热气候条件下裸颈基因与鸡舍系统交互作用对蛋鸡产蛋量、蛋品质、血液生化指标及免疫力的影响

IF 2.4 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Osama Abou-Emera, Ibrahim Al-Homidan, Gamal Rayan, Moataz Fathi
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引用次数: 0

摘要

目的:家禽生产者使用其他住房安排,如自由放养系统,使鸟类能够表达其自然行为,并增强消费者对家禽产品的信心。自由放养系统为母鸡提供了进入开放空间和更好的空气流通的机会,通过寻找阴凉处或防尘浴等自然行为提供了温度调节的机会。与封闭笼条件相比,这有助于减少热应力的负面影响。在本研究中,我们检测了因裸颈基因(Na)而分离并在两种不同的鸡舍系统中饲养的蛋鸡的生产力。方法:选取540只24周龄的蛋鸡,采用2 × 3因子设计,采用3种基因型(NaNa、NaNa和NaNa)和2种饲养系统(铁笼和散养栏)。在炎热的夏季,对生产性能、鸡蛋品质特征、免疫反应和血液参数进行了为期三个月的评估。结果:结果表明,在高温条件下饲养的鸡中引入Na基因可提高产蛋率、细胞免疫和蛋壳强度。与正常羽毛基因型(NaNa)相比,裸颈基因型(NaNa和NaNa)的血液胆固醇水平和累计破蛋率显著降低。笼子里的母鸡比自由放养的母鸡下的蛋要重得多。散养的蛋鸡蛋黄相对重较高,出壳率较高。此外,与铁丝笼饲养的蛋鸡相比,散养系统饲养的蛋鸡血浆胆固醇水平显著降低。与笼养母鸡相比,散养母鸡产下的鸡蛋蛋黄颜色更深。结论:向散养蛋鸡中引入Na基因有利于提高高温环境下蛋鸡的产蛋量、免疫力和蛋品质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The interaction effects of the naked neck gene and housing system on egg production, egg quality, blood biochemical parameters and immunity of laying hens under hot climate.

Objective: Poultry producers use alternative housing arrangements, such as free-range systems, to allow birds to express their natural behaviors and to enhance consumer confidence in poultry products. Free-range systems provide hens with access to open spaces and better airflow, offering opportunities for thermoregulation through natural behaviors such as seeking shade or dust bathing. Compared to confined cage conditions, this can help reduce the negative effects of heat stress. In this study, we examined the productivity of laying hens segregated for the naked neck gene (Na) and raised in two distinct housing systems.

Methods: A total of 540 laying hens, 24 weeks of age, were randomly assigned to a 2 × 3 factorial design consisting of three genotypes (NaNa, Nana, and nana) and two housing systems (wire cages and free-range pens). Productive performance, egg quality characteristics, immune response, and blood parameters were evaluated over a three-month period during the hot summer season.

Results: The results showed that introducing the Na gene into chickens raised under hot climate conditions improved egg production, cell-mediated immunity, and eggshell strength. A significant reduction in blood cholesterol levels and the cumulative percentage of broken eggs was observed in naked neck genotypes (NaNa and Nana) compared to the normally feathered genotype (nana). Hens kept in cages produced significantly heavier eggs compared to those in the free-range system. Laying hens kept in a free-range system exhibited a higher relative yolk weight and an increased shell percentage. Additionally, a significant decrease in plasma cholesterol levels was found in layers raised in free-range systems compared to those in wire cages. Eggs produced by hens reared in free-range systems also had a darker yellow yolk color compared to those from caged hens.

Conclusion: Introducing the Na gene into laying hens raised in free-range housing could be beneficial for improving egg production, immunity, and egg quality under high ambient temperatures.

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来源期刊
Animal Bioscience
Animal Bioscience AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
5.00
自引率
0.00%
发文量
223
审稿时长
3 months
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