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[The "image" of the regulatory gene in experiments with Drosophila]
1Institute of Cytology and Genetics, Siberian Division, Russian Academy of Sciences, Novosibirsk, 630090 Russia. chadov@bionet.nsc.ru
Abstract:
The mutants referred to as facultative dominant lethals were selected in the progeny of gamma-irradiated Drosophila males. The mutant males were viable and fertile, though their crosses with females of the yellow line yielded no daughters. The mutations obtained differed from the common mutations by (1) extremely varying penetrance of F1 hybrids from crosses with various lines; (2) the uncertain relationships between the mutant and normal alleles; (3) the different expression in somatic and germ cells; (4) the dependence of the expression on the sex of the parent carrying the donor mutations; (5) the mass morphosis formation and (6) the frequent reversal to the norm. These mutations are assigned to the regulatory group and their specific expression (see above) can be helpful in identifying regulatory gene mutations. We assume that the specific expression of the mutations studied is related to specific properties of the regulatory genes. These properties are as follows: (1) only one out of two homologous regulatory genes located on one homolog is in an active state, (2) in the haploid chromosome set the regulatory gene is represented by several alleles (cys-alleles); (3) only one allele ensures the regulatory gene activity.
Insights
New Drosophila mutations, termed facultative dominant lethals, exhibit unique characteristics. These regulatory gene mutations offer insights into gene regulation and genetic variability.
Area of Science:
- Genetics
- Developmental Biology
Context:
- Facultative dominant lethals were identified in Drosophila melanogaster following gamma irradiation of male germlines.
- These mutants displayed viability and fertility but a complete absence of female offspring when crossed with specific lines.
Purpose:
- To characterize novel mutations in Drosophila melanogaster.
- To investigate the unique properties of these mutations and their potential role in identifying regulatory gene mutations.
Summary:
- The identified mutations exhibit variable penetrance, uncertain allele relationships, differential expression in somatic and germ cells, sex-dependent effects, mass metamorphosis, and frequent reversion to the wild type.
- These characteristics suggest the mutations belong to the regulatory gene group.
- Specific properties of regulatory genes, such as monoallelic expression and multiple alleles (cys-alleles), are hypothesized to underlie the observed mutation expressions.
Impact:
- Provides a framework for understanding regulatory gene function and mutation.
- Highlights the complexity of gene regulation and its impact on development and inheritance.
- Offers potential tools for further research into genetic control mechanisms.