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◆ Poultry science2026-09-08

Sex-dependent responses to posthatch protein-reduced feeding in broilers derived from low-protein-fed hens.

Li Zhang, Yaqin Li, Yurou Pan, Yue Xuan, Keying Zhang, Xuemei Ding, Qiufeng Zeng, Shiping Bai, Jingbo Liu, Yan Liu, Jianping Wang

原始摘要(英文原文)· Original abstract
This study evaluated the sex-dependent responses of broiler offspring derived from low-protein-fed hens to posthatch low-protein feeding, with emphasis on growth efficiency, carcass traits, amino acid metabolism, breast meat quality, and breast muscle transcriptomic profiles. A total of 312 broiler offspring were assigned to a 2 × 2 factorial arrangement with 2 posthatch dietary protein levels and 2 sexes and reared to 84 d. The low-protein diet represented a practical protein-reduced formulation in which Lys, Met, Thr, and Trp were supplemented, whereas Arg, Leu, Ile, and Val were not fully equalized with the normal-protein diet. Posthatch low-protein feeding reduced final body weight and increased feed-to-gain ratio. A significant posthatch dietary protein level × sex interaction was observed for average daily gain (P = 0.031), with the reduction occurring in males but not in females. Low-protein feeding decreased breast muscle yield (P = 0.005) and increased abdominal fat yield (P = 0.002). Serum triglyceride (P = 0.022), uric acid (P = 0.001), and several free amino acids, including Lys (P = 0.026), Thr (P < 0.001), Val (P = 0.009), Leu (P = 0.006), Ile (P = 0.030), Phe (P < 0.001), and Met (P = 0.016), were increased, whereas intestinal morphology was largely unaffected. In breast muscle, low-protein feeding increased Val (P = 0.005) and Pro (P = 0.016) concentrations and altered meat quality traits, including pH45min (P = 0.001), pH24h (P = 0.030), and b* (P < 0.001), with significant posthatch dietary protein level × sex interactions for L* (P = 0.006), a* (P = 0.003), and cooking loss (P < 0.001). Transcriptomic analysis showed sex-specific breast muscle responses, with females showing broader changes in signaling- and stress-related pathways, whereas males showed pathway changes more closely related to amino acid metabolism, protein turnover, and metabolic regulation. In conclusion, among broilers derived from low-protein-fed hens, the posthatch protein-reduced dietary strategy altered growth efficiency, carcass nutrient partitioning, amino acid profiles, breast meat quality, and breast muscle transcriptomic responses in a sex-dependent manner. These findings indicate that sex should be considered when evaluating responses to posthatch protein-reduced feeding in broilers derived from low-protein-fed hens.
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Sex-dependent responses to posthatch protein-reduced feeding in broilers derived from low-protein-fed hens. — 科研速览 Science Skim