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用于评估蛋鸡蛋壳质量生物复合体的模型比较

Model comparison to evaluate a shell quality bio-complex in layer hens.

作者信息

Arango J, Wolc A, Settar P, O'Sullivan N P

机构信息

Hy-Line International, Dallas Center, IA, USA

Hy-Line International, Dallas Center, IA, USA Department of Animal Sciences, Iowa State University, Ames, IA, USA.

出版信息

Poult Sci. 2016 Nov 1;95(11):2520-2527. doi: 10.3382/ps/pew286. Epub 2016 Aug 30.

Abstract

Reducing the incidence of egg shell breakage is an important selection goal in egg layer hens breeding. Breaking strength provides an indicator of static shell resistance correlated with shell thickness. Acoustic egg tests combine shell's resonance profile with egg mass to calculate dynamic stiffness (KDyn) a quantitative indicator of integral shell resistance, and a novel direct detection of both cracks and micro-cracks (MCr) making it possible for use in selection programs aiming improvement of shell quality. A shell quality bio-complex was defined to improve overall shell quality, including: breaking strength at equator (BSe) and poles (BSp), KDyn, and MCr, on multiple eggs/hen-age. A total of 81,667; 101,113; and 72,462 records from 4 generations of three pure lines were evaluated. Two models were tested in the brown-egg line: I) four-trait linear repeatability model and II) three-trait linear (BS, KDyn)-threshold (MCr) in the three lines. Models were implemented with AIREMLF90 and THRGIBBS1F90. Heritability and repeatability (Model I) estimates were: h = 0.14, 0.18, 0.33, and 0.02; r = 0.16, 0.28, 0.43, and 0.03 for BSe, BSp, KDyn, and MCr, respectively. Corresponding values in White Plymouth Rock were h = 0.14, 0.17, 0.33, and 0.02; r = 0.21, 0.33, 0.44, and 0.04, and in White Leghorn were h = 0.14, 0.23, 0.36, and 0.02; r = 0.24, 0.38, 0.52, and 0.02. Genetic correlations between BSe and BSp were between 0.51 and 0.68. The BS traits were moderately correlated with KDyn (+0.23 to +0.51), and tended to be negatively correlated with MCr. KDyn, and MCr (-0.46 to -0.62). Model II had similar results; except for increased h = 0.06 and r = 0.09 for MCr. Results indicate that BSe and BSp are different traits; while incidence of MCr is low in heritable but showed negative genetic correlations with the other traits. This makes MCr unsuitable for direct selection; but favors indirect selection against MCr via BSe, BSp, and KDyn for a holistic selection to improve shell quality, in particular to achieve the ultimate goal, reduction of egg breakage.

摘要

降低蛋壳破损率是蛋鸡育种中的一个重要选择目标。抗破强度提供了一个与蛋壳厚度相关的静态蛋壳抗性指标。声学鸡蛋检测将蛋壳的共振特征与蛋重相结合,以计算动态刚度(KDyn),这是整体蛋壳抗性的定量指标,并且能够直接检测裂缝和微裂缝(MCr),使其可用于旨在提高蛋壳质量的选择计划。定义了一个蛋壳质量生物复合体以改善整体蛋壳质量,包括:在多个蛋/母鸡年龄时的赤道处抗破强度(BSe)和极点处抗破强度(BSp)、KDyn和MCr。对来自三个纯系4个世代的总共81,667条、101,113条和72,462条记录进行了评估。在褐壳蛋系中测试了两个模型:I)四性状线性重复性模型和II)三个品系中的三性状线性(抗破强度、KDyn)-阈值(MCr)模型。使用AIREMLF90和THRGIBBS1F90实现这些模型。遗传力和重复性(模型I)估计值分别为:BSe、BSp、KDyn和MCr的h = 0.14、0.18、0.33和0.02;r = 0.16、0.28、0.43和0.03。白普利茅斯洛克鸡的相应值为h = 0.14、0.17、0.33和0.02;r = 0.21、0.33、0.44和0.04,白来航鸡的相应值为h = 0.14、0.23、0.36和0.02;r = 0.24、0.38、0.52和0.02。BSe和BSp之间的遗传相关性在0.51至0.68之间。抗破强度性状与KDyn呈中等相关性(+0.23至+0.51),并且倾向于与MCr呈负相关。KDyn和MCr之间的相关性为-0.46至-0.62。模型II有类似结果;除了MCr的h增加了0.06和r增加了0.09。结果表明BSe和BSp是不同的性状;虽然MCr的发生率在遗传上较低,但与其他性状呈负遗传相关性。这使得MCr不适合直接选择;但有利于通过BSe、BSp和KDyn对MCr进行间接选择,以进行整体选择来提高蛋壳质量,特别是实现减少鸡蛋破损的最终目标。

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