A major role for zygotichunchbackin patterning theNasoniaembryo
Open Access
- 15 August 2005
- journal article
- Published by The Company of Biologists in Development
- Vol. 132 (16) , 3705-3715
- https://doi.org/10.1242/dev.01939
Abstract
Developmental genetic analysis has shown that embryos of the parasitoid wasp Nasonia vitripennis depend more on zygotic gene products to direct axial patterning than do Drosophila embryos. In Drosophila, anterior axial patterning is largely established by bicoid, a rapidly evolving maternal-effect gene, working with hunchback, which is expressed both maternally and zygotically. Here, we focus on a comparative analysis of Nasonia hunchback function and expression. We find that a lesion in Nasonia hunchback is responsible for the severe zygotic headless mutant phenotype, in which most head structures and the thorax are deleted, as are the three most posterior abdominal segments. This defines a major role for zygotic Nasonia hunchback in anterior patterning, more extensive than the functions described for hunchback in Drosophila or Tribolium. Despite the major zygotic role of Nasonia hunchback, we find that it is strongly expressed maternally, as well as zygotically. Nasonia Hunchback embryonic expression appears to be generally conserved; however, the mRNA expression differs from that of Drosophila hunchback in the early blastoderm. We also find that the maternal hunchback message decays at an earlier developmental stage in Nasonia than in Drosophila, which could reduce the relative influence of maternal products in Nasonia embryos. Finally, we extend the comparisons of Nasonia and Drosophila hunchback mutant phenotypes, and propose that the more severe Nasonia hunchback mutant phenotype may be a consequence of differences in functionally overlapping regulatory circuitry.Keywords
This publication has 61 references indexed in Scilit:
- A self-organizing system of repressor gradients establishes segmental complexity in DrosophilaNature, 2003
- The genes orthodenticle and hunchback substitute for bicoid in the beetle TriboliumNature, 2003
- Nanos Plays a Conserved Role in Axial Patterning outside of the DipteraCurrent Biology, 2003
- Role of Delayed Nuclear Envelope Breakdown and Mitosis in Wolbachia -Induced Cytoplasmic IncompatibilityScience, 2002
- Synergy between the hunchback and bicoid morphogens is required for anterior patterning in DrosophilaCell, 1994
- Use of a yeast site‐specific recombinase to generate embryonic mosaics in DrosophilaDevelopmental Genetics, 1992
- The origin of pattern and polarity in the Drosophila embryoCell, 1992
- A morphogenetic gradient of hunchback protein organizes the expression of the gap genes Krüppel and knirps in the early Drosophila embryoNature, 1990
- Posterior segmentation of the Drosophila embryo in the absence of a maternal posterior organizer geneNature, 1989
- hunchback, a gene required for segmentation of an anterior and posterior region of the Drosophila embryoDevelopmental Biology, 1987