Studies of the isozymes produced by alternative alleles at the alcohol dehydrogenase locus of Drosophila melanogaster indicate that the ADH F enzyme is more active but less stable than the ADH S enzyme. The difference in stability is manfested in the responses to various conditions of temperature, p
Genetic control of alcohol dehydrogenase levels inDrosophila
โ Scribed by Gustavo Maroni
- Publisher
- Springer
- Year
- 1978
- Tongue
- English
- Weight
- 745 KB
- Volume
- 16
- Category
- Article
- ISSN
- 0006-2928
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โฆ Synopsis
Among the progeny of Drosophila flies heterozygous for two noncomplementing Adh-negative alleles, two individuals were found that had recovered appreciable alcohol dehydrogenase activity, thereby surviving the ethanol medium used as a screen. The most likely explanation is that these Adh-positive flies are the product of intracistronic recombination within the Adh locus. Judging by the distribution of outside markers, one of the crossovers would have been a conventional reciprocal exchange while the other appears to have been an instance of nonreciprocal recombination. The enzymes produced in strains derived from the original survivors can be easily distinguished from wild-type enzymes ADH-S and ADH-F on the basis of their sensitivity to denaturing agents. None of various physical and catalytic properties tested revealed differences between the enzymes of the survivor strains except that in one of them the level of activity is 55--65% of the other. Quantitative immunological determinations of ADH gave estimates of enzyme protein which are proportional to the measured activity levels. These results are interpreted to indicate that different amounts of ADH protein are being accumulated in the two strains.
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A locus is described that controls levels of mitochondrial dihydroorotate dehydrogenase (EC 1.3.3.1) in Drosophila melanogaster. The effects of alleles of the locus, Dhod, are manifest in preparations from whole organisms as well as in partially purified mitochondrial preparations; however, other mi