...
首页> 外文期刊>Poultry Science >The effects of long (C20/22) and short (C18) chain omega-3 fatty acids on keel bone fractures, bone biomechanics, behavior, and egg production in free-range laying hens
【24h】

The effects of long (C20/22) and short (C18) chain omega-3 fatty acids on keel bone fractures, bone biomechanics, behavior, and egg production in free-range laying hens

机译:长链(C20 / 22)和短链(C18)omega-3脂肪酸对散养母鸡龙骨骨折,骨生物力学,行为和产蛋的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Keel fractures in the laying hen are the most critical animal welfare issue facing the egg production industry, particularly with the increased use of extensive systems in response to the 2012 EU directive banning conventional battery cages. The current study is aimed at assessing the effects of 2 omega-3 (n3) enhanced diets on bone health, production endpoints, and behavior in free-range laying hens. Data was collected from 2 experiments over 2 laying cycles, each of which compared a (n3) supplemented diet with a control diet. Experiment 1 employed a diet supplemented with a 60: 40 fish oil-linseed mixture (n3: n6 to 1.35) compared with a control diet (n3: n6 to 0.11), whereas the n3 diet in Experiment 2 was supplemented with a 40: 60 fish oil-linseed (n3: n6 to 0.77) compared to the control diet (n3: n6 to 0.11). The n3 enhanced diet of Experiment 1 had a higher n3: n6 ratio, and a greater proportion of n3 in the long chain (C20/22) form (0.41 LC: SC) than that of Experiment 2 (0.12 LC: SC). Although dietary treatment was successful in reducing the frequency of fractures by approximately 27% in Experiment 2, data from Experiment 1 indicated the diet actually induced a greater likelihood of fracture (odds ratio: 1.2) and had substantial production detriment. Reduced keel breakage during Experiment 2 could be related to changes in bone health as n3-supplemented birds demonstrated greater load at failure of the keel, and tibiae and humeri that were more flexible. These results support previous findings that n3-supplemented diets can reduce fracture likely by increasing bone strength, and that this can be achieved without detriment to production. However, our findings suggest diets with excessive quantities of n3, or very high levels of C20/ 22, may experience health and production detriments. Further research is needed to optimize the quantity and type of n3 in terms of bone health and production variables and investigate the potential associated mechanisms.
机译:蛋鸡龙骨骨折是鸡蛋生产行业面临的最关键的动物福利问题,尤其是随着2012年欧盟指令禁止常规电池笼的使用增加了广泛的系统使用。当前的研究旨在评估2种omega-3(n3)增强饮食对散养蛋鸡骨骼健康,生产终点和行为的影响。在2个产蛋周期中从2个实验中收集了数据,每个实验都将(n3)补充饮食与对照饮食进行了比较。与对照饮食(n3:n6至0.11)相比,实验1采用了添加60:40鱼油亚麻籽混合物(n3:n6至1.35)的饮食,而实验2中的n3饮食则添加了40:60鱼油亚麻籽(n3:n6至0.71)与对照饮食(n3:n6至0.11)相比。实验1的n3强化饮食比实验2的n3:n6比例更高,长链(C20 / 22)形式(0.41 LC:SC)中n3的比例更高(0.12 LC:SC)。尽管在实验2中饮食治疗成功地使骨折发生率降低了约27%,但实验1的数据表明,饮食实际上引起了更大的骨折可能性(比值:1.2),并且对生产造成了很大的损害。实验2期间龙骨断裂的减少可能与骨骼健康的变化有关,因为补充n3的家禽在龙骨断裂时表现出更大的负荷,胫骨和肱骨更灵活。这些结果支持以前的发现,即补充n3的饮食可以通过增加骨骼强度来减少骨折,并且可以在不损害生产的情况下实现这一目标。但是,我们的发现表明,n3含量过多或C20 / 22含量很高的饮食可能会损害健康和生产。需要进一步研究以就骨骼健康和生产变量优化n3的数量和类型,并研究潜在的相关机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号