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Research Article

Evaluation of cytotoxic and genotoxic effects of Benodanil by using Allium and Micronucleus assays

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Pages 35-40 | Received 01 Jul 2014, Accepted 22 Jan 2015, Published online: 03 Sep 2015

References

  • Akyıl D, Konuk M. (2015). Detection of genotoxicity and mutagenicity of chlorthiophos using micronucleus, chromosome aberration, sister chromatid exchange, and Ames tests. Environ Toxicol 30:937–945
  • Akyıl D, Ozkara A, Erdoğmuş SF, et al. (2014). Micronucleus assay in human lymphocytes after exposure to alloxydim sodium herbicide in vitro. Cytotechnology. [Epub ahead of print]. doi:10.1007/s10616-014-9746-8
  • Albertini RJ, Anderson D, Douglas GR, et al. (2000). IPCS guidelines for the monitoring of genotoxic effects of carcinogens in humans. Mutat Res 463:111–172
  • Ali D, Nagpure NS, Kumar S, et al. (2008). Genotoxicity assessment of acute exposure of chlorpyrifos to freshwater fish Channa punctatus (Bloch) using micronucleus assay and alkaline single-cell gel electrophoresis. Chemosphere 71:1823–1831
  • Andrioli NB, Soloneski S, Larramendy ML, et al. (2012). Cytogenetic and microtubule array effects of the zineb-containing commercial fungicide formulation Azzurro(®) on meristematic root cells of Allium cepa L. Mutat Res 742:48–53
  • Barberio A, Voltolini JC, Mello MLS. (2011). Standardization of bulb and root sample sizes for the Allium cepa test. Ecotoxicology 20:927–935
  • Chauhan LKS, Saxena PN, Gupta SK. (1999). Cytogenetic effects of cypermethrin and fenvalerate on the root meristem cells of Allium cepa. Environ Exp Bot 42:181–189
  • El-Khodary S, Habib A, Haliem A. (1989). Cytological effect of the herbicide Garlon-4 on root mitosis of Allium cepa. Cytologia 54:465–472
  • Fenech M. (1993). The cytokinesis blocks micronucleus technique. A detailed description on the method and its application to genotoxicity studies in human population. Mutat Res 285:35–44
  • Fenech M. (2000). The in vitro micronucleus technique. Mutat Res 455:81–95
  • Fenech M, Morley AA. (1985). Measurement of micronuclei in human lymphocytes. Mutat Res 148:29–36
  • Feretti D, Zerbini I, Zani C, et al. (2007). Allium cepa chromosome aberration and micronucleus tests applied to study genotoxicity of extracts from pesticide-treated vegetables and grapes. Food Addit Contam 24:561–572
  • Fındıklı Z, Türkoğlu Ş. (2010). The effects of glyphos and DDVP on mitotic division and chromosomes in Allium cepa L. Cumhuriyet Univ J Sci 31:49–62
  • Fiskesjo G. (1985). The Allium test as standard in environmental monitoring. Hereditas 102:99–112
  • Ford JH, Schultz CJ, Correll AT. (1988). Chromosome elimination in micronuclei: a common of hypoploidy. Am J Hum Genet 43:733–740
  • Fusconi A, Repetto O, Bona E, et al. (2006). Effect of cadmium on meristem activity and nucleus ploidy in roots of Pisum sativum L. cv. Frisson seedlings. Environ Exp Bot 58:253–260
  • Gollapudi BB, Mendrala AL, Linscombe VA. (1995). Evaluation of the genetic toxicity of the organophosphate insecticide Chlorpyrifos. Mutat Res/Genet Tox 342:25–36
  • Goujon E, Sta C, Trivella A, et al. (2014). Genotoxicity of sulcotrione pesticide and photoproducts on Allium cepa root meristem. Pesticide Biochem Physiol 113:47–54
  • Grant WF. (1982). Chromosome aberration assay in Allium. A report of U.S. Environmental Protection Agency Gene-Tox Program. Mutat Res 99:273–291
  • Grant WF. (1992). Cytogenetics studies of agricultural chemicals in plants in genetic toxicology an agricultural perspective. New York: Plenum Press, 335–378
  • Grant WF. (1994). The present status of higher plant bioassay for the detection of environmental mutagens. Mutat Res 310:175–185
  • Grant WF. (1999). Higher plant assays for the detection of chromosomal aberrations and gene mutations–a brief historical background on their use for screening and monitoring environmental chemicals. Mutat Res 426:107–112
  • Hoshina MM. (2002). Evaluation of a possible contamination of the waters of the Claro River-Municipality of Rio Claro, part of the Corumbatai River Basin, with the Mutagenicity Tests using Allium cepa. Rio Claro (SP): State University of Sao Paulo
  • Houk VS. (1992). The genotoxicity of industrial wastes and effluents–a review. Mutat Res 277:91–138
  • Ila HB, Topaktaş M, Rencüzoğulları E, et al. (2008). Genotoxic potential of cyfluthrin. Mutat Res 656:49–54
  • Istifli ES, Topaktaş M. (2013). Genotoxicity of pemetrexed in human peripheral blood lymphocytes. Cytotechnology 65:621–628
  • Kacprzaka J, Kuszewskib T, Lankoffa A, et al. (2013). Individual variations in the micronucleus assay for biological dosimetry afterhigh dose exposure. Mutat Res 756:196–200
  • Kligerman AD, Doerr CL, Tennant AH, et al. (2001). Genotoxicity studies of three triazine herbicides: in vivo studies using the alkaline single cell gel (SCG) assay. Mutat Res 493:1–10
  • Konuk M, Akyıl D, Liman R, et al. (2008). Examination of the mutagenic effects of some pesticides. Fresen Environ Bull 17:439–442
  • Kumar M, Prasad M, Kumar H, et al. (1995). Cytotoxic effects of two herbicides on meiosis. Maize Genet Coop Newslett 69
  • Kutlu M, Öztaş E, Aydoğan G, et al. (2011). An investigation of mutagenic activities of some 9-substituted phenanthrene derivatives with Ames/Salmonella/Microsome Test. Anadolu Univ J Sci Tech-C Life Sci Biotech 1:83–94
  • Lando C, Hagmar L, Bonnassi S. (1998). Biomarkers of cytogenetic damage in human and risk of cancer. The European study group on cytogenetic biomarkers and health. Med del Lavaro 89:124–131
  • Leme DM, Marin-Morales MA. (2009). Allium cepa test in environmental monitoring: a review on its application. Mutat Res 682:71–81
  • Ma TH, Xu ZD, Xu C, et al. (1995). The improved Allium/Vicia root tip micronucleus assay for clastogenicity of environmental pollutants. Mutat Res 334:185–195
  • Mahnaz N, Nivedita G, Dhumal KN. (2011). Effect of chloropyrifos and malathion on antioxidant enzymes in tomato and brinjal. Int J Pharm Biosci 2:202–209
  • Marcano L, Carruyo I, Del Campo A, et al. (2004). Cytotoxicity and mode of action of maleic hydrazide in root tips of Allium cepa L. Environ Res 94:221–226
  • Merhi M, Raynal H, Cahuzac E, et al. (2007). Occupational exposure to pesticides and risk of hematopoietic cancers: metaanalysis of case–control studies. Cancer Causes Control 18:1209–1226
  • Mesi Dizdari A, Kopliku D. (2013). Cytotoxic and genotoxic potency screening of two pesticides on Allium cepa L. Proc Technol 8:19–26
  • Omenn GS. (1991). Future research directions in cancer ecogenetics. Mutat Res 247:283–291
  • Ozen E, Çiçek F, Gür B. (2011). The effects of paraquat on some cytotoxic and biochemical parameters in Allium cepa. Fırat Univ J Sci 23:117–124
  • Ozkara A, Akyıl D, Erdoğmuş SF, et al. (2011). Evaluation of germination, root growth and cytological effects of wastewater of sugar factory (Afyonkarahisar) using Hordeum vulgare bioassays. Environ Monit Assess 183:517–524
  • Ozkara A, Akyıl D, Eren Y, et al. (2015). Potential cytotoxic effect of Anilofos by using Allium cepa assay. Cytotechnology 67:783–791
  • Pandey H, Kumar V, Roy BK. (2014). Assessment of genotoxicity of some common food preservatives using Allium cepa L. as a test plant. Toxicol Reports 1:300–308
  • Pastor S, Creus A, Parron T, et al. (2003). Biomonitoring of four European populations occupationally exposed to pesticides: use of micronuclei as biomarkers. Mutagenesis 18:249–258
  • Pesnya DS, Romanovsky AV. (2013). Comparison of cytotoxic and genotoxic effects of plutonium-239 alpha particles and mobile phone GSM 900 radiation in the Allium cepa test. Mutat Res 750:27–33
  • Rank J. (2003). The method of Allium anaphase–telophase chromosome aberration assay. Ekologiia 1:38–42
  • Rank J, Nielsen MH. (1997). Allium cepa anaphase–telophase root tip chromosome aberration assay on N-methyl-N-nitrosourea, maleic hydrazide, sodium azide, and ethyl methanesulfonate. Mutat Res 390:121–127
  • Rank L, Lopez LC, Nielsen MH, et al. (2002). Genotoxicity of maleic hydrazide, acridine and DEPH in Allium cepa root cells performed by two different laboratories. Hereditas 136:13–18
  • Revankar PR, Shyama SK. (2009). Genotoxic effects of Monocrotophos, an organophosphorous pesticide, on an estuarine bivalve, Meretrix ovum. Food Chem Toxicol 47:1618–1623
  • Rodriguez E, Azevedo R, Fernandes P, et al. (2011). Cr (VI) induces DNA damage, cell cycle arrest and polyploidization: aflowcytometric and comet assay study in Pisum sativum. Chem Res Toxicol 24:1040–1047
  • Saxena LPN, Chauhan KS, Gupta SK. (2005). Cytogenetic effects of commercial formulation of cypermethrin in root meristem cells of Allium sativum: spectroscopic basis of chromosome damage. Toxicology 216:244–252
  • Schuler M, Gudi R, Cheung J, et al. (2010). Evaluation of Phenolphthalein, Diazepam and Quinacrine dihydrochloride in the in vitro mammalian cell micronucleus test in Chinese hamster ovary (CHO) and TK6 cells. Mutat Res/Genetic Toxicol Environ Mutagen 702:219–229
  • Seth CS, Chaturvedi PK, Misra V. (2007). Toxic effect of arsenate and cadmium alone and in combination on Giant Duckweed (Spirodela polyrrhiza L.) in response to its accumulation. Environ Toxicol 22:539–549
  • Shcneiderman MH, Dewey WC, Highfıeld DP. (1971). Inhibition of DNA synthesis in synchronized Chinese hamster cell treated in G1 with cycloheximide. Exp Cell Res 67:147–155
  • Sivikova K, Dianovsky J. (2000). Cytogenetic effect of technical glyphosate on cultivated bovine peripheral lymphocytes. Int J Hyg Environ Health 209:15–20
  • Smaka-Kincl V, Stegnar P, Lovka M, et al. (1996). The evaluation of waste, surface and ground water quality using the Allium test procedure. Mutat Res 368:171–179
  • Srivastava K, Mishra KK. (2009). Cytogenetic effects of commercially formulated atrazine on the somatic cells of Allium cepa and Vicia faba. Pesticide Biochem Physiol 93:8–12
  • Sudhakar R, Ninge Gowda KN, Venu G. (2001). Mitotic abnormalities induced by silk dyeing industry effluents in the cell of Allium cepa. Cytologia 66:235–239
  • Suralles J, Xamena N, Creus A, et al. (1995). Induction of micronuclei by five pyrethroid insecticides in whole-blood and isolated human lymphocyte cultures. Mutat Res 341:169–184
  • Udeogalanya AC. (1982). Effect of the systemic fungicide benodanil on the growth and development of six spring barley varieties in the presence or absence of Brown rust infection in the glasshouse. Beitr Trop Landwirtsch Veterinarmed 20:467–474
  • Van Iersel M, Bugbee B. (1996). Effects of benzimidazole fungicides on bedding plants. J Am Soc Hortic Sci 121:1095–1102
  • Van’t Hof J. (1968). The action of IAA and kinetin on the mitotic cycle of proliferative and stationary phase excised root meristem. Exp Cell Res 51:167–176
  • Vanparys P, Vermeiren F, Sysmans M, et al. (1990). The micronucleus assay as a test for the detection of aneugenic activity. Mutat Res 244:95–103
  • Villarini M, Moratti M, Pasquini R, et al. (1998). In vitro genotoxic effects of the insecticide deltamethrin in human peripheral blood leukocytes: DNA damage (‘comet’ assay) in relation to the induction of sister-chromatid exchanges and micronuclei. Toxicology 130:129–139
  • Webster PL, MacLeod RD. (1996). The root apical meristem and its margin. In: Waishel Y, Eshel A, Kafkafi U, eds. Plant roots. The hidden half. 2nd ed. New York: Marcel Dekker, 51–76
  • Weichenthal SC, Moase C, Chan P. (2010). A review of pesticide exposure and cancer incidence in the Agricultural Health Study cohort. Environ Health Perspect 118:1117–1125
  • Yuzbasıoglu D, Celik M, Yılmaz S, et al. (2006). Clastogenicity of the fungicide Afugan in cultured human lymphocytes. Mutat Res 604:53–59
  • Yuzbasıoglu D, Unal F, Sancak C, et al. (2003). Cytological effects of the herbicide racer flurochloridone on Allium cepa. Caryologia 56:97–105
  • Zeljezic D, Garaj-Vrhovac V. (2004). Chromosomal aberrations, micronuclei and nuclear buds induced in human lymphocytes by 2,4-dichlorophenoxyacetic acid pesticide formulation. Toxicology 200:39–47
  • Zijno A, Leopardi A, Marcon F, et al. (1994). Sex chromosome loss and non-disjunction in women: analysis of chromosomal segregation in binucleated lymphocytes. Chromosoma 104:461–467

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