Qingjia Zeng, Lu Zhang, Yue Xuan, Xuemei Ding, Qiufeng Zeng, Shiping Bai, Xiangbing Mao, Yan Liu, Jianping Wang
Accurate estimation of amino acid (AA) availability is essential for precision poultry nutrition, yet current standards often ignore stage-specific physiological changes in laying hens. This study determined the standardized ileal digestibility (SID) of AA in ten corn samples collected across China to establish stage-specific prediction equations for Lohmann laying hens during peak (40 wk) and late (75 wk) production stages. A total of 792 healthy hens were evaluated in a randomized complete block design (396 hens/stage; 11 treatments/stage; 6 replicates/treatment; 6 hens/replicate). Dietary treatments comprised 10 test diets containing different corn sources as the sole crude protein (CP) source and 1 nitrogen-free diet to estimate basal endogenous AA losses (IAAend). Substantial nutritional variability was observed among corn sources, particularly in acid detergent fiber (ADF, CV = 26.80%), crude fiber (CF, CV = 24.03%), neutral detergent fiber (NDF, CV = 16.08%), and CP (CV = 8.49%). Standardized ileal digestibility coefficients of some AA were significantly higher in peak hens than in late hens (P < 0.05). Specifically, the average SID of Lys declined from 88.67% at peak lay to 75.96% in late hens (P = 0.010), and Met SID decreased from 93.58% to 85.93% (P = 0.016). Multiple linear stepwise regression yielded high-accuracy prediction models (R2 > 0.90) based on corn chemical constituents, such as Met SID at peak lay (R2 = 0.843, P = 0.030) and Lys SID in late hens (R2 = 0.936, P = 0.004). In conclusion, corn AA digestibility is strongly dictated by the physiological laying stage. Integrating these stage-specific prediction equations into commercial feed formulation tools can enhance AA utilization efficiency, reduce nitrogen excretion, and optimize feed costs for commercial egg producers.