Voir la notice de l'article provenant de la source Math-Net.Ru
@article{IZKAB_2013_6-1_a16, author = {N. V. Reutova}, title = {The investigation of mutagenic activity}, journal = {News of the Kabardin-Balkar scientific center of RAS}, pages = {113--117}, publisher = {mathdoc}, number = {6-1}, year = {2013}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/IZKAB_2013_6-1_a16/} }
N. V. Reutova. The investigation of mutagenic activity. News of the Kabardin-Balkar scientific center of RAS, no. 6-1 (2013), pp. 113-117. http://geodesic.mathdoc.fr/item/IZKAB_2013_6-1_a16/
[1] A. G. Underbrink, L. A. Schairer, A. H. Sparrow, “Tradescantia stamen hairs: a radiobiological test system applicable to chemical mutagenesis”, Chemical mutagens. Principles and methods for their detection, v. 3, ed. Hollaender A., Plenum Press, New York, London, 1973, 171–207 pp.
[2] L. A. Schairer, K. C. Sautkulis, “Detection of ambient levels of mutagenic atmospheric pollutants with the higher plant Tradescantia”, Environmental mutagenesis, carcinogenesis and plant biology, v. II, eds. Klekowski E.J., Praeger, 1982, 155–194
[3] J. Van't Hof, L. A. Schairer, “Tradescantia assay system for gaseous mutagens”, Mutat. Res., 1982, no. 99, 303–315
[4] L. W. Mericle, R. P. Mericle, “Genetic nature of somatic mutations for flower color in Tradescantia clone 02”, Radiat. Bot., 1967, no. 7, 449–464
[5] S. Tano, N. Yamaguchi, “Effect of low dose irradiation from I131 on the induction of somatic mutations in Tradescantia”, Radiat. Res., 80:3 (1979), 549–555 | DOI
[6] S. Abraham, “Floral abnormalities and somatic mutations in the staminal hairs of Tradescantia clone 02 induced by effluents from the titanium factory”, Nukleonika, 33:4-6 (1988), 105–115
[7] L. A. Gukasyan, O. S. Nikogosyan, I. P. Kasparova, “Mutagennaya aktivnost promstokov Agarakskogo medno-molibdenovogo kombinata”, Biologicheskii zhurnal Armenii, 42:5 (1989), 455–458
[8] R. G. Osipova, V. A. Shevchenko, “Ispolzovanie tradeskantsii (klony 02 i 4430) v issledovaniyakh po radiatsionnomu i khimicheskomu mutagenezu”, Zhurnal obschei biologii, TXLU:2 (1984), 226–232
[9] V. Yu. Urbakh, Matematicheskaya statistika dlya biologov i medikov, Izd-vo Akademii nauk SSSR, M., 1963, 306 pp.
[10] T. Ohe, T. Vatanabe, K. Vakabayashi, “Mutagens in surface waters: a review”, Mutat. Res., 2004, no. 567, 109–149 | DOI
[11] P. A. White, L. D. Claxton, “Mutagens in contaminated soils: a review”, Mutat Res, 2004, no. 567, 227–345 | DOI
[12] N. V. Reutova, V. A. Shevchenko, “Mutagennoe deistvie neorganicheskikh soedinenii serebra i svintsa na tradeskantsiyu”, Genetika, 28:9 (1992), 89–96
[13] N. V. Reutova, “Izuchenie mutagennogo potentsiala soedinenii medi i modifikatsiya effektov iodistym serebrom”, Genetika, 37:5 (2001), 617–623
[14] M. L. Gogua, Izuchenie genotoksicheskogo potentsiala solei khroma, molibdena, volframa na rastitelnykh test-sistemakh, Diss. na soisk. stepeni k.b.n, M., 2003
[15] N. V. Reutova, “Issledovanie mutagennogo potentsiala tyazhelykh metallov s ispolzovaniem soi (Glycine max. (L.) Merill) linii T219”, Izvestiya KBNTs RAN, 2012, no. 2 (46), 140–144
[16] A. Leonard, “Narusheniya v khromosomakh pod deistviem tyazhelykh metallov”, Nekotorye voprosy toksichnosti ionov metallov, eds. A. Zigel, Kh. M. Zigel, Mir, M., 1993, 228–242