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Diversity in Anthropogenic Environment – Permanent Puddle as a Place for Development of Diatoms

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Specific conditions in urban areas favour large species richness, these are also places prone to the anthropogenic pressure. As a result, many studies on aquatic habitats in urban ecosystems have been carried out. The aim of this study was to investigate the diversity of diatom assemblages developing in artificial environment in relation to water chemical parameters. The study was performed on a small water outflow in south-eastern Poland, which started in the storm sewage. The water at the studied sites was characterized by alkaline pH and low content of nutrients. The values of other chemical parameters were highly variable, depending on the research season. A total of 113 taxa were identified in five research seasons; most of them prefer circumneutral and fertile habitats, with a high content of biogens and are tolerant to water pollutions. Aerophytic and terrestrial taxa were observed in the analyzed materials in high diversity.
Rocznik
Strony
165--174
Opis fizyczny
Bibliogr. 26 poz., rys., tab.
Twórcy
  • Department of Agroecology, Faculty of Biology and Agriculture, University of Rzeszów, Ćwiklińskiej 1a, 35-601 Rzeszów, Poland
autor
  • Department of Soil Science, Environmental Chemistry and Hydrology, Faculty of Biology and Agriculture, University of Rzeszów, A. Zelwerowicza 8B, 35-601 Rzeszów, Poland
  • Department of Landscape Architecture, Faculty of Biology and Agriculture, University of Rzeszow, Ćwiklińskiej 1A, 35-601 Rzeszow, Poland
Bibliografia
  • 1. Bahls L.L. 2006. Northwestern Diatoms. A photographic catalogue of species in the Montana Diatom Collection with ecological optima, associates, and distribution records for the nine northwestern United States. Vol. 3, Helena, Montana, Montana Diatom Collection, 481 pp.
  • 2. Hofmann G., Werum M., Lange-Bertalot H. 2011. Diatomeen im Süβwasser – Benthos von Mitteleuropa. Bestimmungsflora Kieselalgen für die ökologische Praxis. Über 700 der häugfisten Arten und ihre Ökologie. [In:] H. Lange-Bertalot, (Ed.): 908 pp. A.R.G. Gantner Verlag K.G., Ruggell.
  • 3. Krammer K. 2000. The genus Pinnularia. [In:] H. Lange-Bertalot (Ed.): Diatoms of Europe. Vol. 1., 703 pp. A.R.G. Gantner Verlag K.G.
  • 4. Krammer K., Lange-Bertalot H. 1986. Bacillariophyceae. 1. Naviculaceae. [In:] H. Ettl, J. Gerloff, H. Heyning, D. Mollenhauer (Eds): Süsswasserflora von Mitteleuropa 2(1), G. Fischer Verlag, 14 Stuttgart – New York, 876 pp.
  • 5. Lange-Bertalot H. 2001. Navicula sensu stricto, 10 Genera Separated from Navicula sensu lato, Frustulia. [In:] H. Lange-Bertalot (Ed.): Diatoms of Europe 2. Diatoms of the European inland waters and comparable habitats. A.R.G. Gartner Verlag. K.G., Vaduz, 526 pp.
  • 6. Lange-Bertalot H., Hofmann G., Werum M., Cantonati M. 2017. Freshwater benthic diatoms of Central Europe: over 800 common species used in ecological assessments. English edition with updated taxonomy and added species. [In:] M. Cantonati et al. (Eds): Koeltz Botanical Books, SchmittenOberreifenberg, 942 pp.
  • 7. Levkov Z., Metzeltin D., Pavlov A. 2013. Luticola and Luticolopsis. [In:] H. Lange-Bertalot (Ed.): Diatoms of Europe 7. Diatoms of the European inland waters and comparable habitats. Koeltz Scientific Books, Königstein, 698 pp.
  • 8. Levkov Z., Tofilovska S., Wetzel C.E., MitićKopanja D., Ector L. 2017. Diversity of Luticola D.G. Mann (Bacillariophyceae) species on halomorphic soils from Gladno Pole, Central Macedonia. Nova Hedwigia, Beiheft, 146, 175–196.
  • 9. Niemelä J. 1999. Is there a need for a theory of urban ecology? Urban Ecosystem, 3, 57–65.
  • 10. Noga T., Stanek-Tarkowska, Pajączek A., Peszek Ł., Kochman N. 2013a. Ecological characterization of diatom communities in the Wisłok river with application of their indicatory role to the evaluation of water quality. Journal of Ecological Engineering, 14(4), 18–27.
  • 11. Noga T., Stanek-Tarkowska J., Peszek Ł., Pajączek A., Kowalska S. 2013b. Use of diatoms to assess water quality of anthropogenically modified Matysówka stream. Journal of Ecological Engineering, 14(2), 1–11.
  • 12. Noga T., Stanek-Tarkowska J., Kochman-Kędziora N., Pajączek A., Peszek Ł. 2016a. The inside of a dam as an unusual habitat for two rare species of Gomphosphenia – G. fontinalis and G. holmquistii. Diatom Research, 31(4), 379–387.
  • 13. Noga T., Stanek-Tarkowska J., Peszek Ł., Pajączek A., Kochman-Kędziora N., Ligęzka R. 2016b. The use of diatoms to assess the water quality of the Wisłoka River in the Dębica City and surrounding area. Oceanological and Hydrobiological Studies, 45(2), 191–201.
  • 14. Noga T., Stanek-Tarkowska J., Kloc U., Kochman-Kędziora N., Rybak M., Peszek Ł., Pajączek A. 2016c. Diatom diversity and water quality of a suburban stream: a case study of the Rzeszów city in SE Poland. Biodiversity Research and Conservation, 41, 19–34.
  • 15. Noga T., Rybak M., Ector L. 2017. Description of Stauroneis saprophila sp. nov. (Bacillariophyta), a new diatom species from anthropogenic environment. Phytotaxa, 327(3), 269–275.
  • 16. Norbäck Ivarsson L., Ivarsson M., Lundberg J., Sallstedt T., Rydin C. 2013. Epilithic and aerophilic diatoms in the artificial environment of Kungsträdgården metro station, Stockholm, Sweden. International Journal of Speleology, 42(3), 289–297.
  • 17. Obolewski K. 2010. Use of macroinvertebrates as bioindicators for the assessment of surface water quality in urban areas: a case study. Ochrona Środowiska, 32(2), 35–42. (in Polish).
  • 18. Pajączek A., Musiałek M., Pelczar J., Noga T. 2012. Diversity of diatoms in the Mleczka River, Morwawa River and Różanka Stream (tributaries of the Wisłok River, SE Poland), with particular reference to threatened species. [In:] K. Wołowski et al. (Eds): Phycological Reports: Current advances in algal taxonomy and its applications: phylogenetic, ecological and applied perspective. Institute of Botany Polish Academy of Sciences, Krakow, pp. 129–152.
  • 19. Rybak M., Noga T., Zubel R. 2018. The aerophytic diatom assemblages developed on mosses covering the bark of Populus alba L. J. Ecol. Eng., 19(6), 113–123.
  • 20. Siemińska J., Bąk M., Dziedzic J., Gąbka M., Gregorowicz P., Mrozińska T., Pełechaty M., Owsiany P.M., Pliński M., Witkowski A. 2006. Red list of the algae in Poland – Czerwona lista glonów w Polsce. [In:] Z. Mirek et al. (Eds): Red list of plants and fungi in Poland – Czerwona lista roślin i grzybów Polski. Polish Academy of Sciences, Kraków, pp. 35–52. (in Polish).
  • 21. Stanek-Tarkowska J, Noga T, Pajączek A, Peszek Ł. 2013. The occurrence of Sellaphora nana (Hust.) Lange-Bert. Cavacini, Tagliaventi & Alfinito, Stauroneis borrichii (J.B. Petersen) J.W.G. Lund, S. parathermicola Lange-Bert. and S. thermicola (J.B. Petersen) J.W.G. Lund on agricultural soils. Algological Studies, 142, 109–120.
  • 22. Sukopp H. 2002. On the early history of urban ecology in Europe. Preslia, 74, 373–393.
  • 23. Van Dam H., Martens 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.
  • 24. Walsh C.J., Roy A.H., Feminella J.W., Cottingham P.D., Groffman P.M., Morgan II R.P., 2005. The urban stream syndrome: current knowledge and the search for a cure. J. North Am. Benthol. Soc., 24, 706–723.
  • 25. Zimny H. 2006. Ecological evaluation of the state of the environment. Bioindication and biomonitoring. [Ekologiczna ocena stanu środowiska. Bioindykacja i biomonitoring], ARW A. Gregorczyk, Warszawa, 264 pp. (in Polish).
  • 26. Żelazna-Wieczorek J. 2011. Diatom flora in springs of Łódź Hills (Central Poland). Biodiversity, taxonomy and temporal changes of epipsammic diatom assemblages in springs affected by human impact. Diatom Monographs, 13, 1–420.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d514a53f-3f07-4731-bf54-c7453146ece1
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