Reciprocal Effects of Hyper- and Hypoactivity Mutations in the Drosophila Pattern Gene torso
- 24 February 1989
- journal article
- research article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 243 (4894) , 1062-1066
- https://doi.org/10.1126/science.2922596
Abstract
In Drosophila, five "terminal" polarity genes must be active in females in order for them to produce embryos with normal anterior and posterior ends. Hypoactivity mutations in one such gene, torso, result in the loss of the most posterior domain of fushi tarazu expression and the terminal cuticular structures. In contrast, a torso hyperactivity mutation causes the loss of central fushi tarazu expression and central cuticular structures. Cytoplasmic leakage, transplantation, and temperature-shift experiments suggest that the latter effect is caused by abnormal persistence of the torso product in the central region of the embryo during early development. Thus, the amount and timing of torso activity is key to distinguishing the central and terminal regions of the embryo. Mutations in the tailless terminal gene act as dominant maternal suppressors of the hyperactive torso allele, indicating that the torso product acts through, or in concert with, the tailless product.This publication has 24 references indexed in Scilit:
- Function of torso in determining the terminal anlagen of the Drosophila embryoNature, 1988
- Regulation of the Drosophila segmentation gene hunchback by two maternal morphogenetic centresNature, 1988
- Involvement of the pumilio gene in the transport of an abdominal signal in the Drosophila embryoNature, 1987
- The influence on the blastoderm fate map of maternal-effect genes that affect the antero-posterior pattern in DrosophilaGenes & Development, 1987
- hunchback, a gene required for segmentation of an anterior and posterior region of the Drosophila embryoDevelopmental Biology, 1987
- Control of bithorax complex functions by the segmentation gene fushi tarazu of D. melanogasterCell, 1986
- Maternal control of Drosophila segmentation gene expressionNature, 1986
- Developmental analysis of the torso-like phenotype in Drosophila produced by a maternal-effect locusDevelopmental Biology, 1986
- Spatial distribution of transcripts from the segmentation gene fushi tarazu during Drosophila embryonic developmentCell, 1984
- The influence of temperature on the development of a Mendelian characterJournal of Experimental Zoology, 1915