4.8 Article

Diet and feeding pattern modulate diurnal dynamics of the ileal microbiome and transcriptome

期刊

CELL REPORTS
卷 40, 期 1, 页码 -

出版社

CELL PRESS
DOI: 10.1016/j.celrep.2022.111008

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资金

  1. American Heart Association (AHA) Career Development Award [18CDA34110292]
  2. NIH [R01 AG065993, K99HL143277, R01 DK124496, R01 DK125820, P30 CA014195, R01 DK106210, K08 DK102902, R03 DK114536, R21 MH117780, R01 HL148801, R01 EB030134, U01 CA265719, P30 DK120515, P30 DK063491, P50 AA011999, UL1 TR001442]
  3. Frederik Paulsen Chair
  4. AFAR
  5. AHA [16BGIA27760160]
  6. Kavli Institute for Brain and Mind at UC San Diego
  7. Jon I. Isenberg Endowed Fellowship
  8. AASLD Liver Scholar Award
  9. AGA Microbiome Junior Investigator Award
  10. VA Merit BLRD Award [I01 BX005707]
  11. [R01 HL148801-02S1]
  12. [F32 DK113721]

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Compositional oscillations of the gut microbiome and transcriptome in the ileum are disrupted in diet-induced obesity, but time-restricted feeding can partially restore these rhythms and provide metabolic benefits.
Compositional oscillations of the gut microbiome are essential for normal peripheral circadian rhythms, both of which are disrupted in diet-induced obesity (DIO). Although time-restricted feeding (TRF) maintains circa-dian synchrony and protects against DIO, its impact on the dynamics of the cecal gut microbiome is modest. Thus, other regions of the gut, particularly the ileum, the nexus for incretin and bile acid signaling, may play an important role in entraining peripheral circadian rhythms. We demonstrate the effect of diet and feeding rhythms on the ileal microbiome composition and transcriptome in mice. The dynamic rhythms of ileal micro -biome composition and transcriptome are dampened in DIO. TRF partially restores diurnal rhythms of the ileal microbiome and transcriptome, increases GLP-1 release, and alters the ileal bile acid pool and farnesoid X receptor (FXR) signaling, which could explain how TRF exerts its metabolic benefits. Finally, we provide a web resource for exploration of ileal microbiome and transcriptome circadian data.

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