The divergence of regulatory regions and gene regulatory network (GRN) rewiring is a key driver of cichlid phenotypic diversity. However, the contribution of miRNA-binding site turnover has yet to be linked to GRN evolution across cichlids. Here, we extend our previous studies by analyzing the selective constraints driving evolution of miRNA and transcription factor (TF)-binding sites of target genes, to infer instances of cichlid GRN rewiring associated with regulatory binding site turnover. Comparative analyses identified increased species-specific networks that are functionally associated to traits of cichlid phenotypic diversity. The evolutionary rewiring is associated with differential models of miRNA- and TF-binding site turnover, dri...
Background: Post-transcriptional regulation is crucial for the control of eukaryotic gene expression...
The molecular genetic mechanisms that underlie phenotypic evolution include mutations within protein...
BackgroundPost-transcriptional regulation is crucial for the control of eukaryotic gene expression a...
Background Seminal studies of vertebrate protein evolution speculated that gene regulatory changes c...
MicroRNAs (miRNAs) play crucial roles in the post-transcriptional control of messenger RNA (mRNA). T...
Dissecting the genetic basis of phenotypic diversity is one of the fundamental goals in evolutionary...
Cichlid fishes provide textbook examples of explosive phenotypic diversification and sympatric speci...
MicroRNAs (miRNAs) play crucial roles in the post-transcriptional control of messenger RNA (mRNA). T...
Cichlid fishes provide textbook examples of explosive phenotypic diversification and sympatric speci...
Cichlid fishes are an ideal model system for studying biological diversification because they provid...
Cichlid fishes are an ideal model system for studying biological diversification because they provid...
Background Post-transcriptional regulation is crucial for the control of eukaryotic gene expression...
Abstract Background Divergence within cis-regulatory sequences may contribute to the adaptive evolut...
Cichlid fishes are famous for large, diverse and replicated adaptive radiations in the Great Lakes o...
Rapid ecological speciation along depth gradients has taken place repeatedly in freshwater fishes, y...
Background: Post-transcriptional regulation is crucial for the control of eukaryotic gene expression...
The molecular genetic mechanisms that underlie phenotypic evolution include mutations within protein...
BackgroundPost-transcriptional regulation is crucial for the control of eukaryotic gene expression a...
Background Seminal studies of vertebrate protein evolution speculated that gene regulatory changes c...
MicroRNAs (miRNAs) play crucial roles in the post-transcriptional control of messenger RNA (mRNA). T...
Dissecting the genetic basis of phenotypic diversity is one of the fundamental goals in evolutionary...
Cichlid fishes provide textbook examples of explosive phenotypic diversification and sympatric speci...
MicroRNAs (miRNAs) play crucial roles in the post-transcriptional control of messenger RNA (mRNA). T...
Cichlid fishes provide textbook examples of explosive phenotypic diversification and sympatric speci...
Cichlid fishes are an ideal model system for studying biological diversification because they provid...
Cichlid fishes are an ideal model system for studying biological diversification because they provid...
Background Post-transcriptional regulation is crucial for the control of eukaryotic gene expression...
Abstract Background Divergence within cis-regulatory sequences may contribute to the adaptive evolut...
Cichlid fishes are famous for large, diverse and replicated adaptive radiations in the Great Lakes o...
Rapid ecological speciation along depth gradients has taken place repeatedly in freshwater fishes, y...
Background: Post-transcriptional regulation is crucial for the control of eukaryotic gene expression...
The molecular genetic mechanisms that underlie phenotypic evolution include mutations within protein...
BackgroundPost-transcriptional regulation is crucial for the control of eukaryotic gene expression a...