Distinct mechanisms decommission redundant enhancers to facilitate phenotypic evolution
Said-Ahmad, A.; Shimron, N.; Fainitsky, E.; Naik, S.; Roy, S.; Frankel, N.; Prege-Ben Noon, E.
Show abstract
The evolutionary loss of morphological traits is often driven by changes in gene regulation. Many developmental genes are controlled by multiple, redundant enhancers, raising the question of how robust regulatory systems can be dismantled to permit phenotypic transitions. We show that the loss of larval trichomes in Drosophila sechellia resulted from the independent inactivation of four embryonic enhancers of the shavenbaby gene. Each enhancer was extinguished by a distinct mechanism: (1) a large deletion that removed essential sequences, (2) the loss of activator sites and gain of repressor sites, (3) the acquisition of a long-range silencer, and (4) the unmasking of pre-existing repression. Notably, three of these mechanisms relied on repression, pointing to repression as a rapid route for the evolutionary loss of robust regulatory elements. These results show that robustness in gene regulation does not prevent morphological change but instead provides multiple opportunities for mutations to reduce enhancer activity, giving selection many paths to reshape form.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Opportunistic binding of EcR to open chromatin drives tissue-specific developmental responses 97%
- Reenacting a mouse genetic evolutionary arms race in yeast reveals SLXL1/SLX compete with SLY1/2 for binding to Spindlins. 96%
- A Newborn F-box Gene Blocks Gene Flow by Selectively Degrading Phosphoglucomutase in Species Hybrids 95%
Similar papers in this journal
- How enhancers regulate wavelike gene expression patterns: Novel enhancer prediction and live reporter systems identify an enhancer associated with the arrest of pair-rule waves in the short-germ beetle Tribolium 96%
- X-Chromosome Target Specificity Diverged Between Dosage Compensation Mechanisms of Two Closely Related Caenorhabditis Species 95%
- A library of lineage-specific driver lines connects developing neuronal circuits to behavior in the Drosophila Ventral Nerve Cord. 95%
Similar papers in this journal
- Fruitless decommissions regulatory elements to implement cell-type-specific neuronal masculinization 96%
- The SWI/SNF chromatin remodeling assemblies BAF and PBAF differentially regulate cell cycle exit and cellular invasion in vivo 95%
- Bidirectional cooperation between Ubtf1 and SL1 determines RNA Polymerase I promoter recognition in cell and is negatively affected in the UBTF-E210K neuroregression syndrome. 95%
Similar papers in this journal
- A Notch signal required for a morphological novelty in Drosophila has antecedent functions in genital disc eversion 97%
- Distinct roles for canonical and variant histone H3 lysine 36 in Polycomb silencing 97%
- CTCF, BEAF-32 and CP190 are not required for the initial establishment of TADs in early Drosophila embryos, but have locus specific roles 96%
"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.