Czasopismo
2015
|
Vol. 44, No. 3
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393--409
Tytuł artykułu
Autorzy
Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
Abstrakty
The macroalgae representing the cosmopolitan Ulva flexuosa Wulfen species have been found in inland water ecosystems of Europe since the mid-1800s. The presence of the Ulva genus in waters of inland salt marshes was explained by high salinity of water in such systems. However, Ulva flexuosa thalli were found in lakes and rivers having no supply from strongly mineralized sources, either of natural or anthropogenic origin. The study focused only on populations of Ulva flexuosa subsp. pilifera (Kűtz.) M.J. Wynne and Ulva flexuosa subsp. paradoxa (C. Agardh) M.J. Wynne occurring in inland ecosystems isolated from seawater. The differentiation of inland U. flexuosa subsp. pilifera and subspecies paradoxa was assessed by using classical morphological data and molecular techniques. We found that only two subspecies of Ulva flexuosa Wulfen occur in inland water ecosystems of Poland. On the basis of the analysis combining morphological features with the ITS region and rbcL gene sequences, a small degree of differentiation of the two inland taxa was demonstrated. These two subspecies have high differentiation of the habitat niches. U. flexuosa subsp. paradoxa settled in habitats featuring high salinity levels, and the second subspecies pilifera occurred only in fresh waters.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
393--409
Opis fizyczny
Bibliogr. 74 poz., rys., tab., wykr.
Twórcy
autor
- Department of Hydrobiology, Adam Mickiewicz University in Poznań, ul. Wieniawskiego 1, 61- 712 Poznań, rybakandrzej@interia.eu
autor
- VitaInSilica Sp. z o. o., ul. Krzemowa 1, Złotniki, 62-002 Suchy Las, Poland
Bibliografia
- [1]. Adams, N. M. (1994). Seaweeds of New Zealand. An Illustrated Guide. Christchurch, New Zealand: Canterbury University Press.
- [2]. Alström-Rapaport, C. & Leskinen, E. (2002). Development of microsatellite markers in the green algae Enteromorpha intestinalis (Chlorophyta). Mol. Ecol. 2(4): 581-583. DOI: 10.1046/j.1471-8286.2002.00325.x.
- [3]. Alström-Rapaport, C., Leskinen, E. & Pamilo, P. (2010). Seasonal variation in the mode of reproduction of Ulva intestinalis in a brackish water environment. Aquat. Bot. 93(4): 244-249. D0I:10.1016/j.aquabot.2010.08.003.
- [4]. APHA (1998). Standard Methods for the Examination of Water and Waste Water, 20th Edition. Washington DC: American Public Health Association.
- [5]. Blomster, J., Hoey, E. M., Maggs C. A. & Stanhope M. J. (2000). Species-specific oligonucleotide probes for macroalgae: molecular discrimination of two marine fouling species of Enteromorpha (Ulvophyceae). Mol. Ecol. 9: 177-186. DOI: 10.1046/j.1365-294x.2000.00850.x.
- [6]. Blomster, J., Maggs, C. A. & Stanhope M. J. (1998). Molecular and morphological analysis of Enteromorpha intestinalis and E. compressa (Chlorophyta) in the British Isles. J. Phycol. 34: 319-340. DOI: 10.1046/j.1529-8817.1998.340319.x.
- [7]. Blomster, J., Maggs, C. A. & Stanhope M. J. (1999). Extensive intraspecific morphological variation in Enteromorpha muscoides (Chlorophyta) revealed by molecular analysis. J. Phycol. 35: 575-586. DOI: 10.1046/j. 1529- 8817.1999.3530575.x.
- [8]. Bonsdorff, E., Blomqvist, E. M., Mattila, J. & Norkko A. (1997). Coastal eutrophication: cause, consequences and perspectives in the archipelago areas of the northern Baltic Sea. Estuar. Coast. Shelf. S. 44: 63-72. DOI: 10.1016/S0272- 7714(97)80008-x.
- [9]. Catling, P. M, & McKay S. M. (1980). Halophytic Plants in Southern Ontario. Can. Field. Nat. 94(3): 248-258.
- [10]. Chapman, V. J. (1959). The Marine Algae of New Zealand. Part I. Myxophyceae and Chlorophyceae. The Journal of the Linnean Society of London, Botany LV(360).
- [11]. Conner, D., Huddleston, D. J., Pfiester, L. A. & Thompson S. (1978). A third species of Enteromorpha (a marine chlorophycean) for Oklahoma. Proc. Okla. Acad. Sci. 58: 110.
- [12]. Doyle, J. J. & Dickson E. E. (1987). Preservation of plant samples for DNA restriction endonuclease analysis. Taxon. 36: 715-722.
- [13]. Edgar, R. C. (2004). MUSCLE: multiple sequence alignment with high accuracy and high throughput. Nucleic. Acids. Res. 32: 1792-7. DOI: 0.1093/nar/gkh340.
- [14]. Guiry, M. D. & Guiry G. M. (2014, May). AlgaeBase. World-wide electronic publication, National University of Ireland, Galway. Retrieved 27 May 2014 from http://www.algaebase. org.
- [15]. Gupta V., Kumari P. & Reddy C. (2015). Development and Characterization of Somatic Hybrids of Ulva reticulata Forsskal (x) Monostroma oxyspermum (Kütz.) Doty. Front. Plant. Sci. 6(3): 1-15. DOI: 10.3389/fpls.2015.00003.
- [16]. Hall, T. (2007, May). BioEdit. Biological sequence alignment editor for Win95/98/NT/2K/XP. Carlsbad, CA: Ibis Biosciences. Retrieved 28 May 2014 from http://www.mbio. ncsu.edu/BioEdit/bioedit.html.
- [17]. Hayden, H. S. & Waaland J. R. (2002). Phylogenetic systematics of the Ulvaceae (Ulvales, Ulvophyceae) using chloroplast and nuclear sequences. J. Phycol. 8: 1200-1212. DOI: 10.1046/j.1529-8817.2002.01167.x.
- [18]. Hayden, H. S., Blomster. J., Maggs, C. A., Silva, P. C., Stanhope, M. J. & Waaland J. R. (2003). Linnaeus was right all along: Ulva and Enteromorpha are not distinct genera. Eur. J. Phycol. 38: 277-294. DOI: 10.1080/1364253031000136321.
- [19]. Ichihara, K., Arai, S. & Shimada S. (2009a). cDNA cloning of a lectin-like gene preferentially expressed in freshwater from the macroalga Ulva limnetica (Ulvales, Chlorophyta). Phycol. Res. 57(2): 104-110. DOI: 10.1111/j.1529-8817.2011.01001.x.
- [20]. Ichihara, K., Arai, S., Uchimura, M., Fay, E. J., Ebata, H., Hiraoka, M. & Shimada S. (2009b). New species of freshwater Ulva, Ulva limnetica (Ulvales, Ulvophyceae) from the Ryukyu Islands, Japan. Phycol. Res. 57: 94-103. DOI: 10.1111/j.1440- 1835.2009.00525.x.
- [21]. Ichihara, K., Mineur, F. & Shimada S. (2011). Isolation and temporal expression analysis of freshwater-induced genes in Ulva limnetica (Ulvales, Chlorophyta). J. Phycol. 47(3): 584-590. DOI: 10.1111/j.1529-8817.2011.01001.x.
- [22]. Ichihara, K., Miyaji, K. & Shimada S. (2013). Comparing the low-salinity tolerance of Ulva species distributed in different environments. Phycol. Res. 61(1): 52-57. DOI: 10.1111/j.1440-1835.2012.00668.x.
- [23]. Jimenez del Rio, M., Ramazanov, Z. & Garcia-Reina G. (1996). Ulva rigida (Ulvales, Chlorophyta) tank culture as biofilters for dissolved inorganic nitrogen from fishpond effluents. Hydrobiologia. 326/327: 61-66.
- [24]. Kagami, Y., Arai, T., Mogi, Y., Kuwano, K. & Kawano S. (2008). Isolation and characterization of microsatellites in the green alga Ulva compressa (Chlorophyta). Cytologia. 73(4): 387¬392. DOI: 10.1508/cytologia.73.387.
- [25]. Kawai, H., Shimada, S., Hanyuda, T., Suzuki, T. & Gamagori City Office (2007). Species diversity and seasonal changes of dominant Ulva species in Mikawa Bay deduced from rDNA ITS region sequences. Algae. 22: 221-8.
- [26]. Kimura, M. (1980). A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences. J. Mol. Evol. 16(2): 111-120.
- [27]. Koeman, R. P. T. & van den Hoek C. (1982a). The taxonomy of Enteromorpha Link, 1820, (Chlorophyceae) in The Netherlands I. The section Proliferae. Cryptogamie, Algologie. 3: 37-70.
- [28]. Koeman, R. P. T. & van den Hoek C. (1982b) The taxonomy of Enteromorpha Link, 1820, (Chlorophyceae) in The Netherlands I. The section Enteromorpha. Arch. Hydrobiol. 32: 279-330.
- [29]. Kostamo, K., Blomster, J, Korpelainen, H., Kelly, J., Maggs C. A. & Mineur F. (2008). New microsatellite markers for Ulva intestinalis (Chlorophyta) and the transferability of markers across species of Ulvaceae. Phycologia. 47(6): 580-587. DOI: 10.2216/08-16.1.
- [30]. Kraft, L. G. K., Kraft, G. T. & Waller, R. F. (2010). Investigations into southern Australian Ulva (Ulvophyceae, Chlorophyta) taxonomy and molecular phylogeny indicate both cosmopolitanism and endemic cryptic species. J. Phycol. 46: 1257-77. DOI: 10.1111/j.1529-8817.2010.00909.x.
- [31]. Leonardi, P. & Caceres E. J. (1988). Contribucion al conocimiento del ciclo biologico de Enteromorpha flexuosa subsp. pilifera (Chlorophyceae). Physis. 46(110): 29-39.
- [32]. Leskinen, E. & Pamilo P. (1997). Evolution of the ITS sequences of ribosomal DNA in Enteromorpha (Chlorophyceae). Hereditas. 126: 17-23.
- [33]. Littler, M. M. & Littler D. S. (1980). The evolution of thallus form and survival strategies in benthic marine macroalgae: field and laboratory tests of a functional form model. Amer. Nat. 116: 25-44.
- [34]. Lougheed, V. L. & Stevenson R. J. (2004). Exotic marine macroalaga (Enteromorpha flexuosa) reaches bloom proportions in a coastal lake of Lake Michigan. J. Great. Lakes Res. 30: 538-544. D0I:10.1016/S0380-1330(04)70369-x.
- [35]. Mares, J. (2009). Combined morphological and molecular approach to the assessment of Ulva (Chlorophyta, Ulvophyceae) in the Czech Republic. Master thesis. University of South Bohemia, Ćeske Budejovice.
- [36]. Mares, J., Leskinen, E., Sitkowska, M., Skacelova O. & Blomster J. (2011). True identity of the European freshwater Ulva (Chlorophyta, Ulvophyceae) revealed by a combined molecular and morphological approach. J. Phycol. 47(5): 1177-1192. DOI: 10.1111/j.1529-8817.2011.01048.x.
- [37]. McAvoy, K. M. & Klug J. L. (2005). Positive and negative effects of riverine imput on the estuarine green alga Ulva intestinalis (syn. Enteromorpha intestinalis) (Linneus). Hydrobiologia. 545: 1-9. DOI: 10.1007/s10750-005-1923-5.
- [38]. Messyasz, B. & Rybak A. (2009). The distribution of green algae species from the Ulva genera (syn. Enteromorpha; Chlorophyta) in Polish inland waters. Oceanol. Hydrobiol. St. 38(1): 121-138. DOI: 10.2478/v10009-009-0001-0.
- [39]. Messyasz, B. & Rybak A. (2011). Abiotic factors affecting the development of Ulva sp. (Ulvophyceae; Chlorophyta) in freshwater ecosystems. Aquat. Ecol. 45(1): 75-87. DOI 10.1007/s10452-010-9333-9.
- [40]. Messyasz, B., Czerwik-Marcinkowska, J., Massalski, A., Uher, B., Rybak, A., Szendzina, L., Pikosz, M. (2013). Morphological and ultrastructural studies on Ulva flexuosa subsp. pilifera (Chlorophyta) from Poland. Acta. Soc. Bot. Pol. 82(2): 157-163. DOI: 10.5586/asbp.2013.013.
- [41]. Narkko, A. & Bansdorff E. (1996). Rapid zoobenthos community response to accumulations of drifting alga. Mar. Ecol. Prog. Ser. 131:143-157.
- [42]. Nave, J. (1863). Algen Mährens und Schlesiens. Verh. Nat. Ver. Brunn. 2:15-58.
- [43]. Neori, A., Cohen I. & Gordin H. (1991). Ulva lactuca biofilters for marine fishpond effluents. II. Growth rate, yield and C:N ratio. Bot. Mar. 34:483-489. DOI: 10.1515/ botm.1991.34.6.483.
- [44]. Nicholls, D. J., Tubbs C. R. & Haynes F. N. (1981). The effect of green algal mats on intertidal macrobenthic communities and their predators. Kiel Meeresforschung. 5: 511-520.
- [45]. Oertli, H. J. (1964). The Venice System for the classification of marine waters according to salinity. Pubblicazioni della Stazione Zoologica di Napoli. 33: 1-9.
- [46]. Page, R. D. M. (1996). TREEVIEW: An application to display phylogenetic trees on personal computers. Comput. Appl. Biosci. 12: 357-358. DOI: 10.1093/bioinformatics/12.4.357.
- [47]. Pfiester, L. A. & Felker W. O. (1976). Enteromorpha, a marine alga in Oklahoma. Proc. Okla. Acad. Sci. 56: 66.
- [48]. Rabenhorst, L. (1849). Die Algen Sachsens, 2, Arnoldische Buchhandlung. Dresden und Leipzig.
- [49]. Raffaelli, D., Hull S. & Milne H. (1989). Long-term changes in nutrients, weed mats and shorebirds in an estuarine system. Cah. Biol. Mar. 30: 259-270.
- [50]. Reed, R. & Moffat, L. (2003). Copper toxicity and copper tolerance in Enteromorpha compressa (L.) Grev. J. Exp. Mar. Biol. Ecol. 1: 85-103. DOI: 10.1016/0022-0981(83)90173-9.
- [51]. Reed, R. H. & Russell G. (1978). Salinity fluctuations and their influence on „bottle brush“ morphogenesis in Enteromorpha intestinalis (L.) Link. British Phycol. J. 13: 149-153. DOI:10.1080/00071617800650171.
- [52]. Reinke, D. C. (1981). Enteromorpha, a Marine Alga in Kansas. Trans. Kans. Acad. Sci. 84(4): 228-230.
- [53]. Romano, C., Windows, J., Brinsley, M. D. & Staff F. J. (2003). Impact of Enteromorpha intestinalis mats on near-bed currents and sediment dynamics: flume studies. Mar. Ecol. Prog. Ser. 256: 63-74.
- [54]. Ronquist, F. & Huelsenbeck J. P. (2003). MrBayes 3: Bayesian phylogenetic inference under mixed models. Bioinformatics. 19(12): 1572-1574. DOI: 10.1093/bioinformatics/btg180.
- [55]. Rybak, A. & Messyasz B. (2011). Ulva flexuosa subsp. pilifera (Chlorophyta, Ulvophyceae) on the new freshwater locality in Poznań. Chroń. Przyr. Ojcz. 67(2): 182-188.
- [56]. Rybak, A., Messyasz B. & Łęska B. (2012a). Bioaccumulation of alkaline soil metals (Ca, Mg) and heavy metals (Cd, Ni, Pb) patterns expressed by freshwater species of Ulva (Wielkopolska, Poland). Int. Rev. Hydrobiol. 97(6): 542-555. DOI: 10.1002/iroh.201201452.
- [57]. Rybak, A., Messyasz B. & Łęska B. (2012b). Freshwater Ulva (Chlorophyta) as a bioaccumulator of selected heavy metals (Cd, Ni and Pb) and alkaline earth metals (Ca and Mg). Chemosphere. 89(9): 1064-1074. DOI: 10.1016/j. chemosphere.2012.05.071.
- [58]. Rybak, A., Messyasz B. & Łęska B. (2013). The accumulation of metal (Co, Cr, Cu, Mn and Zn) in freshwater Ulva (Chlorophyta) and its habitat. Ecotoxicology. 22(3): 558-573. DOI: 10.1007/s10646-013-1048-y.
- [59]. Rybak. A., & Messyasz B. (2009). Occurrence of macroalgae from the Ulva genera (Ulvaceae; Chlorophyta) in the Wielkopolska region. Bad. Fizj. Pol. Zach. Ser. B. Bot. 58: 127-136.
- [60]. Schroeder, G., Messyasz, B., Łęska, B., Fabrowska, J., Pikosz, M., Rybak, A. (2013) Biomass of freshwater algae as raw material for the industry and agriculture. Chem. Rev. 92(7): 1380¬1384.
- [61]. Sfriso, A., Marcomini A. & Pavoni B. (1987). Relationships between macroalgae biomass and nutrient concentrations in the hypertrophic area of the Venice lagoon. Mar. Environ. Res. 22: 297-312.
- [62]. Shimada, S., Hiraoka, M., Nabata, S., Iima, M. & Masuda M. (2003). Molecular phylogenetic analyses of the Japanese Ulva and Enteromorpha (Ulvales, Ulvophyceae), with special reference to the free-floating Ulva. Phycol. Res. 51: 99-108. DOI: 10.1046/j.1440-1835.2003.00296.x.
- [63]. Sundbäcak, K., Jonsson, B., Nilsson P. & Lindström, I. (1990). Impact of accumulating drifting macroalgae am a shallow- water sediment system: An experimental study. Mar. Ecol. Prog. Ser. 58: 261-274.
- [64]. Swofford, D. L. (2002). PAUP*. Phylogenetic Analysis Using Parsimony (*and Other Methods). Version 4. Sinauer Associates, Sunderland, Massachusetts.
- [65]. Sze, P. (1998). A Biology of the algae. WCB/McGraw-Hill, Boston.
- [66]. Taft, C. E. (1964). The occurrence of Monostoma and Enteromorpha in Ohio. Ohio J. Sci. 64(4): 272-273.
- [67]. Tamura, K., Dudley, J., Nei, M. & Kumar S. (2007). MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) Software Version 4.0. Mol. Biol. Evol. 24(8): 1596-1599. DOI: 10.1093/ molbev/msm092.
- [68]. Tamura, K., Peterson, D., Peterson, N., Stecher, G., Nei M. & Kumar S. (2011). MEGA5: Molecular Evolutionary Genetics Analysis using Maximum Likelihood, Evolutionary Distance, and Maximum Parsimony Methods. Mol. Biol. Evol. 28: 2731-2739. DOI: 10.1093/molbev/msr121.
- [69]. Tan, I. H., Blomster, J., Hansen, G., Leskinen, E., Maggs, C. A., Mann, D. G., Sluiman, H. J. & Stanhope, M. J. (1999). Molecular phylogenetic evidence for a reversible morphogenetic switch controlling the gross morphology of two common genera of green seaweeds, Ulva and Enteromorpha. Mol. Biol. Evol. 16(8): 1011-1018. DOI: 10.1093/oxfordjournals.molbev.a026190.
- [70]. Valiela, I., McClelland, J., Hauxwell, J., Behr, P. J., Hersh D. & Foreman, K. (1997). Macroalgal blooms in coastal estuaries: controls and ecophysiological and ecosystem consequences. Limnol. Oceanogr. 42: 1105-1118.
- [71]. Venice System, (1958). Symposium on the classification of brackish waters. The Venice System for the classification of marine waters according to salinity. Oikos. 9: 311-312.
- [72]. Vinyard, C. W. (1966). Additions to the algal flora of Oklahoma. Southwest Nat. 11(2): 196-204.
- [73]. Wang. W. (1990). Literature review on duckweed toxicity testing. Environ. Res. 52: 7-2.
- [74]. Wolgemuth, E., Trnkova, J. & Sutory, K. (1984). Vyskyt slanomilne rasy Enteromorpha intestinalis (L.) Grev. na Trebicsku. Acta Scientiarum Naturalium Musei Moraviae Occidentalis Treble. 13: 53-57.
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