Host genetic and gut microbiota interactions regulating intramuscular fat deposition in livestock: mechanistic insights and implications for meat quality

Intramuscular fat (IMF) is a major determinant of meat quality, influencing tenderness, juiciness, flavor, oxidative stability, and nutritional value in livestock products.Increasing evidence indicates that complex interactions between host genetics and gut microbial metabolism regulate IMF deposition.This review summarizes current advances in the molecular and metabolic mechanisms linking host genetics and gut microbiota to IMF accumulation and meat quality traits.At the host level, IMF deposition is regulated by coordinated adipogenic networks that involve PPARγ-C/EBPα signaling, lipogenic regulators, nutrient-sensitive pathways, and epigenetic modifications that govern adipocyte differentiation and lipid storage.In parallel, the gut microbiota acts as an important metabolic regulator by producing bioactive metabolites, including short-chain fatty acids and secondary bile acids, which influence adipogenesis, inflammation, nutrient partitioning, and metabolic flexibility.Emerging evidence further demonstrates that microbial metabolites can modulate host transcriptional and epigenetic programs, thereby linking microbial activity with tissue-specific lipid metabolism.Integrative multi-omics approaches are increasingly revealing the mechanistic basis of host-microbiome interactions underlying variation in carcass composition and meat quality across livestock species.This review further highlights the translational potential of precision nutrition, microbiome modulation, and microbiome-informed breeding strategies for sustainable meat production.

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Publication Details

Journal
Animal Bioscience
Published
2026-09-01
DOI
https://doi.org/10.5713/ab.260478
Primary Topic
Meat and Animal Product Quality
Type
article
Field-Weighted Citation Impact
0.00

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Host genetic and gut microbiota interactions regulating intramuscular fat deposition in livestock: mechanistic insights and implications for meat quality

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Host genetic and gut microbiota interactions regulating intramuscular fat deposition in livestock: mechanistic insights and implications for meat quality

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article en

Abstract

Intramuscular fat (IMF) is a major determinant of meat quality, influencing tenderness, juiciness, flavor, oxidative stability, and nutritional value in livestock products.Increasing evidence indicates that complex interactions between host genetics and gut microbial metabolism regulate IMF deposition.This review summarizes current advances in the molecular and metabolic mechanisms linking host genetics and gut microbiota to IMF accumulation and meat quality traits.At the host level, IMF deposition is regulated by coordinated adipogenic networks that involve PPARγ-C/EBPα signaling, lipogenic regulators, nutrient-sensitive pathways, and epigenetic modifications that govern adipocyte differentiation and lipid storage.In parallel, the gut microbiota acts as an important metabolic regulator by producing bioactive metabolites, including short-chain fatty acids and secondary bile acids, which influence adipogenesis, inflammation, nutrient partitioning, and metabolic flexibility.Emerging evidence further demonstrates that microbial metabolites can modulate host transcriptional and epigenetic programs, thereby linking microbial activity with tissue-specific lipid metabolism.Integrative multi-omics approaches are increasingly revealing the mechanistic basis of host-microbiome interactions underlying variation in carcass composition and meat quality across livestock species.This review further highlights the translational potential of precision nutrition, microbiome modulation, and microbiome-informed breeding strategies for sustainable meat production.

Animal Bioscience
Federal University of Technology Owerri (NG), North West Agriculture and Forestry University (CN)
Chinese Universities Scientific Fund
Zero hunger
Openalex Percentile: Top 14%
Meat and Animal Product Quality
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