Poult Sci. 2017 Aug 1;96(8):2699-2707. doi: 10.3382/ps/pex042.
This study evaluated the mechanical and ultrastructural changes during eggshell formation in laying hens by using the optimal levels of organic and inorganic manganese (Mn). A total of 270 62-wk-old Hy-Line Brown laying hens were fed a basal diet containing 25.1 mg Mn per kg feed for 2 wks, after which they were randomly allocated into 3 groups and fed the basal diet (control) or the basal diet supplemented with 120 mg Mn per kg feed from monohydrate Mn sulfate (an inorganic source of Mn), or 80 mg Mn per kg feed from an amino acid-Mn complex (an organic source of Mn) for 12 wks. For each group, 6 replicates of 15 hens were used with one hen per cage. Dietary Mn supplementation significantly increased eggshell-breaking strength and thickness in laying hens (P < 0.05). In neither was the elasticity of their eggshell membranes, measured during the nucleation and mammillary knob formation stages, affected by dietary Mn compared with the control (P > 0.05), whereas the breaking strength of the eggshells was greater at the linear and terminate deposition stages compared with the control (P < 0.05). Dietary Mn supplementation decreased the width of the mammillary knobs and the proportion of mammillary thickness, and increased the proportion of effective thickness of the whole eggshells (P < 0.05). Ultrastructural changes during the eggshell formation indicated that dietary Mn supplementation increased the nucleation site and mammillary knob densities, decreased the mammillary thickness, and increased the proportion of effective thickness and total thickness of the eggshells compared with the control (P < 0.05). Therefore, dietary Mn supplementation can improve the breaking strength and ultrastructure of the eggshells during their formation, and the mammillary and palisade layers are both crucial structures affected by Mn.
本研究通过使用有机和无机锰(Mn)的最佳水平来评估产蛋母鸡蛋壳形成过程中的机械和超微结构变化。将 270 只 62 周龄的海兰褐产蛋母鸡用含有 25.1mg Mn/kg 饲料的基础日粮喂养 2 周,然后随机分为 3 组,分别用一水硫酸锰(无机 Mn 源)补充 120mg Mn/kg 饲料、用氨基酸-Mn 复合物(有机 Mn 源)补充 80mg Mn/kg 饲料来替代基础日粮,持续 12 周。每组 6 个重复,每个重复 15 只母鸡,每笼 1 只母鸡。饲粮 Mn 补充显著提高了产蛋母鸡的蛋壳破断力和厚度(P < 0.05)。与对照组相比,在成核和乳突形成阶段,其蛋壳膜的弹性均不受饲粮 Mn 的影响(P > 0.05),而在直线和终止沉积阶段,蛋壳的破断力大于对照组(P < 0.05)。饲粮 Mn 补充降低了乳突的宽度和乳突厚度比例,增加了整个蛋壳的有效厚度比例(P < 0.05)。蛋壳形成过程中的超微结构变化表明,与对照组相比,饲粮 Mn 补充增加了成核点和乳突密度,降低了乳突厚度,增加了蛋壳的有效厚度和总厚度比例(P < 0.05)。因此,饲粮 Mn 补充可改善蛋壳形成过程中的破断力和超微结构,乳突和栅状层均为受 Mn 影响的关键结构。