Insect wings arose with a genetic circuit that extends the useful range of a BMP morphogen
Huang, A.; Cocconi, L.; Nicholls-Mindlin, B.; Alexandre, C.; Salbreux, G.; Vincent, J.-P.
Show abstract
Morphogens are produced by a subset of cells to trigger a signalling gradient that provides positional information to surrounding tissues. At increasing distances from the source, the dwindling number of morphogen molecules is expected to constrain the useful range of morphogen gradients. We have identified a genetic circuit that counteracts this limitation in developing wings of Drosophila by boosting BMP signalling at the distal end of the gradient without amplifying the signal near the source. This circuit involves Brinker, a transcription factor that represses BMP target genes while itself being repressed by BMP signalling. We suggest that temporal averaging inherent to the production of the inverse Brk gradient contributes to the enhancement of the positional information far from the Dpp source. Despite being a core component of BMP signalling in flies, Brinker is exclusively found in insects, likely in all insect species. Genomic analysis across a wide range of insects and gene expression analysis in limb primordia of the apterygote Thermobia domestica suggests that Brinker is an insect-specific innovation that was subsequently wired into the BMP signalling network in pterygotes, perhaps to enable wing development.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Transcription factor paralogs orchestrate alternative gene regulatory networks by context-dependent cooperation with multiple cofactors 96%
- Asymmetric requirement of Dpp/BMP morphogen dispersal in the Drosophila wing disc 96%
- Muscle cell type diversification driven by extensive gene duplications 96%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.