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有机微量元素通过调节产蛋后期蛋壳形成过程来改善蛋壳质量。

Organic Trace Elements Improve the Eggshell Quality via Eggshell Formation Regulation during the Late Phase of the Laying Cycle.

作者信息

Yang Songfeng, Deng Haibin, Zhu Jiahao, Shi Yiru, Luo Junyi, Chen Ting, Sun Jiajie, Zhang Yongliang, Xi Qianyun

机构信息

Guangdong Provincial Key Laboratory of Animal Nutrition Control, National Engineering Research Center for Breeding Swine Industry, College of Animal Science, South China Agricultural University, No. 483 Wushan Road, Guangzhou 510642, China.

Guangdong Xingtengke Biotechnology Co., Ltd., Zhaoqing 526000, China.

出版信息

Animals (Basel). 2024 May 30;14(11):1637. doi: 10.3390/ani14111637.

Abstract

The quality of eggshells is critical to the egg production industry. The addition of trace elements has been shown to be involved in eggshell formation. Organic trace elements have been found to have higher biological availability than inorganic trace elements. However, the effects of organic trace elements additive doses on eggshell quality during the laying period of commercial laying hens required further investigation. This experiment aims to explore the potential mechanisms of different doses of organic trace elements replacing inorganic elements to remodel the eggshell quality of egg-laying hens during the laying period. A total of 360 healthy hens (Lohmann Pink, 45-week-old) were randomly divided into four treatments, with six replications per treatment and 15 birds per replication. The dietary treatments included a basal diet supplemented with inorganic iron, copper, zinc and manganese at commercial levels (CON), a basal diet supplemented with organic iron, copper, zinc and manganese at 20% commercial levels (LOT), a basal diet supplemented with organic iron, copper, zinc and manganese at 30% commercial levels (MOT), and a basal diet supplemented with organic iron, copper, zinc and manganese at 40% commercial levels (HOT). The trial lasted for 8 weeks. The results of the experiment showed that the replacement of organic trace elements did not significantly affect the production performance of laying hens ( > 0.05). Compared with inorganic trace elements, the MOT and HOT groups improved the structure of the eggshells, enhanced the hardness and thickness of the eggshells, increased the Haugh unit of the eggs, reduced the proportion of the mammillary layer in the eggshell, and increased the proportion of the palisade layer ( < 0.05). In addition, the MOT and HOT groups also increased the enzyme activity related to carbonate transport in the blood, the expression of uterine shell gland-related genes (CA2, OC116, and OCX32), and the calcium and phosphorus content in the eggshells ( < 0.05). We also found that the MOT group effectively reduced element discharge in the feces and enhanced the transportation of iron ( < 0.05). In conclusion, dietary supplementation with 30-40% organic micronutrients were able to improve eggshell quality in aged laying hens by modulating the activity of serum carbonate transport-related enzymes and the expression of eggshell deposition-related genes.

摘要

蛋壳质量对蛋鸡产业至关重要。研究表明,添加微量元素参与蛋壳形成。已发现有机微量元素比无机微量元素具有更高的生物利用率。然而,有机微量元素添加剂量对商品蛋鸡产蛋期蛋壳质量的影响尚需进一步研究。本试验旨在探讨不同剂量有机微量元素替代无机元素对产蛋期蛋鸡重塑蛋壳质量的潜在机制。选取360只健康蛋鸡(罗曼粉,45周龄),随机分为4组,每组6个重复,每个重复15只鸡。日粮处理包括:基础日粮添加商业水平的无机铁、铜、锌和锰(CON);基础日粮添加20%商业水平的有机铁、铜、锌和锰(LOT);基础日粮添加30%商业水平的有机铁、铜、锌和锰(MOT);基础日粮添加40%商业水平的有机铁、铜、锌和锰(HOT)。试验持续8周。试验结果表明,有机微量元素替代对蛋鸡生产性能无显著影响(P>0.05)。与无机微量元素相比,MOT组和HOT组改善了蛋壳结构,提高了蛋壳硬度和厚度,增加了鸡蛋哈氏单位,降低了蛋壳中乳头层比例,增加了栅栏层比例(P<0.05)。此外,MOT组和HOT组还提高了血液中与碳酸盐转运相关的酶活性、子宫壳腺相关基因(CA2、OC116和OCX32)的表达以及蛋壳中的钙和磷含量(P<0.05)。我们还发现,MOT组有效减少了粪便中元素排放,增强了铁的转运(P<0.05)。综上所述,日粮中添加30 - 40%有机微量营养素能够通过调节血清碳酸盐转运相关酶活性和蛋壳沉积相关基因的表达来改善老龄蛋鸡的蛋壳质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f3c/11170995/4e84cf2a2f91/animals-14-01637-g001.jpg

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