Frontiers in cellular and infection microbiology

Eating Only at Night Improves Gut Health by Aligning Microbe-Linked Serotonin Rhythms with Body Temperature Changes in Growing Rabbits

Updated

Abstract

NRF (night-restricted feeding) reduced the risk of diarrhea in growing rabbits.

  • NRF improved the diurnal rhythm and abundance of beneficial gut microorganisms.
  • The production of beneficial metabolites increased with NRF.
  • NRF reduced the abundance of potential pathogens in the gut.
  • Diurnal rhythms of tryptophan hydroxylase isoform 1 and serotonin were enhanced by NRF.
  • NRF strengthened the diurnal amplitude of body core temperature.
  • The expression of intestinal clock genes and genes related to the intestinal barrier and cell proliferation was promoted by NRF.

Simplified

Key numbers

n = 216
Cumulative Risk of Diarrhea
Total number of rabbits in the study.
R = 0.676
Microbiota Composition Change
Result from ANOSIM analysis comparing gut microbiota.
< 0.05
Diurnal Rhythm of Serotonin
Adjusted p-value indicating significant diurnal rhythm effects.

Full Text

What this is

  • This research investigates how night-restricted feeding (NRF) affects gut health in growing rabbits.
  • The study focuses on synchronizing eating times with natural rhythms to improve gut microbiota and reduce diarrhea risk.
  • 108 weaned rabbits were assigned to daytime feeding or NRF, with various health indicators measured.

Essence

  • Night-restricted feeding significantly improves gut health in growing rabbits by aligning eating times with natural rhythms, enhancing beneficial microbiota, and reducing diarrhea risk.

Key takeaways

  • NRF reduced the cumulative risk of diarrhea in growing rabbits compared to daytime feeding, supporting healthier breeding practices.
  • NRF significantly altered the gut microbiota composition, enriching beneficial microorganisms while decreasing potentially harmful ones.
  • NRF enhanced the rhythmic expression of intestinal clock genes and improved the proliferation of intestinal epithelial cells, contributing to better gut health.

Caveats

  • The study's findings are based on a specific rabbit model, which may limit generalizability to other species or conditions.
  • Further research is needed to explore the underlying molecular mechanisms and confirm long-term effects of NRF on gut health.

Simplified

Funding

Competing interests

The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.
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