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Predominance of cis-regulatory changes in parallel expression divergence of sticklebacks

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Verta,  J-P
Jones Group, Friedrich Miescher Laboratory, Max Planck Society;

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Jones,  FC
Jones Group, Friedrich Miescher Laboratory, Max Planck Society;

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Citation

Verta, J.-P., & Jones, F. (2019). Predominance of cis-regulatory changes in parallel expression divergence of sticklebacks. eLife, 8: e43785. doi:10.7554/eLife.43785.


Cite as: https://hdl.handle.net/21.11116/0000-000A-32C9-B
Abstract
Regulation of gene expression is thought to play a major role in adaptation, but the relative importance of cis- and trans- regulatory mechanisms in the early stages of adaptive divergence is unclear. Using RNAseq of threespine stickleback fish gill tissue from four independent marine-freshwater ecotype pairs and their F1 hybrids, we show that cis-acting (allele-specific) regulation consistently predominates gene expression divergence. Genes showing parallel marine-freshwater expression divergence are found near to adaptive genomic regions, show signatures of natural selection around their transcription start sites and are enriched for cis-regulatory control. For genes with parallel increased expression among freshwater fish, the quantitative degree of cis- and trans-regulation is also highly correlated across populations, suggesting a shared genetic basis. Compared to other forms of regulation, cis-regulation tends to show greater additivity and stability across different genetic and environmental contexts, making it a fertile substrate for the early stages of adaptive evolution.