Related Experiment Videos
Three different noggin genes antagonize the activity of bone morphogenetic proteins in the zebrafish embryo
M Fürthauer1, B Thisse, C Thisse
1Institut de Génétique et de Biologie Moléculaire et Cellulaire, CNRS, INSERM, ULP, 1 rue Laurent Fries, Illkirch Cedex, 67404, France.
Abstract:
The dorsoventral polarity of the vertebrate embryo is established through interactions between ventrally expressed bone morphogenetic proteins and their organizer-borne antagonists Noggin, Chordin, and Follistatin. While the opposing interactions between Short Gastrulation/Chordin and Decapentaplegic/BMP4 have been evolutionarily conserved in arthropods and vertebrates, there has been up to now no functional evidence of an implication of Noggin in the early patterning of organisms other than Xenopus. We have studied the contribution of Noggin to the embryonic development of the zebrafish. While single-copy noggin genes have been characterized in several vertebrate species, we report that the zebrafish genome harbors three noggin homologues. Overexpression experiments show that Noggin1, Noggin2, and Noggin3 can antagonize ventralizing BMPs. While all three factors have similar biological activities, their embryonic expression is different. The combined expression of the three genes recapitulates the different aspects of the expression of the single-copy noggin genes of other organisms. This suggests that the three zebrafish noggin genes and the single noggin genes of other vertebrates have evolved from a common ancestor and that subsequent differential loss of tissue-specific elements in the promoters of the different zebrafish genes accounts for their more restricted spatiotemporal expression. Finally we show that noggin1 is expressed in the fish organizer and able to dorsalize the embryo, suggesting its implication in the dorsoventral patterning of the zebrafish.
Insights
Zebrafish possess three Noggin genes that antagonize bone morphogenetic proteins, crucial for embryonic development. Noggin1
Area of Science:
- Developmental biology
- Genetics
- Evolutionary biology
Background:
- Dorsoventral patterning in vertebrates relies on bone morphogenetic proteins (BMPs) and their antagonists.
- Noggin's role in early patterning was previously established only in Xenopus.
- Evolutionary conservation of BMP/antagonist interactions exists between arthropods and vertebrates.
Purpose of the Study:
- Investigate the role of Noggin in zebrafish embryonic development.
- Characterize the zebrafish noggin gene family and their functions.
- Determine the contribution of Noggin to zebrafish dorsoventral patterning.
Main Methods:
- Genome analysis to identify zebrafish noggin homologues.
- Overexpression experiments to assess Noggin function.
- Expression pattern analysis during zebrafish embryogenesis.
Main Results:
- Zebrafish genome contains three noggin homologues: Noggin1, Noggin2, and Noggin3.
- All three zebrafish Noggin proteins antagonize ventralizing BMPs.
- Differential expression patterns observed for Noggin1, Noggin2, and Noggin3.
- Noggin1 is expressed in the zebrafish organizer and can dorsalize embryos.
Conclusions:
- The three zebrafish noggin genes likely evolved from a common ancestor.
- Differential promoter elements contribute to the restricted expression of zebrafish noggin genes.
- Noggin1 plays a significant role in zebrafish dorsoventral patterning.