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M A Seeger

Publications and source records attributed to M A Seeger.

6 recordsLinked to original sources

Test of a semiselective screen for induced aneuploidy in germ cells of Drosophila melanogaster females with structurally normal chromosomes.

A new semiselective screen (only female progeny survive) for induced aneuploidy in germ cells of Drosophila melanogaster (referred to as 20/Q56 for the X-chromosome mutation markers in the parental females) has been validated by recovering cold, colchicine and N,N-dimethylnitrosamine (DMN) induced chromosome gain and loss events in females that contain structurally normal chromosomes. In addition, the spontaneous and induced results from the 20/Q56 assay, which identifies gain events at division I and loss events at divisions I and II of meiosis, were compared with a nonselective (all progeny survive) modified mating scheme that identifies gains and losses at both divisions of oogenesis. Females with the same genotypes are treated in the two mating schemes and are then mated with males that contain different marked Y chromosomes. The spontaneous rates of chromosome gains and losses were not significantly different in the two mating schemes (these rates ranged from 0.008 to 0.022%), supporting previous reports that spontaneous aneuploidy occurs at a higher frequency at division I of meiosis in females of D. melanogaster than at division II. Both the 20/Q56 and modified screens were able to identify significant increases in aneuploidy after adult treatments with cold shock (10 degrees C and 5 degrees C), colchicine (5 ppm and 10 ppm), and DMN (100 ppm). Brood analysis (five 2-day or five 3-day broods) showed that the largest increases in aneuploidy after cold treatment occurred in the first brood, which contains a high proportion of stage 14 oocytes, whereas colchicine induced the highest frequencies in the latter broods and DMN was effective in all but the last brood. Although the 20/Q56 mating scheme identifies gain events only in division I of meiosis whereas the modified mating scheme identifies gains in both divisions, the 20/Q56 scheme is just as effective in identifying induced aneuploidy as is the modified scheme. There were no significant differences in the frequencies of induced gains or losses in the two schemes. These results also suggest that the 3 treatments induced chromosome gain events mainly at division I of oogenesis. Taken together, the results from this study suggest that the 20/Q56 mating scheme in D. melanogaster, which is semiselective and therefore less expensive and time-consuming to perform, is an appropriate test system to screen for chemical induced aneuploidy in germ cells of a higher organism.

Aneuploidy

Molecular analysis of the bicoid gene from Drosophila pseudoobscura: identification of conserved domains within coding and noncoding regions of the bicoid mRNA.

The specification of anterior positional information during Drosophila embryogenesis is largely dependent upon the function of the maternal-effect gene bicoid (bcd). Two aspects of bcd function are particularly striking. First, the bcd protein product forms a gradient during early embryogenesis, which regulates the transcription of at least one zygotic segmentation gene, hunchback, in a concentration dependent manner. Secondly, formation of the bcd protein gradient is dependent upon the specific localization of bcd mRNAs at the anterior end of the oocyte/embryo during oogenesis, a process which requires a cis-acting 625 nucleotide sequence within the 3' untranslated region of the bcd mRNA. We have cloned and sequenced the bcd gene from Drosophila pseudoobscura as a tool in identifying important functional domains within this transcription unit. DNA sequence comparisons reveal: (i) varying degrees of amino acid sequence conservation among the proposed functional domains of the bcd protein, (ii) the conservation of potential RNA secondary structures within the bcd mRNA localization element, and (iii) the maintenance of a short open reading frame within the 5' untranslated leader that may play a role in translational regulation. Finally, the D.pseudoobscura bcd gene partially rescues the phenotype of a bcd- mutation when placed into the D.melanogaster genome by germline transformation. The lack of full phenotypic rescue can be explained in part by the observed improper localization of the D.pseudoobscura bcd mRNA when expressed in D.melanogaster.

Amino Acid Sequence

Characterization of amalgam: a member of the immunoglobulin superfamily from Drosophila.

The immunoglobulin superfamily is a diverse group of proteins that are involved in various aspects of cell surface recognition. Here, we report the characterization of amalgam (ama), a gene in the Antennapedia complex (ANT-C) of D. melanogaster that exhibits amino acid similarity to vertebrate neural cell adhesion molecules and other members of the immunoglobulin superfamily. The putative 333 amino acid ama protein consists of a signal sequence, three immunoglobulin-like domains, and a short slightly hydrophobic carboxy-terminal region. Antibodies against the ama protein reveal that it accumulates on the surface of various mesodermal and neural cells during embryogenesis. The function of this protein remains elusive, as no mutations have been recovered for ama during saturation EMS mutagenesis of this chromosomal region.

Amino Acid Sequence