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Ethyl methanesulphonate induced changes in the differentiation, structure and functions of spermatozoa of the house rat,Rattus rattus L.

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Abstract

Intraperitoneal administration of 500 mg/kg and 625 mg/kg doses of the germ cell mutagen, ethyl methanesulphonate (EMS) in 5 consecutive days to the house rat,Rattus rattus caused a dose-dependent reduction in its body weight, cauda epididymides weight, concentration, motility and percentage of live spermatozoa with simultaneous increase in the percentage of their abnormal forms. Compared to 0·65% spermatozoa with abnormal heads in the cauda epididymidis of untreated control rats, 24·86% and 65·72% such spermatozoa were observed in rats on day 14 post treatment with 500 mg/kg and 625 mg/kg doses of EMS respectively. On day 28 post treatment corresponding values for abnormal spermatozoa were 16·21% and 14·32%. Similarly, spermatozoa with abnormal flagella increased from 0.78% in control rats to 9·25% and 5·75% on day 14 post treatment of 500 and 625 mg/kg doses of EMS respectively and declined to 2·91% and 2·40% on day 28 post treatment. Abnormality in the sperm head was mainly due to acrosomelessness and in the flagellum due to bending at proximal region. However, the main effect of EMS was the development of spermatozoa without or deformed acrosomes which may impair the fertility of rats. Analysis of various stages of differentiation of spermatozoa inthe testis revealed that population of preleptotene and pachytene spermatocytes and of round spermatids showed a gradual decline which became significantly less than controls on day 28 of EMS treatment. Occurrence of abnormal heads of testicular spermatids indicated that the sperm head abnormalities originated in the testis during late spermiogenesis.

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References

  • Abercrombie M 1946 Estimation of nuclear population from microtome sections;Anat. Rec. 94 239–247

    Article  CAS  Google Scholar 

  • Cattanch B M, Pollard C E and Isaacson J H 1968 Ethyl methanesulphonate-induced chromosome breakage in the mouse;Mutation Res. 6 297–307

    Article  Google Scholar 

  • Cattanch B M and Williams C E 1971 A search for chromosome abberations induced in mouse spermatogonia by chemical mutagens;Mutation Res. 13 371–375

    Article  Google Scholar 

  • Chenoweth P J and Ball L 1980 Breeding soundness evaluation in Bulls; InCurrent therapy in theriogenology (ed.) D Mooroco (Philadelphia: Sounders) pp 330–339

    Google Scholar 

  • Fiscor G and Ginsberg L C 1980 The effect of hydroxyurea and mitomycin C on sperm motility in mice;Mutation Res. 70 383–387

    Article  Google Scholar 

  • Gallegos A G, Ramirez L, DeLa Garza S and Revivo F 1987 Ethyl methanesulphonate induced changes in the morphology of the seminiferous epithelium of mice;Anat. Rec. 218 47A abstract

    Google Scholar 

  • Generoso W M, Russel W L, Huff S W, Stout S K and Gosslee D G 1974 Effects of dose on the induction of dominant-lethal mutations and heritable translocations with ethyl methanesulphonate in male mice;Genetics 77 741–752

    CAS  PubMed  PubMed Central  Google Scholar 

  • Generoso W M, Huff S W and Cain K T 1979 Relative rates at which dominant-lethal mutations and heritable translocations were induced by alkylating chemicals in postmeiotic male germ cells of mice;Genetics 93 163–171

    CAS  PubMed  PubMed Central  Google Scholar 

  • Generoso W M, Cain K T, Krishna M, Cunningham E B and Helling C S 1981 Evidence that chromosome rearrangements occur after fertilization following postmeiotic treatment of male mice germ cells withEMS;Mutation Res. 91 137–140

    Article  CAS  Google Scholar 

  • Jeyendran R S, Perx-palaez M, Vandervan H H, Al-Hasani S and Rana N 1986 Evaluation of acrosome on Papanicolaou stained sperm and its relationship to thein vitro fertility capacity of human spermatozoa;Arch.An dro l. 16 119–123

    CAS  Google Scholar 

  • Kaur R and Parshad V R 1994 Effects of dietary selenium on differentiation, morphology, and functions of spermatozoa of the house rat,Rattus rattus L.;Mutation Res. 309 29–35

    Article  CAS  Google Scholar 

  • Larson R E 1980 Infertility in the male dog: inCurrent therapy in theriogenology (ed.) D Mooroco (Philadelphia: Saunders) pp 646–654

    Google Scholar 

  • Marsh R E and Howard W E 1973 Prospects of chemosterilants and genetic control of rodents;Bull. WHO 48 309–316

    CAS  PubMed  Google Scholar 

  • Moutschen J and Collizi A 1975 Absence of acrosome: an eficient tool in mammalian mutation research;Mutation Res. 30 267–272

    Article  CAS  Google Scholar 

  • Saga G A and Owens J G 1983 Evaluation of DNA and protamine by ethyl methanesulphonate in the germ cells of male mice;Mutation Res. 111 227–244

    Article  Google Scholar 

  • Salisbury G W, Hart R G and Lodge J R 1977 The spermatozoan genome and fertility;Am. J. Obstet. Gynecol 128 342–350

    Article  CAS  Google Scholar 

  • Salisbury G W, VanDenmark N L and Lodge J R 1978Physiology of reproduction and artificial insemination of cattle (San Francisco: Freeman)

    Google Scholar 

  • Simula A P and Priestly B G 1992 Species differences in the genotoxicity of cyclophophamide and styrene in threein vivo assays;Mutation Res. 271 49–58

    Article  CAS  Google Scholar 

  • Teaf C M, Bishop J B and Hasbison R D 1990 Potentiation of ethyl methanesulphonate-induced germ cell mutagenesis and depression of glutathione in male reproductive tissues by 1, 2-dibromomethane;Teratogenesis Carcinogenesis Mutagenesis 10 427–438

    Article  CAS  Google Scholar 

  • Topham J C 1980a The detection of carcinogen-induced sperm head abnormalities in mice;Mutation Res. 69 149–155

    Article  CAS  Google Scholar 

  • Topham J C 1980b Chemically-induced transmissible abnormalities in sperm head shape;Mutation Res. 70 109–114

    Article  CAS  Google Scholar 

  • Topham J C 1983Chemical mutagens, principles and methods for their detection Vol. 8 (New York: Plenum)

    Google Scholar 

  • Turner T T and Reich G W 1985 Cauda epididymal sperm motility: a comparison among five species;Biol. Reprod. 32 120–128

    Article  CAS  Google Scholar 

  • Wyrobek A J and Bruce W R 1975 Chemical induction of sperm shape abnormalities in mice and human;Proc. Natl. Acad. Sci. USA 72 4425–4429

    Article  CAS  Google Scholar 

  • Wyrobek A J and Bruce W R 1978 The induction of sperm shape abnormalities in mice and human; inChemical mutagens (eds) A Hollaender and F J DeSerres (New York: Plenum) Vol. 5, pp 257–285

    Google Scholar 

  • Wyrobek A J, Gordon L A, Burkhat J G, Francis M W, Kapp R W, Letz G, Mailing H V, Topham J C and Whorton M D 1983 An evaluation of the mouse sperm morphology test and other sperm tests in non-human mammals;Mutation Res. 115 1–72

    Article  CAS  Google Scholar 

  • Zamboni L 1987 The ultrastructural pathology of the spermatozoa as a cause of infertility: the role of electron microscopy in the evaluation of semen quality;Fertil. Steril. 48 711–734

    Article  CAS  Google Scholar 

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Kaur, R., Parshad, V.R. Ethyl methanesulphonate induced changes in the differentiation, structure and functions of spermatozoa of the house rat,Rattus rattus L.. J. Biosci. 22, 357–365 (1997). https://doi.org/10.1007/BF02703238

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  • DOI: https://doi.org/10.1007/BF02703238

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