Zitieren

1. Abdel-Baki A. A. S., Gewik M. M. and Al-Quraishy S., 2014 − First records of Ambiphrya and Vorticella spp. (Protozoa, Ciliophora) in cultured Nile tilapia (Oreochromis niloticus) in the central region of Saudi Arabia, Saudi Journal of Biological Sciences, 21, 520-523.10.1016/j.sjbs.2014.01.002Search in Google Scholar

2. Adl S. M., Simpson A. G. B., Farmer M. A., Andersen R. A., Anderson O. R., Barta J. R., Bowser S. S., Brugerolle G., Fensome R. A., Fredericq S., James T. Y., Karpov S., Kugrens P., Krug J., Lane C. E., Lewis L. A., Lodge J., Lynn D. H., Mann D. G., Mccourt R. M., Mendoza L., Moestrup O., Mozley-Standridge S. E., Nerad T. A., Shearer C. A., Smirnov A. V., Spiegel F. W. and Taylor M. F. J. R., 2005 − The new higher level classification of eukaryotes with emphasis on the taxonomy of Protists, Journal of Eukaryotes Microbiology, 52, 399-451.10.1111/j.1550-7408.2005.00053.xSearch in Google Scholar

3. APHA, 1995 − Standard methods for the examination of water and wastewater, 19th Ed. Washington: APHA, 1100.Search in Google Scholar

4. Bataglia O. C., Furlani A. M. C., Teixeira J. P. F., Furlani P. R. and Gallo J. R., 1983 − Chemical analysis methods for plants, Boletim Técnico: Instituto Agronômico, 78, Campinas, 48. (in Portuguese)Search in Google Scholar

5. Curtean-Bănăduc A., Schneider-Binder E. and Bănăduc D., 2014 ‒ The importance of the riverine ligneous vegetation for the Danube Basin lotic ecosystems, in Cianfaglione K. (ed.), Lʼimportanza degli Alberi e del Bosco, Cultura, scienza e coscienza del territorio, Temi Edit., Trento, Italia, ISBN: 978-88-973772-63-9, I-II, 187-210.Search in Google Scholar

6. Boyd C. E. and Tucker C. S., 1992 − Water quality and pond soil analyses for aquaculture, Auburn: Alabama Agricultural Experiment Station, 183.Search in Google Scholar

7. Capello S., Marchese M. and De Wysiecki M. L., 2013 − Orthoptera assemblages associated with macrophytes of floodplain lakes of the Paraná River, Revista Brasileira de Entomologia, 57, 1, 59-66.10.1590/S0085-56262013000100010Search in Google Scholar

8. Chowdhary S. and Sharma K. K., 2013 − Eichhornia crassipes as a most preferred habitat for macrobenthic invertebrates, Journal of Pharmaceutical and Scientific Innovation, 2, 4, 70-72.10.7897/2277-4572.02458Search in Google Scholar

9. Dahms H. U., Hagiwara A. and Lee J. S., 2011 − Ecotoxicology, ecophysiology and mechanistic studies with rotifers, Aquatic Toxicology, 101, 1, 1-12.10.1016/j.aquatox.2010.09.006Search in Google Scholar

10. Diab S., Kochba M., Mires D. and Avnimelech Y., 1992 − Combined intensive-extensive (CIE) pond system, A: norganic nitrogen transformations, Aquaculture, 101, 33-39.10.1016/0044-8486(92)90230-ISearch in Google Scholar

11. Golterman H. L., Clymo R. S., Ohnstad M. A. M., 1978 − Methods for physical and chemical analysis of fresh water, Oxford: Blackwell Scientific Publication, 214.Search in Google Scholar

12. Gutierrez M. F. and Mayora G., 2016 − Influence of macrophyte integrity on zooplankton habitat preferred, emphasizing the released phenolic compounds and chromophoric dissolved organic matter, Aquatic Ecology, 50, 1, 137-151.10.1007/s10452-015-9561-0Search in Google Scholar

13. Koroleff F., 1976 − Determination of nutrients, in Grashof E. and Kremling E., orgs, Methods of seawater analysis, Verlag Chemie Wenhein, 181.Search in Google Scholar

14. Kouamé M. K., Dietoa M. Y., Edia E. O., DaCosta S. K., Quattara A. and Gourène G., 2011 − Macroinvertebrate communities associated with macrophyte habits in a tropical man-made lake (Lake Taabo, Côte d’Ivoire), Knowledge and Management of Aquatic Ecosystems, 400, 03, DOI: http://dx.doi.org/10.1051/kmae/2010035.10.1051/kmae/2010035Search in Google Scholar

15. Lansac-Tôha F., Velho L. F. M., Costa D. M., Simões N. R. and Alves G. M., 2014 − Structure of the testate amoeba community in different habitats in a neotropical floodplain, Brazilian Journal Biology, 74, 1, 181-190.10.1590/1519-6984.2491225055100Search in Google Scholar

16. Lobo E. and Leighton G., 1986 − Estructuras comunitarias de las fitocenosis planctonicas de los sistemas de desembocaduras de ríos y esteros de la zona central de Chile, Revista de Biología Marina y Oceanografía, 22, 1, 1-29.Search in Google Scholar

17. Malik A., 2007 − Environmental challenge vis a vis opportunity: The case of water hyacinth, Environment International, 33, 1, 122-138.10.1016/j.envint.2006.08.00417010439Search in Google Scholar

18. Mieczan T., 2007 − Size spectra and abundance of planktonic ciliates within various habitats in a macrophyte-dominated lake (Eastern Poland), Biologia, 62, 2, 189-194.10.2478/s11756-007-0028-1Search in Google Scholar

19. Milstein A., Wahab M. A. and Rahman M. M., 2002 − Environmental effects of common carp Cyprinus carpio (L.) and mrigal Cirrhinus mrigala (Hamilton) as bottom feeders in major Indian carp polycultures, Aquaculture Research, 33, 1103-1117.10.1046/j.1365-2109.2002.00753.xSearch in Google Scholar

20. Milstein A., Zoran M., Kochba M. and Avnimelech Y., 2001 − Effect of different management practices on water quality of tilapia intensive culture systems in Israel, Aquaculture International, 9, 133-152.10.1023/A:1014209124855Search in Google Scholar

21. Montiel-Martínez A., Ciros-Pérez J. and Corkidi G., 2015 − Littoral zooplankton-water hyacinth interactions: habitat or refuge? Hydrobiologia, 755, 1, 173-182.10.1007/s10750-015-2231-3Search in Google Scholar

22. Neori A. and Agami M., 2016 − The Functioning of Rhizosphere Biota in Wetlands – a Review, Wetlands, doi: 10.1007/s13157-016-0757-4.10.1007/s13157-016-0757-4Search in Google Scholar

23. Nusch E. A. 1980 − Comparison of different methods for chlorophyll and phaeopigments determination, Archive für Hydrobiologie, 14, 14-36.Search in Google Scholar

24. O’Hare M. T., Gunn I. D. M., Chapman D. S., Dudley B. J. and Purse B. V., 2012 − Impacts of space, local environment and habitat connectivity on macrophyte communities in conservation lakes, Diversity and Distributions, 18, 603-614.10.1111/j.1472-4642.2011.00860.xSearch in Google Scholar

25. Onciu T. M., Radu A. and Galaţchi L., 1999 ‒ Contributions to the knowledge of the zooplankton from the Olt River, Transylvanian Review of Systematical and Ecological Research, 1, 67-76.Search in Google Scholar

26. Pielou E. C., 1975 − Ecological diversity, John Wiley, New York, 165.Search in Google Scholar

27. Raij B. V., Andrade J. C., Cantarelle H. and Quaggio J. A., 2001 − Chemical analysis for evaluation of fertility of tropical soils, Instituto Agronômico, Campinas, SP, Brazil. (in Portuguese)Search in Google Scholar

28. Sipaúba-Tavares L. H. and Dias S. G., 2014 − Water quality and communities associated with macrophytes in a shallow water-supply reservoir on an aquaculture farm, Brazilian Journal of Biology, 74, 2, 420-428.10.1590/1519-6984.2721225166326Search in Google Scholar

29 STATSOFT, 2011 − Inc. STATISTICA, ver. 10.Search in Google Scholar

30. Villamagna A. M. and Murphy B. R., 2009 − Ecological and socio-economic impacts of invasive water hyacinth (Eichhornia crassipes): a review, Freshwater Biology, 55, 2, 282-298.10.1111/j.1365-2427.2009.02294.xSearch in Google Scholar

31. Zeng J., Bian Y., Xing P. and Wu Q. L., 2012 − Macrophyte species drive the variation of bacterioplankton community composition in a shallow freshwater lake, Applied and Environmental Microbiology, 78, 1, 177-184.10.1128/AEM.05117-11325563522038598Search in Google Scholar

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