Accesso libero

Seasonal Changes in the Content of Photosynthetic Pigments of Dominant Macrophytes in the Bardača Fishpond Area

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Al-Hamdani, S. & Sirna C.B. (2008). Physiological responses of Salvinia minima to different posphorus and nitrogen concentrations. Am. Fern J., 98(2), 71−82. DOI: 10.1640/0002-8444(2008)98[71:PROSMT]2.0.CO;2.Search in Google Scholar

American Public Health Association (APHA) (1995). Standard methods for the examinations of water and wasterwater. Washington.Search in Google Scholar

Atapaththu, K.S.S., Asaeda, T., Yamamuro, M. & Kamiya H. (2017). Effects of water turbulence on plant, sediment and water quality in reed (Phragmites australis) community. Ekológia (Bratislava), 36(1), 1−9. DOI: 10.1515/eko-2017-0001.10.1515/eko-2017-0001Search in Google Scholar

Beck, W.A. & Redman R. (1940). Seasonal variations in the production of plant pigments. Plant Physiol., 15(1), 81−94. DOI: 10.1104/pp.15.1.81.10.1104/pp.15.1.8143825316653623Search in Google Scholar

Bianchini Jr., I., Cunha-Santino, M.B. & Peret A.M. (2008). Oxygen demand during mineralization of aquaticmacrophytes from an oxbow lake. Revista Brasileira de Biologia, 68(1), 61−67. DOI: 10.1590/S1519-69842008000100009.10.1590/S1519-6984200800010000918470379Search in Google Scholar

Bojčić, C., Debeljak, Lj., Vuković, T., Jovanović-Kršljanin, B., Apostolski, K., Ržaničanin, B., Turk, M., Volk, S., Drecun, Đ., Habeković, D., Hristić, Đ., Fijan, N., Pažur, K., Bunjevac, I. & Marošević Đ. (1982). Slatkovodno ribarstvo. Zagreb: Jugoslavenska Medicinska Naklada.Search in Google Scholar

Carvalho, P., Thomaz, S.M. & Bini L.M. (2003). Effects of water level, abiotic and biotic factors on bacterioplankton abundance in lagoons of a tropical floodplain (Paraná River, Brazil). Hydrobiologia, 510(1−3), 67−74. DOI: 10.1023/B:HYDR.0000008532.71152.38.10.1023/B:HYDR.0000008532.71152.38Search in Google Scholar

Chambers, P.A., Lacoul, P., Murphy, K.J. & Thomaz S.M. (2008). Global diversity of aquatic macrophytes in freshwater. Hydrobiologia, 595, 9−26. DOI: 10.1007/s10750-007-9154-6.10.1007/s10750-007-9154-6Search in Google Scholar

Dale, M.P. & Causton D.R. (1992). Use of chlorophyll a/b ratio as a bioassay for the light environment of a plant. Funct. Ecol., 6, 190−196. DOI: 10.2307/2389754.10.2307/2389754Search in Google Scholar

Dar, N.A., Hamid, A., Ganai, B.A., Bhat, S.U. & Pandit A.K. (2012). Primary production dynamics of two dominant macrophytes in Wular lake, a Ramsar site in Kashmir Himalaya. Ecologia Balkanica, 4(2), 77−83.Search in Google Scholar

Dar, N.A., Pandit, A.K. & Ganai B.A. (2013). Seasonal variation in the pigment content of dominant macrophytes from Wular lake, Kashmir Himalaya, India. Biochemistry and Pharmacology: Open Access, 2(4), 1−6. DOI: 10.4172/2167-0501.1000124.10.4172/2167-0501.1000124Search in Google Scholar

Dodds, W.K. (2006). Eutrophication and trophic state in rivers and streams. Limnol. Oceanogr., 51(1), 671−680. DOI: 10.4319/lo.2006.51.1_part_2.0671.10.4319/lo.2006.51.1_part_2.0671Search in Google Scholar

Đurić, D., Sopić, D., Trifković, A. & Jandrić B. (2004). Hidrotehnički radovi u području močvare Bardača. In Ž. Šarić, M. Stanković & D. Butler (Eds.), Život u močvari (pp. 17−27). Banja Luka: Urbanistički Zavod Republike Srpske.Search in Google Scholar

Horvatić, J., Kočić, A., Bučanac, D., Peršić, V. & Varga M. (2013). Preliminarna istraživanja sezonskih promjena slobodno-plivajućih i submerznih makrofita u kanalu Barbara (Baranja). Hrvatske Vode, 21(85), 215−224.Search in Google Scholar

Hreeb, K.K. (2017). Effect of different water temperatures on growth of aquatic plants Salvinia natans and Ceratophyllum demersum. Journal of Coastal Life Medicine, 5(1), 13−15. DOI: 10.12980/jclm.5.2017J6-213.10.12980/jclm.5.2017J6-213Search in Google Scholar

Ivanković, A., Velagić Habul, E. & Knezović Z. (2011). Oceanological and hydrobiological studies. Oceanological and Hydrobiological Studies, 40(3), 19−27. DOI: 10.2478/s13545-011-0025-4.10.2478/s13545-011-0025-4Search in Google Scholar

Jampeetong, A. & Brix H. (2009). Nitrogen nutrition of Salvinia natans: Effects of inorganic nitrogen form on growth, morphology, nitrate reductase activity and uptake kinetics of ammonium and nitrate. Aquat. Bot., 90, 67−73. DOI: 10.1016/j.aquabot.2008.06.005.10.1016/j.aquabot.2008.06.005Search in Google Scholar

Kitajima, K. & Hogan K.P. (2003). Increases of chlorophyll a/b ratios during acclimation of tropical woody seedlings to nitrogen limitation and high light. Plant, Cell Environ., 26, 857−865. 10.1046/j.1365-3040.2003.01017.x.10.1046/j.1365-3040.2003.01017.xSearch in Google Scholar

Levado, E. (2001). Studies on phytoplankton diversity within the water column of two freshwater lakes – Rostherne Mere (UK) and Lake Glubokoe (Russia). PhD Thesis, University of Manchester.Search in Google Scholar

Lippert, I., Rolletschek, H. & Kohl J.-G. (2001). Photosynthetic pigments and efficiencies of two Phragmites australis stands in different nitrogen availabilities. Aquat. Bot., 69, 359−365. DOI: 10.1016/S0304-3770(01)00148-6.10.1016/S0304-3770(01)00148-6Search in Google Scholar

Lolić, S., Matavulj, M. & Maksimović T. (2012). Komparativna analiza kvaliteta vode rijeke Mature i bazena Prevlaka na Bardači (pp.121−128). Banja Luka.Search in Google Scholar

Lolić, S., Matavulj, M., Dekić, R. & Maksimović T. (2014). Kvalitativni i kvantitativni sastav fitoplanktona u vodi bazena Sinjak (ribnjak Bardača) (pp. 39−47). Banja Luka.Search in Google Scholar

Lukina, L.F. & Smirnova N.N. (1988). Fiziologija viših vodnih rastenii. Kiev: Naukova Dumka.Search in Google Scholar

Matavulj, M., Gajin, S. & Bokorov M. (1990). Sezonska dinamika fosfomineralizatora u vodi ribnjaka i njihov odnos sa drugim članovima mikrobiocenoze, ribnjak Futog II. In Zbornik radova II Jugoslovenskog simpozija mikrobne ekologije (pp. 219−227). Zagreb.Search in Google Scholar

Maksimović, T., Rončević, S. & Kukavica B. (2019). Utricularia vulgaris L. and Salvinia natans (L.) All. heavy metal (Fe, Mn, Cu, Zn and Pb) bioaccumulation specificity in the area of Bardača fishpond. Ekológia (Bratislava), 38(3), 300−313. DOI: 10.2478/eko-2019-0016.10.2478/eko-2019-0016Search in Google Scholar

Mészáros, I., Veres, S., Dinka, M. & Lakatos G. (2003). Variations in leaf pigmets content and photosynthetic activity of Phragmites australis in healthy and die-back reed stands of lake Fertő/Neusiedlersee. Hydrobiologia, 506, 681−686. DOI: 10.1007/BF03335350.10.1007/BF03335350Search in Google Scholar

Nekrasova, G.F., Ronzhina, D.A., Maleva, M.G. & P’yankov V.I. (2003). Photosynthetic metabolism and activity of carboxylating enzymes in emergent, floating, and submerged leaves of hydrophytes. Russian Journal of Plant Physiology, 50, 57−67. DOI: 10.1023/A:1021936418052.10.1023/A:1021936418052Search in Google Scholar

Nikolić, Lj., Pajević, S. & Ljevnaić B. (2009). Primary production dynamics of dominant hydrophytes in Lake Provala (Serbia). Central European Journal of Biology, 4(2), 250−257. DOI: 10.2478/s11535-009-0013-5.10.2478/s11535-009-0013-5Search in Google Scholar

Prasad, M.N.V. & Freitas H.M.D. (2003). Metal hyperaccumulation in plants - Biodiversity prospecting for phytoremediation technology. Electronic Journal of Biotechnology, 6(3), 285−321. DOI: 10.2225/vol6-issue3-fulltext-6.10.2225/vol6-issue3-fulltext-6Search in Google Scholar

Prasad, M.N.V., Greger, M. & Aravind P. (2006). Biogeochemmical cycling of trace elements by aquatic and wet-land plants: relevance to phytoremediation. In M.N.V. Prasad, K.S. Sajvan & R. Naidu (Eds.), Trace elements in the environment, biogeochemistry, biotechnology, and bioremediation (pp. 483−507). Boca Racon: CRC. DOI: 10.1201/9781420032048.10.1201/9781420032048Search in Google Scholar

Rocha, R.R.A., Thomaz, S.M., Carvalho, P. & Gomes L.C. (2009). Modelimg chlorophyll-a and dissolved oxygen concentration in tropical floodplain lakes (Paraná, River, Brazil). Braz. J. Biol., 69(Suppl. 2), 491−500. DOI: 10.1590/S1519-69842009000300005.10.1590/S1519-6984200900030000519738957Search in Google Scholar

Ronzhina, D.A. & P’yankov V.I. (2001). Structure of the photosynthetic apparatus in leaves of freshwater hydrophytes: 2. Quantitative characterization of leaf mesophyll and the functional activity of leaves with different degrees of submersion. Russian Journal of Plant Physiology, 48, 723−732. DOI: 10.1023/A:1012544105453.10.1023/A:1012544105453Search in Google Scholar

Ronzhina, D.A., Nekrasova, G.F. & P’yankov V.I. (2004). Comparative characterization of the pigment complexin emergent, floating, and submerged leaves of hydrophytes. Russian Journal of Plant Physiology, 51, 21–27. DOI: 10.1023/B:RUPP.0000011299.93961.8f.10.1023/B:RUPP.0000011299.93961.8fSearch in Google Scholar

Saeed, T. & Sun G. (2012). A review on nitrogen and organics removal mechanisms in subsurface flow constructed wet-lands: dependency on environmental parameters, operating conditions and supporting media. J. Environ. Manag., 112, 429−448. DOI: 10.1016/j.jenvman.2012.08.011.10.1016/j.jenvman.2012.08.01123032989Search in Google Scholar

Sheikh, A.Q., Pandit, A.K. & Ganai B.A. (2017). Seasonal variation in chlorophyll content of some selected plant species of Yousmarg grassland ecosystem. Asian Journal of Plant Science and Research, 7(2), 33−36.Search in Google Scholar

Shilla, D. & Dativa J. (2008). Biomass dynamics of charophyte-dominated submerged macrophyte communities in Myall Lake, NSW, Australia. Chemistry and Ecology, 24, 367−377. DOI: 10.1080/02757540802351185.10.1080/02757540802351185Search in Google Scholar

Stevanović, M. & Janković M.M. (2001). Ekologija biljaka sa osnovama fiziološke ekologije biljaka. Beograd: NNK.Search in Google Scholar

Stevenson, R., Bothwell, M., Lowe, R. & Thorp J.H. (1996). Algal ecology: Freshwater benthic ecosystems. Academic Press.Search in Google Scholar

Taniguchi, G.M., Bicudo, D.C. & Senna P.A.C. (2004). Abiotic variables in littoral-limnetic gradient of an Oxbow lakeof Mogi-Guacu River floodplain, southeastern, Brazil. Braz. Arch. Biol. Technol., 47(6), 961−971. DOI: 10.1590/S1516-89132004000600016.10.1590/S1516-89132004000600016Search in Google Scholar

Temali, A. & Ylli A. (2017). Variations of photosynthetic pigments of the specie Najas marina related to the water quality in the opposite shore of Skadar lake. International Educational Scientific Research Journal, 3(1), 5−12.Search in Google Scholar

Thomaz, S.M., Pagioro, T.A., Bini, L.M., Roberto, M.C., & Rocha R.R.A. (2004). Limnology of the Upper Paraná Flood-plain habitats: patterns of spatio-temporal variations and influence of the water levels. In S.M. Thomaz, A.A. Agostinho & N.S. Hahn (Eds.), The Upper Paraná River and its floodplain: physical aspects, ecology and conservation (pp. 76−102). Leiden: Backhuys Publishers.Search in Google Scholar

Townsend, A.S. (2006). Hydraulic phases, persistentstratification, and phytoplankton in a tropical floodplain lake (Mary River, northern Australia). Hydrobiologia, 556(1), 163−179. DOI: 10.1007/s10750-005-0885-y.10.1007/s10750-005-0885-ySearch in Google Scholar

Uvalle Sauceda, J.I., Gonzalez Rodriguez, H., Ramirez Lozano, R.G., Cantu Silva, I. & Gomez Meza M.V. (2008). Seasonal trends of chlorophylls a and b and carotenoids in native trees and shrubs of Northeastern Mexico. J. Biol. Sci., 8, 258−267. DOI: 10.3923/jbs.2008.258.267.10.3923/jbs.2008.258.267Search in Google Scholar

Wetzel, RG. (2001). Limnology: lake and river ecosystems. San Diego: Academic Press.Search in Google Scholar

eISSN:
1337-947X
Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Chemistry, Environmental Chemistry, Geosciences, Geography, Life Sciences, Ecology, other