E.T.H.M., Scheffer M. (2011): Ambiguous climate impacts on competition between submerged macrophytes and phytoplankton in shallow lakes. Freshwater Biology 56: 1540–1553.
  • Krammer K., Lange-Bertalot H. (1986): Bacillariophyceae. Süsswasserflora von Mitteleuropa. T. 2/1. VEB Gustav Fischer Verlag, Jena.
  • Krammer K., Lange-Bertalot H. (1988): Bacillariophyceae. Süsswasserflora von Mitteleuropa. T. 2/2. VEB Gustav Fischer Verlag, Jena.
  • Krammer K., Lange-Bertalot H. (1991 a): Bacillariophyceae. Süsswasserflora von Mitteleuropa. T. 2/3. VEB Gustav Fischer Verlag, Jena.
  • Krammer K., Lange-Bertalot H. (1991 b): Bacillariophyceae. Süsswasserflora von Mitteleuropa. T. 2/4. VEB Gustav Fischer Verlag, Jena.
  • Lee R.E. (1999): Phycology. Cambridge University Press, Cambridge.
  • Lűrling M., Eshetu F., Faassen E.J., Kosten S., Huszar V.L.M. (2013): Comparison of cyanobacterial and green algae growth rates at different temperatures. Freshwater Biology 58: 552–559.
  • Maraşlioglu F., Soylu E.N., Gönülol A. (2011): Chlorococcal chlorophyte composition, community structure, and seasonal variations in the shallow lakes of the Kizilirmak Delta, Turkey. Turkish Journal of Botany 35: 117–124.
  • Marrone F., Barone R., Naselli-Flores L. (2006): Ecological characterization and cladocerans, calanoid copepods and large branchiopods of temporary ponds in a Mediterranean island (Sicily, Southern Italy). Chemistry and Ecology 22, Suppl. 1: 181–190.
  • Michaloudi E., Moustaka-Gouni M., Pantelidakis K., Katsiapi M., Genitsaris S. (2012): Plankton succession in the temporary lake Koronia after intermittent dry-out. International Rewiev of Hydrobiology 97 (5): 405–419.
  • Mutshinda C.M., Troccoli-Ghinaglia L., Finkel Z.V., Müller-Karger F.E., Irwin A.J. (2013): Environmental control of the dominant phytoplankton in the Cariaco basin: a hierarchical Bayesian approach. Marine Biology Research 9: 247–261.
  • Naselli-Flores L., Barone R. (2012): Phytoplankton dynamics in permanent and temporary Mediterranean waters: is the game hard to play because of hydrological disturbance? Hydrobiologia 698: 147–159.
  • Nowrouzi S., Valavi H. (2011): Effects of environmental factors on phytoplankton abundance and diversity in Kaftar Lake. Journal of Fisheries and Aquatic Sciences 6 (2): 130–140.
  • Pęczuła W., Szczurowska A., Poniewozik M. (2014): Phytoplankton community in early stages of reservoir development – a case study from the newly formed, colored, and episodic lake of miningsubsidence genesis. Polish Journal of Environmental Studies 23 (2): 585–591.
  • Popovský J., Pfiester L.A. (1990): Dinophyceae (Dinoflagellida). Süsswasserflora von Mitteleuropa. T. 6. VEB Gustav Fischer Verlag. Heidelberg, Berlin.
  • Reynolds C.S. (1984): The ecology of freshwater phytoplankton. Cambridge University Press, Cambridge.
  • Reynolds C.S. (1996): The plant life of the pelagic. Verhandlungen des Internationalen Verein Limnologie 26: 97–113.
  • Reynolds C.S., Huszar V., Kruk C., Naseli-Flores L., Melo S. (2002): Towards a functional classification of the freshwater phytoplankton. Journal of Plankton Research 24, 5: 417–428.
  • Sarada R., Tripathi U., Ravishankar G.A. (2002): Influence of stress on astaxanthin production in Haematococcus pluvialis grown under different culture conditions. Process Biochemistry 37: 623–27.
  • Sipaúba-Tavares L.H., Donadon A.R.V., Milan R.N. (2011): Water quality and plankton populations in an earthen polyculture pond. Brazilian Journal of Biology 71: 845–855.
  • Starmach K. (1966): Cyanophyta – Sinice, Glaucophyta – Glaukofity. Flora słodkowodna Polski. Vol. 2. PWN, Warszawa.
  • Starmach K. (1968): Chrysophyta 1. Chrysophyceae–Złotowiciowce oraz wiciowce bezbarwne – zooflagellata wolnożyjące. Flora słodkowodna Polski. Vol. 5. PWN, Warszawa.
  • Starmach K. (1974): Cryptophyceae, Dinophyceae, Raphidiophyceae. Flora słodkowodna Polski. Vol. 4. PWN, Warszawa–Kraków.
  • Starmach K. (1989): Plankton roślinny wód słodkich. Metody badania i klucze do oznaczania gatunków występujących w wodach Europy Środkowej. PWN, Warszawa–Kraków.
  • Statisticafor windows (Computer program manual 6.0 PL). (2002). StatSoft Inc., Tulsa.
  • Tavernini S., Nizzoli D., Rossetti G., Viaroli S. (2009): Trophic state and seasonal dynamics of phytoplankton communities in two sand-pit lakes at different successional stages. Journal of Limnology 68 (2): 217–228.
  • Trobajo R., Clavero E., Chepurnov V.A., Sabbe K., Mann D.G., Ishihara S., Cox E.J. (2009): Morphological, genetic and mating diversity within the widespread bioindicator Nitzschia palea (Bacillariophyceae). Phycologia 48: 443–459.
  • Waterkeyn A., Grillas P., Vanschoenwinkel B., Brendonck L. (2008): Invertebrate community patterns in Mediterranean temporary wetlands along hydroperiod and salinity gradients. Freshwater Biology 53 (9): 1808–1822.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-1002428d-2d46-436b-a613-e4743fc6ac65
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.