Scinovex
article Open AccessTop 1% cited

High-fat diet alters gut microbiota physiology in mice

The ISME Journal · 2013 · Vol. 8(2) · pp. 295–308
Hannelore DanielAmin Moghaddas GholamiDavid BerryCharles DesmarchelierHannes HahneGunnar LohStanislas MondotPatricia LepageMichael RothballerAlesia WalkerChristoph BöhmMareike WenningMichael WagnerMichaël BlautPhilippe Schmitt‐KopplinBernhard KüsterDirk HallerThomas Clavel

Abstract

The intestinal microbiota is known to regulate host energy homeostasis and can be influenced by high-calorie diets. However, changes affecting the ecosystem at the functional level are still not well characterized. We measured shifts in cecal bacterial communities in mice fed a carbohydrate or high-fat (HF) diet for 12 weeks at the level of the following: (i) diversity and taxa distribution by high-throughput 16S ribosomal RNA gene sequencing; (ii) bulk and single-cell chemical composition by Fourier-transform infrared- (FT-IR) and Raman micro-spectroscopy and (iii) metaproteome and metabolome via high-resolution mass spectrometry. High-fat diet caused shifts in the diversity of dominant gut bacteria and altered the proportion of Ruminococcaceae (decrease) and Rikenellaceae (increase). FT-IR spectroscopy revealed that the impact of the diet on cecal chemical fingerprints is greater than the impact of microbiota composition. Diet-driven changes in biochemical fingerprints of members of the Bacteroidales and Lachnospiraceae were also observed at the level of single cells, indicating that there were distinct differences in cellular composition of dominant phylotypes under different diets. Metaproteome and metabolome analyses based on the occurrence of 1760 bacterial proteins and 86 annotated metabolites revealed distinct HF diet-specific profiles. Alteration of hormonal and anti-microbial networks, bile acid and bilirubin metabolism and shifts towards amino acid and simple sugars metabolism were observed. We conclude that a HF diet markedly affects the gut bacterial ecosystem at the functional level.

Gut microbiota and healthDiet and metabolism studiesMetabolomics and Mass Spectrometry StudiesMetabolomeBiologyGut floraLachnospiraceaeMicrobial metabolismBile acidMetabolomicsMicrobiomeLactobacillusMetabolism

MeSH terms

AnimalsBacteriaCecumMaleMice, Inbred C57BLObesityRNA, Ribosomal, 16SBacterial Physiological PhenomenaProteomeGastrointestinal TractBiodiversityMiceMetabolomeDiet, High-FatMicrobiota
Citations
686
FWCI
14.50
field-weighted impact
References
92
Percentile
99%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.