bioRxiv · 10.1101/2025.10.09.681187
Evolution of chromatin accessibility associated with traits of cichlid phenotypic diversity
Abstract
The radiations of cichlid fishes in East African Lakes Victoria, Malawi, and Tanganyika showcase a remarkable example of rapid adaptive speciation, with over 2000 species evolving diverse morphological and ecological adaptations within the last few million years. Understanding the molecular basis of this phenotypic diversity remains a key challenge. Building on prior evidence of gene regulatory network (GRN) rewiring underpinning adaptive traits, we profiled chromatin accessibility (ATAC-seq) and matched transcriptomes across forebrain, retina, liver, and testis tissues in five representative cichlid species using optimised protocols. We show extensive divergence in chromatin accessibility corresponding to phylogenetic lineages and tissue identity, with many regulatory regions exhibiting accelerated nucleotide evolution. Transcription factor binding site (TFBS) variation correlates with both chromatin accessibility and differential gene expression, particularly in genes linked to sensory systems. Building on this, we reconstructed tissue- and species-specific GRNs and show that motif-supported network inference reveals pervasive but tissue-dependent rewiring, with the strongest candidate edges concentrated among accessible, highly expressed genes linked to adaptive traits. By integrating TF footprinting with regulatory motif turnover analyses, we demonstrate that dynamic nucleotide changes are associated with GRN rewiring, concordant with ecological niche and lineage-specific adaptations. Our findings highlight that regulatory variation at conserved and novel TFBSs associates with genes linked to phenotypic innovation across radiating and non-radiating East African cichlids. This study provides foundational epigenomic evidence linking GRN divergence to key mechanisms facilitating rapid adaptive diversification in this iconic vertebrate radiation.
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Mehta, T. K., Man, A. L., Etherington, G., Smith, A., Indermaur, A., Salzburger, W., Joyce, D., Di-Palma, F., Haerty, W. `. 2025-10-10. Evolution of chromatin accessibility associated with traits of cichlid phenotypic diversity. https://doi.org/10.1101/2025.10.09.681187
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