评估饲喂硫酸盐或氨基酸离子络合铜、锰和锌不同组合的晚产母鸡的鸡蛋质量和生产性能

Poultry Pub Date : 2024-02-26 DOI:10.3390/poultry3010004
Jill R. Domel, G. House, E. Sobotik, G.S. Archer
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引用次数: 0

摘要

膳食中添加铜(Cu)、锰(Mn)和锌(Zn)可通过改变膜结构改善蛋壳质量。本研究旨在比较蛋壳对不同矿物质来源的反应。在这项研究中,60 周龄的蛋鸡(n = 378)被分配到一个 RCBD 中的七个处理之一,每个处理有 18 个重复。处理包括:对照组(基础+硫酸盐矿物质(CuSO4、MnSO4 和 ZnSO4))和基础+氨基酸络合物(AAC)矿物质(AAC Cu、AAC Mn、AAC Zn、AAC Cu + Mn、AAC Mn + Zn、AAC Zn + Cu)。在含有 20ppm MnSO4 和 20ppm ZnSO4 的基础日粮中添加微量元素,以达到 20ppm 铜、60ppm 锰和 60ppm 锌的总体目标浓度。母鸡饲喂处理日粮 15 周,在实验的第 5、10 和 15 周评估产蛋量和鸡蛋质量。在第 10 周和第 15 周期间,对蛋壳、蛋内容物和排泄物进行了铜、锰、锌、钙和磷分析。在产量和鸡蛋质量方面未观察到处理差异(p > 0.05)。排泄物中的矿物质含量存在差异。蛋壳和蛋内容物的矿物质含量在任何时间点都没有差异(p > 0.05)。矿物质来源不影响鸡蛋矿物质沉积和鸡蛋质量指标(p > 0.05)。一些 AAC 微量矿物质提高了锌、钙和锰的保留率,但 AAC 铜增加了铜的排泄。综上所述,饲喂 AAC 微量矿物质不会显著影响产蛋后期的产蛋量或鸡蛋质量。需要进行更多的研究,以证明饲喂 AAC 铜时,铜的排泄量增加是由于生物利用率增加还是其他因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Egg Quality and Performance in Late-Lay Hens Fed Different Combinations of Copper, Manganese, and Zinc Complexed with Sulfate or Amino Acid Ion
Dietary inclusion of copper (Cu), manganese (Mn), and zinc (Zn) can improve egg shell quality through changing the membrane structure. This study aimed to compare the responses of egg shell to different mineral sources. In this study, 60-week-old laying hens (n = 378) were assigned to one of seven treatments with 18 replicates each in an RCBD. Treatments included the following: control (basal + sulfated minerals (CuSO4, MnSO4, and ZnSO4)), and basal + amino acid complexed (AAC) minerals (AAC Cu, AAC Mn, AAC Zn, AAC Cu + Mn, AAC Mn + Zn, AAC Zn + Cu). Trace minerals were added to a basal diet containing 20 ppm MnSO4 and 20 ppm ZnSO4 to achieve overall target concentrations of 20 ppm Cu, 60 ppm Mn, and 60 ppm Zn. The hens were fed the treatment diet for 15 weeks, and egg production and egg quality were assessed during weeks 5, 10, and 15 of the experiment. Egg shells, egg contents, and excreta were analyzed for Cu, Mn, Zn, Ca, and P during weeks 10 and 15. No treatment differences (p > 0.05) were observed for production or egg quality. Differences between excreta mineral content were observed. The mineral content of egg shells and egg contents did not differ (p > 0.05) at any time point. The mineral source did not affect egg mineral deposition and egg quality measures (p > 0.05). Some AAC trace minerals enhanced retention of zinc, calcium, and manganese, although AAC Cu increased Cu excretion. Taken together, feeding AAC trace minerals does not significantly affect egg production or egg quality during the late-lay period. More research is needed to demonstrate whether Cu excretion is increased when feeding AAC Cu due to increased bioavailability or other factors.
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