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[Genetic effects of cosmic radiation in Drosophila melanogaster].

To examine possible effects of space radiation on living organism, we have analyzedtwo types of mutations, sex-linked recessive lethal mutations and somatic mutations, in fruit fly of the species Drosophila melanogaster. Drosophila strains used were wild type strains and a radiation-sensitive strain mei-41. Two different developmental stages of samples were sent into space; young adult males to analyze sex-linked recessive lethal mutations and about 30hr-old larvae to detect somatic mutations in wing epidermal cells. For wild type and mei-41 strains each, about 200 adult male flies and about 6,000 larvae were loaded on space shuttle Endeavour. The male flies returned from space were mated to virgin female flies of a tester strain, and the presence of the lethal mutations was analyzed at F2 generation. The frequencies of sex-linked recessive lethal mutations in flight groups were 2 and 3 times higher for wild type Canton-S and mei-4 1, respectively, than those in ground control groups. Most larvae sent to space emerged as adult flies within about 10 days after the landing. The presence of wing-hair somatic mutations, which give morphological change in hairs growing on the surface of wing epidermal cells, was analyzed under microscope. In wild type strain Muller-5, the frequency of wing hair mutant spots in flight group was about 1.5-fold higher than that in ground control, and in Canton-S-derived wild type strain the frequencies were similar between the two groups. By contrast, for mei-41 strain the mutation frequency was lower in flight group than in control group. The observed higher frequency of lethal mutations in the flight group might be due to a possibility that radiation effects on reproductive cells could be greatly enhanced under micro gravity. However, if this would be the case, we do not have appropriate explanation for the apparent absence of such synergistic effects on somatic wing-hair mutation system.

Abnormalities, Radiation-Induced↗

[Biophysical foundations of the effect of cosmic radiation and accelerator radiation].

This book summaries the results of numerous studies, mainly by Soviet investigators, of the characteristics of radiation effects of high energy cosmic rays and of their simulation by heavy charged particle accelerators, and also of their biological effects. It contains the first systematic presentation of data on specific hadron effects. Facts are given showing the ability of these particles to cause profound local damage in tissues and organs. There is evidence that these particles should be considered one of the main factors limiting the duration of space flights. In the book a generalized kinetic model of radiation-induced cellular damage also is presented. This model allows an explanations of the observed changes in dose related survival with increasing LET and dose-rate, based on microdosimetric conceptions.

Animals↗