Impact of various high fat diets on gene expression and the microbiome across the mouse intestines

Author:

Martinez-Lomeli Jose,Deol Poonamjot,Deans Jonathan R.,Jiang Tao,Ruegger Paul,Borneman James,Sladek Frances M.

Abstract

AbstractHigh fat diets (HFDs) have been linked to several diseases including obesity, diabetes, fatty liver, inflammatory bowel disease (IBD) and colon cancer. In this study, we examined the impact on intestinal gene expression of three isocaloric HFDs that differed only in their fatty acid composition—coconut oil (saturated fats), conventional soybean oil (polyunsaturated fats) and a genetically modified soybean oil (monounsaturated fats). Four functionally distinct segments of the mouse intestinal tract were analyzed using RNA-seq—duodenum, jejunum, terminal ileum and proximal colon. We found considerable dysregulation of genes in multiple tissues with the different diets, including those encoding nuclear receptors and genes involved in xenobiotic and drug metabolism, epithelial barrier function, IBD and colon cancer as well as genes associated with the microbiome and COVID-19. Network analysis shows that genes involved in metabolism tend to be upregulated by the HFDs while genes related to the immune system are downregulated; neurotransmitter signaling was also dysregulated by the HFDs. Genomic sequencing also revealed a microbiome altered by the HFDs. This study highlights the potential impact of different HFDs on gut health with implications for the organism as a whole and will serve as a reference for gene expression along the length of the intestines.

Funder

University of California Institute for Mexico and the United States

National Institute of Environmental Health Sciences

University of California, Riverside Vice-Chancellor for Research and Economic Development

National Institutes of Health

USDA National Institute of Food and Agriculture

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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