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Interest in the serum color as an indirect criterion of selection of digestive efficiency in chickens

机译:血清颜色的兴趣作为鸡中消化效率选择的间接标准

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摘要

Improving the digestive efficiency of birds is becoming increasingly important with the diversification of feedstuffs used in poultry diets. Compared with time-consuming chemical analyses that were previously used to measure digestive efficiency, near-infrared spectroscopy has been a great advance as it was fast and thus allowed measurements to be taken from a large number of animals, as required for genetic studies. However, it still implies to rear the birds in cages to collect feces, which is questionable in terms of welfare. The purpose of this study was thus to establish whether the serum color could be used as a biomarker of digestive efficiency that would be easy and fast to measure on floor-reared animals. We first compared the serum color of 2 lines of chickens divergently selected for high or low digestive efficiency when fed with a wheat-based diet. Digestive efficiency was assessed by nitrogen-corrected apparent metabolizable energy. Color was assessed by the absorbance of the serum between 300 and 572 nm. Color differed between the 2 lines between 430 and 572 nm, which corresponds to the absorption zone of carotenoids such as lutein and zeaxanthin. In a second step, we estimated the heritability of serum color measurements and their genetic correlations with digestive efficiency. Taking these parameters into account, in our experimental conditions the best trait among those tested that can be used as a biomarker of digestive efficiency is serum absorbance at 492 nm, with a heritability estimate of 0.31 ± 0.09 and a genetic correlation with digestive efficiency of 0.84 ± 0.28.
机译:提高鸟类的消化效率随着家禽饮食中使用的饲料的多样化而变得越来越重要。与以前用于测量消化效率的耗时的化学分析相比,近红外光谱是一种大的进步,因为它快速,因此允许测量从大量动物中取出,因为遗传研究所需的遗传研究。然而,它仍然意味着在笼子里养鸟来收集粪便,这在福利方面是值得怀疑的。因此,本研究的目的是建立血清颜色是否可以用作消化效率的生物标志物,这将在落地饲养的动物上衡量。我们首先将2行鸡的血清颜色分解为高或低消化效率,当喂食小麦饮食时。通过氮气矫正表观代谢能量评估消化效率。通过300至572nm之间的血清的吸光度评估颜色。颜色在430和572nm之间的2条线之间不同,这对应于类胡萝卜素和Zeaxantin的类胡萝卜素的吸收区。在第二步中,我们估计了血清颜色测量的可遗传性及其与消化效率的遗传相关性。考虑到这些参数,在我们的实验条件下,可以用作消化效率的生物标志物的最佳性状是492nm的血清吸光度,其遗传性估计为0.31±0.09和消化效率的遗传相关性0.84 ±0.28。

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