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N. Rampazzo, G. Rampazzo Todorovic, A. Mentler and W.E.H. Blum

References BarjaB.C., Herszage J., anddosSantosAfonsoM., 2001. Iron(III)- phosphonate complexes. Polyhedron, 20, 1821-1830. Candela L., Álvarez-Benedi J., Condesso de Melo M.T., and Rao P.S.C., 2007. Laboratory studies on glyphosate transport in soils of theMaresme area nearBarcelona, Spain. Transport model parameter estimation. Geoderma, 140, 8-16. Ghanem A., Bados P., EstaunA.R., de Alencastro L.F., Taibi S., Einhorn J., and Mougin C., 2007. Concentrations and specific loads of glyphosate, diuron

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Gorana Rampazzo Todorovic, Nicola Rampazzo, Axel Mentler, Winfried E.H. Blum, Alexander Eder and Peter Strauss

References Aparicio V.C., De Geronimo E., Marino D., Primost J., Carriquiriborde P., and Costa J.L., 2013. Environmental fate of glyphosate and aminomethylphosphonic acid in surface waters and soil of agricultural basins. Chemosphere, 93, 1866-1873. Borggaard O.K. and Gimsing A.L., 2008. Fate of glyphosate in soil and the possibility of leaching to ground and surface waters: A review. Pest Manag. Sci., 64, 441-456. Candela L., Álvarez-Benedi J., Condesso de Melo M.T., and Rao P.S.C., 2007. Laboratory studies on

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Piotr Rzymski, Piotr Klimaszyk, Tomasz Kubacki and Barbara Poniedziałek

., Wiegand C., 2009, Bioaccumulation of glyphosate and its formulation Roundup Ultra in Lumbriculus variegatus and its effects on biotransformation and antioxidant enzymes, Environ. Pollut. 157(1): 57-63. Coupe R.H., Kalkhoff S.J., Capel P.D., Gregoire C., 2012, Fate and transport of glyphosate and aminomethylphosphonic acid in surface waters of agricultural basins, Pest. Manag. Sci. 68(1): 16-30. Edge C.B., Gahl M.K., Thompson D.G., Houlahan J.E., 2013, Laboratory and field exposure of two species of juvenile amphibians to a glyphosate

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Katarzyna Marcinkowska and Agnieszka Łacka

R eferences Bates D. M., Watts D. G. (1988): Nonlinear Regression Analysis and Its Applications. New York: Wiley & Sons (pp. 103–104). Carroll R. J., Ruppert D. (1988): Transformation and Weighting in Regression. New York: Chapman and Hall (Chapter 4). Choudhary H., Pernak J., Shamshina J. L., Niemczak M., Giszter R., Chrzanowski Ł., Praczyk T., Marcinkowska K., Cojocaru O. A., Rogers R. D. (2017): Two Herbicides in a Single Compound: Double Salt Herbicidal Ionic Liquids Exemplified with Glyphosate. Dicamba. and MCPA. ACS Sustainable Chemistry

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Edhem Hasković, Melina Pekić, Muhamed Fočak, Damir Suljević and Lejla Mešalić

References 1. Benachour N, Sé ralini GE: Glyphosate formulations induce apoptosis and necrosis in human umbilical, embryonic, and placental cells. Chem Res Toxicol 2009; 22(1):97-105. 2. Gasnier C, Dumont C, Benachour N, Clair E, Chagnon MC, Séralini GE: Glyphosate-based herbicides are toxic and endocrine disruptors in human cell line. Toxicol 2009; 262(3):184-191. 3. Eriksson M, Hardell L, Carlberg M, Åkerman M: Pesticide exposure as risk factor for non-Hodgkin lymphoma including histopathological subgroup

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K.M. Kasiotis, Z.D. Tzouganaki and K. Machera

Literature cited Balbuena, M.S., Tison, L., Hahn, M.L., Greggers, U., Menzel, R. and Farina, W.M. 2015. Effects of sublethal doses of glyphosate on honeybee navigation. Journal of Experimental Biology , 218: 2799-805. Benbrook, C.M. 2016. Trends in glyphosate herbicide use in the United States and globally. Environmental Sciences Europe , 28: 3. Botero-Coy, A.M., Ibanez, M., Sancho, J.V. and Hernandez, F. 2013. Direct liquid chromatography-tandem mass spectrometry determination of underivatized glyphosate in rice, maize and soybean. Journal

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Anthony Samsel and Stephanie Seneff

References Agundez JA, Garcia-Martin E, Martinez C. (2009). Genetically based impairment in CYP2C8- and CYP2C9-dependent NSAID metabolism as a risk factor for gastrointestinal bleeding: Is a combination of pharmacogenomics and metabolomics required to improve personalized medicine? Expert Opin Drug Metab Toxicol 5(6): 607-620. Ali A. and Fletcher R. A. (1977), Phytotoxic action of glyphosate and amitrole on corn seedlings. Can J Bot 56: 2196-2202. Allen RH, Stabler SP, Savage DG, and Lindenbaum J. Metabolic

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Raquel Jasper, Gabriel Olivo Locatelli, Celso Pilati and Claudriana Locatelli

, Pajand R, Feliciani C, Tulli A. (2004). Skin toxicity from glyphosate-surfactant formulation. J . Toxicol. Clin. Toxicol . 42 (3): 317-319. Astiz M, de Alaniz MJT, Marra CA. (2009). Ef ect of pesticides on cell survival in liver and brain rat tissues. Ecotoxicol. Environ. Saf. 72: 2025-2032. Avellar de IG, Magalhães MM, Silva AB, Souza LL, Leitão AC, Hermes-Lima M. (2004). Reevaluating the role of 1,10-phenanthroline in oxidative reactions involving ferrous ions and DNA damage. Biochim. Biophys. Acta. 1675 (1-3): 46

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Diego Javier Bentivegna, Gisela Lorena Moyano, Juan Facundo Fabián Daddario and Guillermo Tucat

References Abramoff M.D., Magalhaes P.J., Ram S.J. 2004. Image processing with Image. Journal of Biophotonics International 11: 36–42. Adkins S.W., Tanpipat S., Swarbrick J.T., Boersma M. 1998. Influence of environmental factors on glyphosate efficacy when applied to Avena fatua or Urochloa panicoides . Weed Research 38:129–138. DOI: https://doi.org/10.1046/j.1365-3180.1998.00083.x 10.1046/j.1365-3180.1998.00083.x Alvarez R., Steinbach H.S. 2009. A review of the effects of tillage systems on some soil physical properties, water content

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Maciej Płatkowski and Arkadiusz Telesiński

communities via Biolog ® Ecoplates. Eur. J. Soil Biol. 47, 4: 256-263. FORLANI G., PAVAN M., GRAMEK M., KAFARSKI P., LIPOK J. 2008. Biochemical bases for a widespread tolerance of cyanobacteria to the phosphonate herbicide glyphosate. Plant Cell Physiol. 49: 443-456. GIESY J.P., DOBSON S., SOLOMON K.R. 2000. Ecotoxicological risk assessment for Roundup® herbicide. Rev. Environ. Contam Toxicol. 167: 35-120. KRZYŚKO-ŁUPICKA T., ORLIK A. 1997. The use of glyphost as the sole source of phosphorus or carbon for the selection of soil-borne fungal strains