Regulatory diversity contributes to a divergent transcriptional response to dietary changes in mammals

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Abstract

BACKGROUND Regulatory innovation is central to the evolution of species. Different nutritional sources are one environmental pressure that can lead to selection for novel regulatory elements. Dietary composition changes, including exposure to “western” diets with excess fat and sugar content, can lead to transcriptional regulatory changes in the liver. In order to investigate how transcriptional regulatory changes in response to a high fat diet diverge across species, we profiled chromatin accessibility, histone modifications and the transcriptome in livers of rhesus macaques and mice fed high fat and normal diets. RESULTS While the majority of elements exhibiting changes in chromatin accessibility in response to a high fat diet are enriched for similar transcription factors across species, the loci that change are mostly species specific. These unique responsive regulatory elements are largely derived from transposable elements and are enriched for liver-specific transcription factors, such as HNF4α. Furthermore, the majority of genes that respond to a high fat diet in rhesus macaques do not have a shared response in mice and are proximal to regulatory elements that display changes in chromatin accessibility only in rhesus macaques. CONCLUSIONS Our study demonstrates that most of the liver regulatory elements that exhibit changes in chromatin accessibility in response to a high fat diet do so in a species-specific manner. These findings illustrate how a similar environmental stimulus can drive a divergent chromatin and transcriptional responses in evolutionary distinct mammalian species.

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