Guangdong Provincial Key Laboratory of Animal Nutrition Control, College of Animal Science, South China Agricultural University, Guangzhou 510000, China.
Institute of Integrated Agricultural Science, Qingyuan 511515, China.
Poult Sci. 2018 Apr 1;97(4):1163-1169. doi: 10.3382/ps/pex401.
Two experiments were conducted to investigate the effect of high dietary calcium (Ca) level on growth performance, Ca and phosphorus (P) metabolism, and nutrient utilization in ducklings subjected to normal and low P levels in diets. A completely randomized design was used with a factorial arrangement of 2 total dietary P levels [normal-P (0.60%) and low-P (0.45%) groups] × 4 dietary Ca levels [low-Ca (0.55%), normal-Ca (0.75%), medium-Ca (0.95%) and high-Ca (1.15%) groups)]. Compared to normal-P group, low-P group had lower (P < 0.05) final body weight (BW), average daily gain (ADG), and average daily feed intake (ADFI) and reduced (P < 0.05) serum Ca and P levels, bone Ca, P, and ash content, and bone mineral density in ducklings during the starter period. Under the low-P group, birds from high-Ca group had lower (P < 0.05) final BW, ADG, ADFI, bone ash content, bone mineral density, and the utilization of energy, Ca, and P than those from low-Ca, normal-Ca, and medium-Ca groups. Our results indicate that high-Ca diet induced greater growth suppression and bone mineralization loss in ducklings fed a low-P diet. The aggravated negative effect of high dietary Ca level with a low P level might be related to the elevated serum alkaline phosphatase activity and the reduced utilization of energy, Ca, and P.
两项实验旨在研究高钙(Ca)水平对正常和低磷(P)水平饮食中鸭生长性能、Ca 和 P 代谢以及养分利用率的影响。采用完全随机设计,2 个总膳食 P 水平[正常-P(0.60%)和低-P(0.45%)组]×4 个膳食 Ca 水平[低-Ca(0.55%)、正常-Ca(0.75%)、中-Ca(0.95%)和高-Ca(1.15%)组]的因子排列。与正常-P 组相比,低-P 组的末重(BW)、平均日增重(ADG)、平均日采食量(ADFI)较低(P < 0.05),血清 Ca 和 P 水平、骨骼 Ca、P 和灰分含量以及骨骼矿物质密度降低(P < 0.05)。在低-P 组中,高 Ca 组的鸭末重(BW)、ADG、ADFI、骨骼灰分含量、骨骼矿物质密度和能量、Ca 和 P 的利用率均低于低-Ca、正常-Ca 和中-Ca 组(P < 0.05)。结果表明,低 P 饮食中高 Ca 日粮会导致鸭生长抑制和骨骼矿化损失加剧。高 Ca 水平与低 P 水平结合的加剧的负面效应可能与血清碱性磷酸酶活性升高和能量、Ca 和 P 利用率降低有关。