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开发一种具有潜力的射线照相方法,可用于通过基因选择改善蛋鸡的骨骼质量和福利。

Development of an radiographic method with potential for use in improving bone quality and the welfare of laying hens through genetic selection.

作者信息

Wilson P W, Dunn I C, Mccormack H A

机构信息

The Roslin Institute, University of Edinburgh, Scotland, UK.

出版信息

Br Poult Sci. 2023 Feb;64(1):1-10. doi: 10.1080/00071668.2022.2119835. Epub 2022 Oct 5.

Abstract
  1. Genetic selection for bone quality can improve this, as it is heritable. A method was established using digital X-ray which took around 40 s in total and gave an image that allowed quantification of bone density from many appendicular bones.2. The tibiotarsus measurement of bone density on the live hen across the different experiments had correlations with whole bone radiographic density from 0.62 to 0.7, similar to that between density and material properties for example. Differences between groups of hens, where calcium and phosphorus in the diet were manipulated, were detected within 3 weeks of treatment using live hen measurement (P < 0.001, n = 24).3. In a gage analysis, 'hen' explained more than 86% of the variance, demonstrating the ability to observe clear differences between hens. The effect of different operators' analysis on the contribution to variance was very low as was the repeated measurement of the same hen.4. The measurement of bone density on the live hen described in this paper represented major progress to a usable method for genetic selection to improve bone strength in laying hens. The method has the potential to reduce the number of animals needed to test nutritional and management interventions to improve bone health.
摘要
  1. 由于骨质量具有遗传性,因此通过基因选择来改善骨质量是可行的。研究建立了一种利用数字X射线的方法,该方法总共耗时约40秒,并能生成一张可对多根附属骨骼的骨密度进行量化的图像。

  2. 在不同实验中,对活母鸡胫跗骨的骨密度测量结果与全骨放射密度的相关性在0.62至0.7之间,例如,这与密度和材料特性之间的相关性类似。通过对活母鸡进行测量,在处理后3周内就检测到了饮食中钙和磷含量不同的母鸡组之间的差异(P < 0.001,n = 24)。

  3. 在一项量具分析中,“母鸡”这一因素解释了超过86%的方差,这表明能够观察到母鸡之间的明显差异。不同操作人员的分析对方差贡献的影响非常小,对同一只母鸡进行重复测量的影响也很小。

  4. 本文所述的对活母鸡骨密度的测量代表了朝着一种可用于基因选择以提高蛋鸡骨骼强度的实用方法迈出的重大进展。该方法有可能减少测试改善骨骼健康的营养和管理干预措施所需的动物数量。

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