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Reduction of rodent fertility by plant consumption

With particular reference toZiziphus spina-christi

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Abstract

The present study investigates the possibility that plants used in traditional medicine for birth control may also reduce reproduction in their natural herbivores. Ten species of plants utilized by Bedouins for birth control were selected. These were dried, ground, and mixed with the standard diet and offered to female laboratory rats. Six plant species (60%) were found to reduce reproduction rate in white female rats, and the shoots and fruit of one of the effective species,Ziziphus spina-christi, when offered to its natural herbivore,Meriones tristrami, at the level of 35% of the standard diet, postponed female puberty and significantly reduced offspring survival. Plants that are known to be an effective factor in human birth control may have similar effects on their natural mammalian herbivores. In such cases, when the seeds of the plant are part of the herbivore diet, a certain percentage of the seeds will be dispersed and germinate, while the resulting population control of the animal achieved by its consumption of the seeds will prevent overgrazing, thus maintaining a mutual balance. It is suggested that ethnopharmacological data may assist in uncovering plants that, under the following conditions, have the potential to regulate reproduction in mammalian herbivores (with implications for human reproduction): (1) the plant is an important component of the animal's diet and (2) the active secondary metabolites of the plant directly interact with the physiological systems governing reproduction in the herbivore.

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References

  • Adler, J.H., andTrainin, D. 1960. A hypoestrogenic syndrome in cattle.Refu. Vet. 17(2):108–115.

    Google Scholar 

  • Baily, C., andDanin, A. 1980. Bedouin plant utilization in Sinai and the Negev.Econ. Bot. 35(2):145–162.

    Google Scholar 

  • Bacroft, J.D., andStevens, A. 1977. Theory and Practice of Histopathological Techniques. Churchill Livingstone, Edinburgh.

    Google Scholar 

  • Bradford, M.M. 1976. A rapid and sensitive method for quantities of protein, utilizing the principle of protein dye binding.Anal. Biochem. 72:248–254.

    Google Scholar 

  • Chopra, I.C.,Abrol, B.K., andHanda, K.L. 1960. Medicinal Plants of Arid Zones. I: UNESCO, Arid Zones Research 13. Oberthur, Rennes, France.

  • Crowfoot, G.H., andBoldensperger, L. 1932. From Cedar to Hyssop: A Study in Folklore of Plants in Palestine. Sheldon Press, London.

    Google Scholar 

  • Fahmy, I.R. 1956. The medicinal plants of the Middle-East.Leban. Pharm. J. 4:12–56.

    Google Scholar 

  • Farnsworth, N.R., andBingel, A.S. 1975. Potential value of plants as sources of new antifertility agents.Pharm. Sci. 64:535–394.

    Google Scholar 

  • Friedman, A. 1966. Folk medicine of the eastern Jews in Galilee. MsC thesis. School of Pharmacy, The Hebrew University of Jerusalem, Jerusalem, Israel.

    Google Scholar 

  • Friedman, J., Yaniv, Z., Dafni, A., andPalevitch, D. 1986. A preliminary classification of the healing potential of medicinal plants, based on a rational analysis of an ethnopharmacological field survey among Bedouins in the Negev desert.Isr. J. Ethnopharmacol. 16:275–287.

    Google Scholar 

  • Garfinkel, D. 1958. Studies on pig liver microsomes: 1. Enzymatic and pigment composition of different microsomal fractions.Arch. Biochem. Biophys. 77:493.

    Google Scholar 

  • Levy, S. 1978. Medicine, hygiene and health of Bedouins of South-Sinai. Publ. of the Society for the Protection of Nature in Israel, Tel-Aviv (in Hebrew).

  • Negus, N.C., andBerger, P.J. 1977. Experimental triggering of reproduction in natural population ofMicrotus montana.Science 196:1230–1231.

    Google Scholar 

  • Omura, T., andSato, R. 1964. The carbon monoxide binding pigment of liver microsomes.J. Biol. Chem. 239:2370–2378.

    Google Scholar 

  • Osborne, D.J. 1960. Notes on medicinal and other cases of plants in Egypt.Econ. Bot. 22:165–172.

    Google Scholar 

  • Palevitch, D., Yaniv, Z., Dafni, A., andFriedman, J. 1985. Indigenous plants of Israel as a source for medicines. The National Council for Research and Development, Jerusalem, Israel (in Hebrew).

    Google Scholar 

  • Pinter, A.J., andNegus, N.C. 1965. Effects of nutrition and photoperiod on reproductive Physiology ofMicrotus montana.Am. J. Physiol. 208(4):633–638.

    Google Scholar 

  • Shapira, Z., Terkel, J., Egozi, Y., Nyska, A., andFriedman, J. 1989. Abortifacient potential for the epigeal parts ofPeganum harmala.J. Ethnopharmacol. 27:319–325.

    Google Scholar 

  • Staples, R.E., andGeils, H.H. 1965. An observation on vaginal smear of rat.J. Endocrinol. 32:263–267.

    Google Scholar 

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Shappira, Z., Terkel, J., Egozi, J. et al. Reduction of rodent fertility by plant consumption. J Chem Ecol 16, 2019–2026 (1990). https://doi.org/10.1007/BF01020513

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  • DOI: https://doi.org/10.1007/BF01020513

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