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Canned sea fish marketed in Serbia: their zinc, copper, and iron levels and contribution to the dietary intake

.2016.02.167 11. Subotić S, Spasić S, Višnjić-Jeftić Ž, Hegediš A, KrpoĆetković J, Mićković B, Skorić S, Lenhardt M. Heavy metal and trace element bioaccumulation in target tissues of four edible fish species from the Danube River (Serbia). Ecotoxicol Environ Saf 2013;98:196-202. doi: 10.1016/j.ecoenv.2013.08.020 12. Subotić S, Višnjić Jeftić Ž, Spasić S, Hegediš A, KrpoĆetković J, Lenhardt M. Distribution and accumulation of elements (As, Cu, Fe, Hg, Mn, and Zn) in tissues of fish species from different trophic levels in the Danube

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The effect of temperature and humidity changes on insects development their impact on forest ecosystems in the expected climate change

References Asch, van, M. 2007. Seasonal synchronization between trophic levels under climate change: genetic and environmental effects on winter moth egg hatching. Dissertations University Groningen. Awmack C. S., Woodcock C. M., Harrington R. 1997. Climate change may increase vulnerability of aphids to natural enemies. Ecological Entomology, 22: 366-368. Ayres M. P., Lombardero M. J. 2000. Assessing the consequences of global change for forest disturbance from herbivores and pathogens. The science of

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Economic effectiveness of pike (Esox lucius L.) stocking based on the example of selected lakes in East European Plain with consideration of their natural conditons

+ pike ( Esox lucius L.) in a small eutrophic lake and its implication for biomanipulation – Hydrobiologia 506-509: 481-487. Skov C., Nilsson P.A. 2007 – Evaluating stocking of YOY pike Esox lucius as a tool in the restoration of shallow lakes – Freshw. Biol. 52: 1834-1845. Søndergaard M., Jeppesen E., Berg S. 1997 – Pike ( Esox lucius L.) stocking as a biomanipulation tool 2. Effects on lower trophic levels in Lake Lyng, Denmark – Hydrobiologia 342: 319-325. Seggel A., De Young C., Soto D. 2016 – Climate change implications for fisheries and

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Effect of sand-dune slope orientation on soil free-living nematode abundance and diversity

[1] Auslander, M., Nevo, E., Inbar, M. (2003): The effects of slope orientation on plant growth, developmental instability and susceptibility to herbivores. J. Arid Environ., 55:405–4 16 http://dx.doi.org/10.1016/S0140-1963(02)00281-1 [2] Berkelmans, R., Ferris, H., Tenuta, M., Van Bruggen, A. H. C. (2003): Effects of long-term crop management on nematode trophic levels other than plant feeders disappear after 1 year of disruptive soil management. Appl. Soil Ecol., 23: 223–235. http://dx.doi.org/10.1016/S0929

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Diatom and microarthropod communities of three airfields in Estonia – their differences and similarities and possible linkages to airfield properties

Zackenberg (Northeast Greenland). Polar Biology, 23, 392-400. Van Straalen, N.M. & Van Wensem, J. (1986) Heavy Metal Content of Forest Litter Arthropods as Related to Body-Size and Trophic Level. Environmental Pollution, 42, 209-221. Vanker, S., Enneveer, M. & Mäsak, M. (2013) Implementation of measures to reduce aviation noise at Tallinn airport. In: M.J. Crocker (Ed.), Book of Abstracts of 20th International Congress on Sound & Vibration (7-11 July 2013, Bangkok, Thailand), International Institute of Acoustics and Vibration, Bangkok, 400

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The evolutionary ecology of interactive synchronism: the illusion of the optimal phenotype

trophic levels: Selection against instability explains the pattern. Food Webs, 1, 10-17. Bradshaw, A.D. (1965) Evolutionary significance of phenotypic plasticity in plants. Advances in Genetics, 13, 115-155. Buiatti, M & Buiatti, M. (2008) Chance vs. necessity in living systems: A false antinomy. Rivista di Biologia/Biology, Forum, 101, 29-66. Charlesworth, B. & Jain, K. (2014) Purifying selection, drift, and reversible mutation with arbitrarily high mutation rates. Genetics ,1989, 1587-1602. Charmantier

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Comparison of Phytotoxicity of Selected Phosphonium Ionic Liquid

aquatic organisms of different trophic levels. Aquat Toxicol. 2010;96:290-297. DOI: 10.1016/j.aquatox.2009.11.008. [24] Cho Ch-W, Pham TPT, Jeon Y-Ch, Vijayaraghavan K, Choe W-S, Yun Y-S. Toxicity of imidazolium salt with anion bromide to a phytoplankton Selenastrum capricornutum: effect of alkyl-chain length. Chemosphere. 2007;69:1003-1007. DOI: 10.1016/j.chemosphere.2007.06.023. [25] Couling DJ, Bernot RJ, Docherty KM, Dixon JNK, Magin EJ. Assessing the factors responsible for ionic liquid toxicity to aquatic organisms via quantitative structure

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Metal bioaccumulation in common carp and rudd from the Topolnitsa reservoir, Bulgaria

.04.023 37. Hansen BH, Garmo OA, Olsvik PA, Anderson RA. Gill metal binding and stress gene transcription in brown trout (Salmo trutta) exposed to metal environments: the effect of preexposure in natural populations. Environ Toxicol Chem 2007;26:944-53. doi: 10.1897/06-380R.1 38. Terra BF, Araújo FG, Calza CF, Lopes RT, Teixeira TP. Heavy metal in tissues of three fish species from different trophic levels in a tropical Brazilian River. Water Air Soil Pollut 2008;187:275-84. doi: 10.1007/s11270-007-9515-9 39. Moiseenko TI, Gashkina NA

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Soil nematodes in alpine meadows of the Tatra National Park (Slovak Republic)

animal diversity in agricultural grasslands. Appl. Soil Ecol., 10(3): 263 -276. DOI: 10.1016/S0929-1393(98)00125-5 BERKELMANS, R., FERRIS, H., TENUTA, M., VAN BRUGGEN, A. H. C. (2003): Effects of long-term crop management on nematode trophic levels other than plant feeders disappear after 1 year of disruptive soil management. Appl. Soil Ecol., 23(3): 223-235. DOI: 10.1016/ S0929-1393(03)00047-7 BOAG, B., YEATES, G. W. (1998): Soil nematode biodiversity in terrestrial ecosystems. Biodivers. Conserv., 7(5): 617-630. DOI: 10.1023/A

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A review of introduction of common carp Cyprinus carpio in Pakistan: origin, purpose, impact and management

, J.J., Santucci, V.J., Wahl, D.H. (2003) Effects of adult common carp ( Cyprinus carpio ) on multiple trophic levels in shallow mesocosms. Canadian Journal of Fisheries and Aquatic Sciences, 60, 182–192. Paukert, C. P., Willis, D. W., Klammer, J. A. (2002): Effects of predation and environment on quality of yellow perch and bluegill populations in Nebraska sandhill lakes. North American Journal of Fisheries Management, 22, 86–95. Pernetta, J., Wells, S. (1993): Marine Protected Area Needs in the South Asian Seas Region: Pakistan. Volume 4, Gland: IUCN

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