Luo Caiwei, Ai Chunxiao, Yu Yao, Yuan Jianmin
Department of Animal Nutrition and Feed Science, Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.
Department of Animal Nutrition and Feed Science, Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.
Poult Sci. 2025 May 10;104(8):105287. doi: 10.1016/j.psj.2025.105287.
This study investigated the effects of net energy (NE), standard ileal digestible lysine (SID Lys), and amylose/amylopectin (AM/AP) ratios on broiler growth performance using a Box-Behnken design. A total of 936 male Arbor Acres Plus broilers (15-35 days post-hatch) were allocated to thirteen treatments with three factors at three levels including NE (2,000, 2,250, 2,500 kcal/kg), SID Lys (1.00 %, 1.20 %, 1.40 %), and AM/AP ratios (0.17, 0.22, 0.27, composed of different ratios of pea starch and waxy corn starch). Growth performance was measured weekly. At the growth stage of 15-20 d, quadratic relationships between dietary NE (P = 0.038), SID Lys (P = 0.010), AM/AP ratios (P = 0.021), and broiler 20 d body weight (BW), with optimization occurring at 2,303 kcal/kg NE, 1.24 % SID Lys, and an AM/AP ratio of 0.22. The 15-25 d feed-to-gain ratio (F/G) decreased linearly with increasing dietary NE (P = 0.038) and SID Lys (P = 0.010). At the growth stage of 21-27 d, linear increases in broiler 27 d BW (P = 0.007) and 21-27 d body weight gain (BWG) (P = 0.013) were observed with higher dietary SID Lys levels, reaching a peak at 2,500 kcal/kg NE, 1.40 % SID Lys, and an AM/AP ratio of 0.17. The 21-27 d F/G decreased linearly with increasing dietary NE (P < 0.001) and SID Lys (P < 0.001) levels. At the 28-35 d growth stage, a significant interaction between NE and SID Lys levels was observed for 35 d BW (P = 0.016) and 28-35 d BWG (P = 0.007). At 2,500 kcal/kg NE, both 35 d BW and 28-35 d BWG increased with higher SID Lys, whereas at 2,000 kcal/kg NE, they initially increased and then decreased as SID Lys levels rose. There was a significant interaction effect of NE and AM/AP ratio on broiler 28-35 d BWG (P = 0.017). Further quadratic curve fitting of 28-35 d BWG and 15-35 d BWG against dietary SID Lys/NE ratio revealed that 28-35 d BWG and 15-35 d BWG were optimized at dietary SID Lys/NE of 5.68 and 5.80 mg/kcal, respectively. These data indicate balancing dietary NE and SID Lys can optimize broiler growth, while lowering the dietary AM/AP ratio further enhances growth performance, likely due to improved starch digestibility and energy release dynamics. This study provides actionable insights for precision nutrition strategies in broiler production.
本研究采用Box-Behnken设计,研究了净能(NE)、标准回肠可消化赖氨酸(SID Lys)和直链淀粉/支链淀粉(AM/AP)比例对肉鸡生长性能的影响。总共936只雄性爱拔益加肉鸡(孵化后15 - 35天)被分配到13种处理组,这三种因素各有三个水平,包括NE(2000、2250、2500千卡/千克)、SID Lys(1.00%、1.20%、1.40%)以及AM/AP比例(0.17、0.22、0.27,由不同比例的豌豆淀粉和糯玉米淀粉组成)。每周测量生长性能。在15 - 20天的生长阶段,日粮NE(P = 0.038)、SID Lys(P = 0.010)、AM/AP比例(P = 0.021)与肉鸡20天体重(BW)之间呈二次关系,当日粮NE为230 kcal/kg、SID Lys为1时优化发生。24%,AM/AP比例为0.22。15 - 25天的料重比(F/G)随日粮NE(P = 0.038)和SID Lys(P = 0.010)的增加呈线性下降。在2进行线性回归分析,结果表明,在21 - 27天的生长阶段,随着日粮SID Lys水平的提高,肉鸡27天体重(BW)(P = 0.007)和21 - 27天体重增加量(BWG)(P = 0.013)呈线性增加,在NE为2500千卡/千克、SID Lys为1时达到峰值。40%,AM/AP比例为0.17。21 - 27天的F/G随日粮NE(P < 0.001)和SID Lys(P < 0.001)水平的增加呈线性下降。在28 - 35天的生长阶段,观察到NE和SID Lys水平之间对35天BW(P = 0.016)和28 - 35天BWG(P = 0.007)存在显著交互作用。在NE为2500千卡/千克时,35天BW和28 - 35天BWG均随SID Lys水平升高而增加,而在NE为2000千卡/千克时,它们最初随SID Lys水平升高而增加,随后下降。NE和AM/AP比例对肉鸡28 - 35天BWG有显著交互作用(P = 0.017)。对28 - 35天BWG和15 - 35天BWG与日粮SID Lys/NE比例进行进一步的二次曲线拟合表明,28 - 35天BWG和15 - 35天BWG分别在日粮SID Lys/NE为5.68和5.80毫克/千卡时达到优化。这些数据表明,平衡日粮NE和SID Lys可以优化肉鸡生长,而降低日粮AM/AP比例可进一步提高生长性能,这可能是由于淀粉消化率和能量释放动态的改善。本研究为肉鸡生产中的精准营养策略提供了可操作的见解。