PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 25, 2026Microbiology Spectrum0 citationsOpen Access

Dietary energy level modulates cecal microbiota to influence amino acid composition of local chicken meat

View Full Paper
JLJing LiYXYidan XuQHQingke Huang

Key Points

  • The research aimed to explore how different levels of dietary energy influence cecal microbiota and amino acid composition in chicken meat.
  • Investigated three dietary energy levels: low, medium, and high.
  • Analyzed growth performance, carcass traits, and muscle metabolite profiles.
  • Conducted untargeted and targeted metabolomic analyses.
  • Examined cecal microbiota composition and its relation to muscle amino acid concentrations.
  • Higher dietary energy improved growth and carcass traits.
  • Differences in amino acid composition were linked to dietary energy levels, with high energy providing the most favorable profiles.
  • Cecal microbiota showed distinct alterations corresponding to dietary energy, with specific bacterial taxa positively correlating with amino acid levels.

Abstract

This study comprehensively investigated the effects of different dietary energy levels-low energy (LE, 10.62 MJ/kg), medium energy (ME, 11.87 MJ/kg), and high energy (HE, 13.06 MJ/kg)-on growth performance, meat quality, muscle metabolite profiles, and cecal microbiota in a local Chinese chicken breed (Guangyuan gray chicken). Growth and carcass traits, including interpubic width and liver weight, responded positively to increasing dietary energy. Compared to the ME control, the HE diet significantly increased drip loss, whereas the LE diet reduced both intramuscular fat and protein content (P Spirochaetota and Bacteroides, were positively correlated with muscle amino acid concentrations. Our findings demonstrate that dietary energy level modulated the cecal microbiota, which in turn influenced muscle amino acid deposition and overall meat quality. This study provides a comparative multi-omics perspective for optimizing dietary energy strategies in local chicken production to meet varying market demands for meat quality and nutritional value.IMPORTANCEThis comparative study established a crucial link between dietary energy intake and the final quality of poultry meat through a multi-omics lens. We demonstrate that low, medium, and high dietary energy levels elicit distinct phenotypic, metabolic, and microbial profiles in a local chicken breed. The findings provide a scientific framework for selecting dietary energy strategies tailored to specific market demands: HE for premium quality segments, LE for lean or cost-driven production, and ME for efficient conventional production. We identified specific correlations between the cecal bacteria (Spirochaetota, Bacteroides) and muscle metabolites (key amino acids). Thus, this work offered the scientific data to optimize meat quality through targeted feeding interventions.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69c37bc2b34aaaeb1a67e6f7https://doi.org/10.1128/spectrum.02046-25
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Impact of dietary protein and energy levels on fatty acid profile, gut microbiome and cecal metabolome in native growing chickens2024 · 4 citations
  2. 2Effects of Dietary Metabolizable Energy and Crude Protein Levels on the Nutrient Metabolism, Gut Development and Microbiota Composition in Jingyuan Chicken2025
  3. 3Effects of Dietary Metabolizable Energy and Crude Protein Levels on the Apparent Nutrient Metabolism, Gastrointestinal Development, and Microbial Composition in Jingyuan Chicken2025
  4. 4Impact of Various Ration Energy Levels on the Slaughtering Performance, Carcass Characteristics, and Meat Qualities of Honghe Yellow Cattle2024 · 4 citations
  5. 5Dietary apparent metabolizable energy and crude protein levels influence slaughter performance, meat quality, and amino acid composition in slow-growing Danzhou chicken meat2025