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Yan-Li Liu

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Review Open access Aug 2026

Gut microbiota in poultry: Roles in nutrition, metabolism and production performance.

The gut microbiota plays an important role in nutrient utilization, intestinal homeostasis, immune regulation, and production performance in poultry. Its composition and functional activity are shaped by complex interactions among host species, developmental stage, intestinal segment, diet, genetic background, and rearing environment. This review summarizes current knowledge of the poultry gut microbiota, with particular emphasis on its roles in nutrition, metabolism, and production performance. We first examine microbial composition and spatial distribution across major poultry species, including broiler chickens, laying hens, ducks, geese, and turkeys, and discuss the factors contributing to interspecies and interstudy variation. We then evaluate how dietary components, including fiber, protein, amino acids, and lipids, modulate microbial communities and metabolic pathways. Particular attention is given to microbial fermentation, short-chain fatty acid production, microbial nitrogen metabolism, bile acid transformation, and host-microbiota signaling, which collectively influence nutrient utilization, intestinal barrier function, immune homeostasis, and metabolic regulation. The potential of microbiota-targeted strategies, including probiotics, prebiotics, synbiotics, dietary fiber manipulation, reduced-protein diets, and emerging microbial interventions, to improve feed efficiency, growth performance, carcass characteristics, meat quality, and resilience to environmental stress is also discussed. In addition, the implications of gut microbiota regulation for nitrogen utilization, ammonia emissions, animal welfare, and antibiotic-free production are considered. Despite substantial progress, the translation of microbiome research into practical applications remains limited by inconsistent experimental designs, methodological heterogeneity, insufficient functional validation, and a lack of causal evidence. Integrating multi-omics approaches with controlled intervention studies and standardized experimental frameworks will be essential for defining causal microbiota-host interactions and developing precision microbiota-based strategies. Overall, a functional understanding of the diet-microbiota-host axis may provide new opportunities to improve poultry productivity, health, and sustainability.

Zhu-Ting Chen, Cheng Xin, Shuang Zhang et al. · 0 citations
Open access Aug 2026

Dietary supplementation of Acer truncatum leaf extract alleviates oxidative-stress induced impairment of ovarian function in laying hens via Nrf2-mediated antioxidant defense and VEGF-mediated angiogenesis

By reversing dysregulation of key genes such as VEGFA, KDR, and FN1, ATLE restored core pathways including focal adhesion and ECM–receptor interaction and coordinated processes such as extracellular matrix, angiogenesis, and response to wounding, driving a systemic remodeling of the ovarian reproductive microenvironment toward homeostasis.

Kai-Long Qin, Jun-Jie Ma, Ming-Lu Gao et al. · 0 citations

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