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The genetics of feed conversion efficiency traits in a commercial broiler line

机译:商业肉鸡生产线饲料转化效率性状的遗传

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Individual feed conversion efficiency (FCE) is a major trait that influences the usage of energy resources and the ecological footprint of livestock production. The underlying biological processes of FCE are complex and are influenced by factors as diverse as climate, feed properties, gut microbiota, and individual genetic predisposition. To gain an insight to the genetic relationships with FCE traits and to contribute to the improvement of FCE in commercial chicken lines, a genome-wide association study was conducted using a commercial broiler population (n?=?859) tested for FCE and weight traits during the finisher period from 39 to 46 days of age. Both single-marker (generalized linear model) and multi-marker (Bayesian approach) analyses were applied to the dataset to detect genes associated with the variability in FCE. The separate analyses revealed 22 quantitative trait loci (QTL) regions on 13 different chromosomes; the integration of both approaches resulted in 7 overlapping QTL regions. The analyses pointed to acylglycerol kinase ( AGK ) and general transcription factor 2-I ( GTF2I ) as positional and functional candidate genes. Non-synonymous polymorphisms of both candidate genes revealed evidence for a functional importance of these genes by influencing different biological aspects of FCE.
机译:个体饲料转化效率(FCE)是影响能源资源利用和畜牧生产生态足迹的主要特征。 FCE的基本生物学过程很复杂,并受气候,饲料特性,肠道菌群和个体遗传易感性等多种因素的影响。为了深入了解与FCE性状的遗传关系,并有助于改善商业鸡品系中的FCE,使用商业肉鸡种群(n?=?859)进行了FCE和体重性状测试,进行了全基因组关联研究。在39至46天的育肥期中。将单标记(广义线性模型)和多标记(贝叶斯方法)分析都应用于数据集,以检测与FCE变异性相关的基因。单独的分析揭示了13个不同染色体上的22个定量性状基因座(QTL)区域。两种方法的整合导致了7个重叠的QTL区域。分析指出,酰基甘油激酶(AGK)和一般转录因子2-I(GTF2I)是位置和功能候选基因。两个候选基因的非同义多态性通过影响FCE的不同生物学方面揭示了这些基因的功能重要性的证据。

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