Effects of low doses by different types of radiation on the waxy locus in barley and maize
暂无分享,去创建一个
[1] H. Rossi. Relative biological effectiveness , 1989 .
[2] D. Lindgren,et al. THE RELATIVE DURATION OF THE MEIOTIC STAGES IN POLLEN MOTHER CELLS OF BARLEY , 2009 .
[3] G. Eriksson. Variation in radiosensitivity and the dose effect relationship in the low dose region , 2009 .
[4] G. Eriksson. INDUCTION OF WAXY MUTANTS IN MAIZE BY ACUTE AND CHRONIC GAMMA IRRADIATION , 2009 .
[5] P. Oftedal. RADIOSENSITIVITY OF DROSOPHILA SPERMATOGONIA , 2009 .
[6] D. Lindgren. Sensitivity of premeiotic and meiotic stages to spontaneous and induced mutations in barley and maize , 2009 .
[7] H. Dulieu,et al. Spontaneous and induced reversion rates in a double heterozygous mutant of Nicotiana tabacum var. xanthi n.c. —Dose-response relationship , 1975 .
[8] D. Grahn,et al. Determination of the radiation-induced mutation rate for sex-linked lethals and detrimentals in the mouse. , 1972, Mutation research.
[9] H H Rossi,et al. Mutations Induced in Tradescantia by Small Doses of X-rays and Neutrons: Analysis of Dose-Response Curves , 1972, Science.
[10] H. H. Smith. COMPARATIVE GENETIC EFFECTS OF DIFFERENT PHYSICAL MUTAGENS IN HIGHER PLANTS. , 1972 .
[11] D. Nettancourt. SELF-INCOMPATIBILITY IN BASIC AND APPLIED RESEARCHES WITH HIGHER PLANTS. , 1972 .
[12] A. Sparrow,et al. Power relations as an expression of relative biological effectiveness (RBE) in Tradescantia stamen hairs. , 1971, Radiation research.
[13] A. Sparrow,et al. Relations between phenotypic aberrations and loss of reproductive integrity in Tradescantia stamen hairs , 1971 .
[14] A. Sparrow,et al. Relative biological effectiveness of o. 43 -MeV and lower energy neutrons on somatic aberrations and hair-length in Tradescantia stamen hairs. , 1971, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[15] A. Sparrow,et al. Relative biological effectiveness of x-rays and 0.43-MeV monoenergetic neutrons on somatic mutations and loss of reproductive integrity in Tradescantia stamen hairs. , 1970, Radiation research.
[16] L. Ehrenberg,et al. The mutagenic effect of 90Sr in barley. , 1970, Mutation research.
[17] W. Schull. POPULATION GENETICS AFTER RADIATION EXPOSURE IN MAN. , 1970 .
[18] L. Ehrenberg,et al. The mutagenic effect of low concentrations of ethylene oxide in air. , 2009, Hereditas.
[19] W. Oosterheert,et al. NEUTRON SPECTROMETRY AND DOSIMETRY IN THE SUBCORE FACILITY OF A SWIMMING POOL REACTOR. , 1969 .
[20] P. Oftedal,et al. A theoretical study of mutant yield and cell killing after treatment of heterogeneous cell populations. , 2009, Hereditas.
[21] E. L. Green. Genetic Effects of Radiation on Mammalian Populations , 1968 .
[22] R. Écochard. THERMAL NEUTRON SENSITIVITY OF VICIA FABA MEIOSIS. , 1967 .
[23] L. Ehrenberg,et al. The Dose Dependence of Mutation Rates in the RAD Range, in the Light of Experiments with Higher Plants , 1966 .
[24] G. Eriksson,et al. Variation in radiosensitivity during meiosis of pollen mother cells in maize. , 2009, Hereditas.
[25] W. Russell. STUDIES IN MAMMALIAN RADIATION GENETICS , 1965 .
[26] L. Ehrenberg,et al. Mutation in the waxy character in barley pollen grains following 90Sr-incorporation at low activities , 1964 .
[27] C. Hargrove,et al. Neutron spectrum of an Am241-Be(α, n) source , 1964 .
[28] P. Oftedal. THE RADIOSENSITIVITY OF DROSOPHILA SPERMATOGONIA. I. ACUTE DOSES. , 1964, Genetics.
[29] G. Eriksson. Radiation induced reversions of a waxy allele in barley , 1962 .
[30] O. Nelson. Intracistron Recombination in the Wx/wx Region in Maize , 1959, Science.
[31] N. Morton,et al. The effect of exposure to the atomic bombs on pregnancy termination in Hiroshima and Nagasaki: preliminary report. , 1953, Science.