Related Experiment Videos
Genetic characterization of ms (3) K81, a paternal effect gene of Drosophila melanogaster
G K Yasuda1, G Schubiger, B T Wakimoto
1Department of Zoology, University of Washington, Seattle 98195-1800, USA.
Abstract:
The vast majority of known male sterile mutants of Drosophila melanogaster fail to produce mature sperm or mate properly. The ms(3) K81(1) mutation is one of a rare class of male sterile mutations in which sterility is caused by developmental arrest after sperm entry into the egg. Previous studies showed that males homozygous for the K81(1) mutation produce progeny that arrest at either of two developmental stages. Most embryos arrest during early nuclear cycles, whereas the remainder are haploid embryos that arrest at a later stage. This description of the mutant phenotype was based on the analysis of a single allele isolated from a natural population. It was therefore unclear whether this unique paternal effect phenotype reflected the normal function of the gene. The genetic analysis and initial molecular characterization of five new K81 mutations are described here. Hemizygous conditions and heteroallelic combinations of the alleles were associated with male sterility caused by defects in embryogenesis. No other mutant phenotypes were observed. Thus, the K81 gene acted as a strict paternal effect gene. Moreover, the biphasic pattern of developmental arrest was common to all the alleles. These findings strongly suggested that the unusual embryonic phenotype caused by all five new alleles was due to loss of function of the K81+ gene. The K81 gene is therefore the first clear example of a strict paternal effect gene in Drosophila. Based on the embryonic lethal phenotypes, we suggest that the K81+ gene encodes a sperm-specific product that is essential for the male pronucleus to participate in the first few embryonic nuclear divisions.
Insights
The K81 gene in Drosophila melanogaster is crucial for male fertility, acting as a strict paternal effect gene. Loss of K81 function causes embryonic developmental arrest after fertilization, indicating its essential role in early embryogenesis.
Area of Science:
- Developmental Biology
- Genetics
- Drosophila Research
Background:
- Male sterility in Drosophila melanogaster often results from sperm production or mating issues.
- The ms(3) K81(1) mutation presents a rare case of male sterility due to post-fertilization embryonic arrest.
Purpose of the Study:
- To genetically and molecularly characterize new mutations in the K81 gene.
- To confirm the paternal effect and functional role of the K81 gene in Drosophila embryogenesis.
Main Methods:
- Genetic analysis of five new K81 alleles in Drosophila melanogaster.
- Assessment of male sterility and embryonic phenotypes in hemizygous and heteroallelic conditions.
Main Results:
- All five new K81 alleles caused male sterility linked to embryonic developmental defects.
- A consistent biphasic pattern of embryonic arrest was observed across all alleles.
- No other mutant phenotypes were detected, reinforcing the K81 gene's strict paternal effect.
Conclusions:
- The K81 gene functions strictly as a paternal effect gene in Drosophila.
- K81+ likely encodes a sperm-specific product vital for male pronuclear function in early embryonic divisions.
- This study identifies K81 as the first clear example of a strict paternal effect gene in Drosophila.