Cytogenetic effects of three commercially formulated pesticides on somatic and germ cells of Allium cepa
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  • 作者:Aashiq H. Kuchy ; Aijaz A. Wani…
  • 关键词:Allium cepa ; Endosri ; Nuvan ; Kvistin ; Mitotic index ; Meiotic aberrations
  • 刊名:Environmental Science and Pollution Research
  • 出版年:2016
  • 出版时间:April 2016
  • 年:2016
  • 卷:23
  • 期:7
  • 页码:6895-6906
  • 全文大小:741 KB
  • 参考文献:Abdelsalam AZE, Hassan HZ, El-Domyati M, Eweda MA, Bahieldin A, Ibrahim SA (1993) Comparative mutagenic effects of some aromatic compounds using different eukaryotic systems. Egypt. J Genet Cytol 22:129–153
    Akyil D, Ozkara A, Erdogmus SF, Eren Y, Konuk M, Saglam E (2015) Evaluation of cytotoxic and genotoxic effects of Benodanil by using Allium and Micronucleus assays. Drug Chem Toxicol 3:1–6
    Amer AS, Ali ME (1986) Cytological effects of pesticides, XVII. Effect of the insecticide dichlorvos on root-mitosis on Vicia faba plant. Cytologia 51:21–25CrossRef
    Amer SM, Farah OR (1974) Cytological effects of pesticides. VI. Effect of the insecticide roger on the mitosis of Vicia faba and Gossypium barbadense. Cytologia 39:507–514
    Ananthakrishnan M, Kumarasamy K, Antony AS (2013) Genotoxic effects of furadan and enodosulphan on (Allium cepa) root tips. Asian J Pharmac Clin Res 6:126–131
    Antonsiewicz D (1990) Analysis of the cell cycle in the root meristem of Allium cepa under the influence of Ledakrin. Folia Histochem Cytobiol 28:79–96
    Ateeq B, Farah MA, Niamat AM, Waseem A (2002) Clastogenicity of pentachlorophenol, 2,4-D and butachor evaluated by Allium root tip test. Mutat Res 514:105–113CrossRef
    Badr A (1986) Effect of the s-triazine herbicide terbutryn on mitosis chromosomes and nucleic acids in root tips of Vicia faba. Cytologia 51:571–578CrossRef
    Badr A, Ghareeb A, El-Din HM (1992) Cytotoxicity of some pesticides in mitotic cells of Vicia faba roots. Egyptian Journal of Applied Sciences 7:457–468
    Bag D (2000) Pesticides and health risks. Econ Polit Wkly 6:20–21
    Bennet MD (1977) Heterochromatin, aberrant endosperm nuclei and grain shriveling in wheat-rye genotypes. Heredity 39:411–419CrossRef
    Bhat TA, Sharma M, Anis M (2007) Comparative analysis of meiotic aberrations induced by Diethylsulphate and Sodium Azide in broad bean (Vicia faba L.). Asian J Plant Sci 6:1051–1057CrossRef
    Bhat AR, Wani MA, Kirmani AR (2010) Brain cancer and pesticide relationship in orchard farmers of Kashmir. Indian Journal of Occupational and Environmental Medicine 14:3CrossRef
    Bhattacharjee SK (1953) Cytogenetics of Lens esculenta Monesch. Caryologia 5:159–166CrossRef
    Bingham SA (2000) Diet and colorectal cancer prevention. Biochem Soc Trans 28:12–16CrossRef
    Bolognesi C, Morasso G (2000) Genotoxicity of pesticides: potential risk for consumers. Trends Food Sci Technol 11:182–187CrossRef
    Borboa L, De la Torre C (1996) The genotoxicity of Zn (II) and Cd (II) in Allium cepa root meristematic cells. New Phytol 134:481–486CrossRef
    Chaima S, Gerard L, Ezzeddine F, Pascale G (2012) Exposure of Vicia faba to sulcotrione pesticide induced genotoxicity. Pestic Biochem Physiol 103:9–14CrossRef
    Chand R, Birthal PS (1997) Pesticide use in Indian agriculture in relation to growth in area and production and technological change. Indian Journal of Agricultural Economics 52:488–498
    Chauhan LKS, Sundararaman V (1990) The effect of substituted urea on plant cells I. Cytological effects of isoproturon on the root meristem cells of Allium cepa. Cytologia 55:91–98CrossRef
    Chauhan LKS, Saxena PN, Sundararaman V, Gupta SK (1998) Diuron induced cytological and ultrastructural alterations in the root meristem cells of Allium cepa. Pestic Biochem Physiol 62:152–163CrossRef
    Chauhan LKS, Saxena PN, Gupta SK (1999) Cytogenetic effects of cypermethrin and fenvalerate on the root meristem cells of Allium cepa. Environ Exp Bot 42:181–189CrossRef
    Crasta K, Ganem NJ, Dagher R, Lantermann AB, Ivanova EV et al (2012) DNA breaks and chromosome pulverization from errors in mitosis. Nature 482:53–58CrossRef
    Crosby DG (1982) Pesticides as environmental mutagens. In: Fleck RA, Hollander A (eds) Genetic toxicology: an agricultural perspective. Plenum Press, New York, London, pp 201–218CrossRef
    Darlington CD, McLeish J (1951) Action of maleic hydrazide on the cell. Nature 167:407–408CrossRef
    Dubois M, Pfohl-Leszkowicz A, Waziers ID, Kremers P (1996) Selective induction of the CYP3A family by endosulfan and DNA-adduct formation in different hepatic and heptoma cells. Environmental Toxicology Pharmacology 1:249–256CrossRef
    Elghamery AA, Elnahas AI, Mansour MM (2000) The action of atrazine herbicide as an inhibitor of cell division on chromosomes and nucleic acids content in root meristems of Allium cepa and Vicia faba. Cytologia 55:209–215
    Elghamery AA, Elkholy MA, Elyousser A (2003) Evaluation of cytological effects of Zn2+ in relation to germination and root growth of Nigellasativa L. and Triticum aestivum L. Mutat Res 537:29–41CrossRef
    El-Khodary S, Habib AA, Haliem A (1990) Effects of the herbicide tribunal on root mitosis of Allium cepa. Cytologia 55:209–215CrossRef
    Eren Y, Erdogmus SF, Akyıl D, Ozkara A (2014) Mutagenic and cytotoxic activities of benfuracarb insecticide. Cytotechnology. doi:10.​1007/​s10616-014-9811-3
    Evans HJ, Meary GJ, Tomkinson SN (1957) The use of colchicines as an indicator of mitotic rate in broad bean root meristem. J Genet 55:487CrossRef
    Fernandes TCC, Mazzeo DEC, Marin-Morales MA (2007) Mechanism of micronuclei formation in polyploidizated cells of Allium cepa exposed to trifluralin herbicide. Pestic Biochem Physiol 88:252–259CrossRef
    Fiskesjo G (1979) Mercury and selenium in a modified Allium test. Hereditas 91:169–178CrossRef
    Fiskesjo G (1981) Allium test on cupper in drinking water. Vatten 37:232–240
    Fiskesjo G (1985) Allium test on river water from Braan and Sexan before and after closure of a chemical factory. Ambio 14:99–103
    Fisun K, Rasgele PG (2009) Genotoxic effects of Raxil on root tips and anthers of Allium cepa L. Caryologia 62:1–9CrossRef
    Gari SH, Sabir JS, Baeshin NA (1998) Cytotoxic and genotoxic effects of cadmium chloride in root meristems of Vicia faba. Proceeding of the International Congress on Molecular Genetics 1:95–100
    Gaulden ME (1987) Hypothesis: some mutagens directly alter specific chromosomal proteins to produce chromosome stickiness. Mutagenesis 2:357–365CrossRef
    Grace C, Muraleedharan V, Swami Nathan T, Ranghhavi D (2007) Use of pesticides and its impact on human health: a case of farmers in South Asia, Madras, Indian Institute of Technology
    Grant WF (1994) The present status of higher plant bioassays for the detection of environmental mutagens. Mutat Res 310:175–185CrossRef
    Grant WL, Lee HG, Harney PM (1960) Cytogenetic effects of malic hydrazide treatment of tomato seed. Call J Gellet Cytol 2:162–174
    Grover IS, Kaur S (1999) Genotoxicity of wastewater samples from sewage and industrial effluent detected by the Allium root anaphase aberration and micronucleus assays. Mutat Res 426:183–188CrossRef
    Gupta P (2004) Pesticide exposure-Indian scene. J Technol 198:118–119
    Haiba AAA, Abd El-Hamid NR, Abd El-Hady EAA, Al-Ansary EMF (2011) Cytogenetic effect of insecticide telliton and fungicide dithane M-45 on meiotic cells and seed storage proteins of Vicia faba. Journal of American Science 7:1
    Haliem AS (1990) Cytological effect of the herbicide sencorer on mitosis of A. cepa. Egypt Journal of Botany 33:93–104
    Hidalgo A, Gonzalez-Reyes JA, Navas P, Garcia-Herdugo G (1989) Abnormal mitosis andgrowth inhibiton in Allium cepa roots induced bypropham and chlorpropham. Cytobios 57:7–14
    Ji BT, Silverman DT, Stewart PA et al (2001) Occupational exposure to pesticides and pancreatic cancer. Am J Ind Med 39:92–99CrossRef
    Kaltsikes PJ (1984) Breeding vegetable varieties resistant to diseases. Proc. 3rd Meeting on Protected Vegetables and Flowers May 911, Heraklion, Crete. (Abstract)., p 60
    Kontek R, Osiecka R, Kontek B (2007) Clastogenic and mitodepressive effects of the insecticide dichlorvos on root meristems of Vicia faba. J Appl Genet 48:359–361CrossRef
    Levan A (1938) The effect of colhicine on root mitoses in Allium. Hereditas 24:471–486CrossRef
    Liu D, Jiang W, Li M (1992) Effects of trivalent and hexavalent chromium on root growth and cell division of Allium cepa. Hereditas 117:23–29CrossRef
    Maluszynska J, Juchimiuk J (2005) Plant genotoxicity: a molecular cytogenetic approach in plant bioassays. Archeology and Hygiene Toxicology 56:177–184
    Marcano L, Carruyo I, Del Campo A, Montiel X (2004) Cytotoxicity and mode of action of maleichydrazide in root tips of Allium cepa L. Environ Res 94:221–226CrossRef
    Mishra M, Sharma S, Shukla AK, Kumar R, Dwivedi UN, Chowdhuri DK (2014) Genotoxicity of dichlorvos in strains of Drosophila melanogaster defective in DNA repair. Mutat Res 766:35–41CrossRef
    Nagpal A, Grover IS (1994) Genotoxic evaluation of systemic pesticides in Allium cepa L. mitotic effects. Nucleus 37:99–105
    Odeigah PGC, Nurudeen O, Amud O (1997) Genotoxicity of oil field wastewater in Nigeria. Hereditas 126:161–167CrossRef
    Onwuamah CK, Ekama SO, Audu RA, Ezechi OC, Poirier MC, Odeigah PGC (2014) Exposure of Allium cepa root cells to zidovudine or Nevirapine induces cytogenotoxic changes. Plos One 9(e90296):1–7
    Osterberg R, Persson D, Bjursell G (1997) The condensation of DNA by chromium (III) ions. Journal of Bimolecular Structure and Dynamics 2:285–290CrossRef
    Ozkara A, Akyl D, Eren Y (2014) Potential cytotoxic effect of Anilofos by using Allium cepa assay. Cytotechnology DOI. doi:10.​1007/​s10616-014-9716-1
    Pagliarini MS (2000) Meiotic behavior of economically important plant species: the relationship between fertility and male sterility. Genet Mol Biol 23:997–1002CrossRef
    Panda BB, Sahu UK (1985) Induction of abnormal spindle function and cytokinesis inhibition in mitotic cells of Allium cepa by the organophosphorus insecticide fensulfotion. Cytobios 42:147–155
    Patil BC, Bhat TGI (1992) A comparative study of MH and EMS in the induction of chromosomal aberrations on lateral root meristem in Clitoria termata L. Cytologia 57:259–264CrossRef
    Rank J (2003) The method of Allium-anaphase-telophase chromosome aberration assay. Ekologia 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 methane sulfonate. Mutat Res 390:121–127CrossRef
    Rank J, Nielson MH (1994) Evaluation of the Allium anaphase-telophase test in relation to genotoxicity screening of industrial wastewater. Mutat Res 312:17–24CrossRef
    Ribas G, Surrales J, Carbonell E, Xamena N, Creus A, Marcos R (1996) Genotoxicity of the herbicides alachlor and maleic hydrazide in cultured human lymphocytes. Mutagenesis 11:221–227CrossRef
    Richmond DV, Phillips A (1975) The effect of benomyl and carbendazim on mitosis in hyphae of Botrytis cinerea Pers. ex Fr. and roots of Allium cepa L. Pestic Biochem Physiol 5:367–379CrossRef
    Saxena PN, Chauhan LKS, Gupta SK (2005) Cytogenetic effects of commercial formulation of cypermethrin in root meristem cells of Allium sativum: spectroscopic basis of chromosome damage. Toxicology 216:244–252CrossRef
    Sharma CB (1983) Plant meristems as monitors of genetic toxicology of environmental chemicals. Curr Sci 52:1000–1002
    Sharma S, Vig AP (2012) Genotoxicity of Atrazine, Avenoxan, Diuron and Quizolofop-P-ethyl herbicides using the Allium cepa root chromosomal aberration assay. Terrestrial and Aquatic Environmental Toxicology 6:90–95
    Sinha U (1979) Cytomorphological and macromolecular changes induced by p-flurophenylalanine in Allium cepa and Triticale. Journal of Cytologia and Genetics 14:198
    Sinha SSN, Singh VK (1982) Radiation studies in tens culinaris: a comparative study of meiotic aberrations induced by acute and chronic gamma radiations. Cytologia 47:457–463CrossRef
    Smaka-kincl V, Stegnar P, Lovka M, Toman MJ (1996) The evaluation of waste, surface and ground water quality using the Allium test procedure. Mutat Res 368:171–179CrossRef
    Srivastava K, Mishra KK (2009) Cytogenetic effects of commercially formulated atrizine on somatic cells of Allium cepa and Vicia faba. Pestic Biochem Physiol 93:8–12CrossRef
    Sta C, Ledoigt G, Ferjani E, Goupil P (2012) Exposure of Vicia faba to sulcotrione pesticide induced genotoxicity. Pestic Biochem Physiol 103:9–14CrossRef
    USEPA (United States Environmental Protection Agency), Dichlorvos, TEACH Chemical Summary U.S. EPA, Toxicity and Exposure Assessment for Children’s http://​www.​epa.​gov/​teach/​ . (2007). pp. 1–13.
    Van’t Veer P, Jansen MC, Klerk M, Kok FJ (2000) Fruits and vegetables in the prevention of cancer and cardiovascular diseases. Public Health Nutr 3:103–107
    Vettorazzi G (1976) Carbamate and organophosphate pesticides used in agriculture and public health. Pages 1-44. In: Gunther FA (ed) Residue reviews. Vol.63. Springer-Verlag, New York, p 193
    World Health Organization (1993) Environmental health criteria 149. Carbendazim. WHO, Geneva
    Wuu KD, Grant WF (1967) Chromosomal aberrations induced by pesticides in meiotic cells of barley. Cytologia 32:31CrossRef
    Yildiz M, Arikan ES (2008) Genotoxicity testing of quizalofop-P-ethyl herbicide using the Allium cepa anaphase-telophase chromosome aberration assay. Caryologia 61:45–52CrossRef
    Yin H, Betzendahl I, Eichenlaub-Ritter U (1998) Trichlorfon exposure, spindle formation and non-disjunction in mammalian oocytes. Chromosoma 107:514–522CrossRef
  • 作者单位:Aashiq H. Kuchy (1)
    Aijaz A. Wani (2)
    Azra N. Kamili (1)

    1. Department of Environmental Science/Centre of Research for Development, University of Kashmir, Srinagar (J&K), 190006, India
    2. Department of Botany, University of Kashmir, Srinagar (J&K), 190006, India
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Environment
    Environment
    Atmospheric Protection, Air Quality Control and Air Pollution
    Waste Water Technology, Water Pollution Control, Water Management and Aquatic Pollution
    Industrial Pollution Prevention
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1614-7499
文摘
Cytological effects of Endosri-ES (endosulfan), Nuvan-NU (dichlorvos), and Kvistin-KS (carbendazim) were evaluated on mitotic and meiotic cells of Allium cepa. Test concentrations were chosen by calculating EC50 values of formulated ES, NU, and KS, which turned to be 60, 200, and 500 ppm (parts per million), respectively. Cytological studies were undertaken on root meristem cells of A. cepa using EC50, 1/2 × EC50, and 2 × EC50 of these pesticides for 24 and 48 h. Similarly, a meiotic study was conducted by applying the pesticides at the aforesaid concentrations from seedling to bud stage. A set of onion bulbs exposed to tap water was run parallel for negative control and maleic hydrazide (112.09 ppm) as positive control. During the study period, mitotic index (MI) decreased at all the pesticide concentrations compared to the negative control. Among various chromosomal aberrations, chromatin bridges, breaks, stickiness, laggard, vagrant chromosomes, fragments, C-mitosis, multipolarity, ring chromosome as well as micronuclei were observed in mitotic preparations. In contrast, meiotic aberrations revealed comparatively less frequency of chromosomal aberrations and the most frequent were lagging chromosome, stray bivalents, secondary association, chromatin bridge, disturbed anaphase, and stickiness. Comparative analysis of the pesticides showed that NU was highly toxic to plant cells than KS, while as ES showed intermediate effects between the two. Further, our study revealed that all the three pesticides produce genotoxic effects which can cause health risks to the human populations.

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