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首页> 外文期刊>BMC Genomics >Genome-wide association study reveals putative role of gga-miR-15a in controlling feed conversion ratio in layer chickens
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Genome-wide association study reveals putative role of gga-miR-15a in controlling feed conversion ratio in layer chickens

机译:全基因组关联研究揭示了gga-miR-15a在控制蛋鸡饲料转化率中的推定作用

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Background Efficient use of feed resources for farm animals is a critical concern in animal husbandry. Numerous genetic and nutritional studies have been conducted to investigate feed efficiency during the regular laying cycle of chickens. However, by prolonging the laying period of layers, the performance of feed utilization in the late-laying period becomes increasingly important. In the present study, we measured daily feed intake (FI), residual feed intake (RFI) and feed conversion ratio (FCR) of 808 hens during 81–82?weeks of age to evaluate genetic properties and then used a genome-wide association study (GWAS) to reveal the genetic determinants. Results The heritability estimates for the investigated traits were medium and between 0.15 and 0.28 in both pedigree- and genomic-based estimates, whereas the genetic correlations among these traits were high and ranged from 0.49 to 0.90. Three genome-wide significant SNPs located on chromosome 1 (GGA1) were detected for FCR. Linkage disequilibrium (LD) and conditional GWA analysis indicated that these 3 SNPs were highly correlated with one another, located at 13.55–45.16 Kb upstream of gga-miR-15a. Results of quantitative real-time polymerase chain reaction (qRT-PCR) analysis in liver tissue showed that the expression of gga-miR-15a was significantly higher in the high FCR birds than that in the medium or low FCR birds. Bioinformatics analysis further revealed that gga-mir-15a could act on many target genes, such as forkhead box O1 ( FOXO1 ) that is involved in the insulin-signaling pathway, which influences nutrient metabolism in many organisms. Additionally, some suggestively significant variants, located on GGA3 and GGA9, were identified to associate with FI and RFI. Conclusions This GWA analysis was conducted on feed intake and efficiency traits for chickens and was innovative for application in the late laying period. Our findings can be used as a reference in the genomic breeding programs for increasing the efficiency performance of old hens and to improve our understanding of the molecular determinants for feed efficiency.
机译:背景技术有效地将饲料资源用于牲畜是畜牧业的关键问题。已经进行了许多遗传和营养研究,以调查鸡在常规产蛋周期中的饲料效率。但是,通过延长各层的铺设时间,后期铺设的饲料利用性能变得越来越重要。在本研究中,我们测量了81-82周龄内808只母鸡的每日采食量(FI),剩余采食量(RFI)和饲料转化率(FCR)以评估遗传特性,然后使用全基因组关联研究(GWAS)以揭示遗传决定因素。结果在基于系谱和基因组的估计中,所调查性状的遗传力估计值处于中等,介于0.15和0.28之间,而这些性状之间的遗传相关性很高,范围在0.49至0.90之间。 FCR检测到位于染色体1(GGA1)上的三个全基因组重要SNP。连锁不平衡(LD)和条件GWA分析表明,这3个SNP彼此高度相关,位于gga-miR-15a的上游13.55–45.16 Kb。肝脏组织中实时定量聚合酶链反应(qRT-PCR)分析的结果表明,高FCR禽中gga-miR-15a的表达明显高于中FCR或低FCR禽。生物信息学分析进一步表明,gga-mir-15a可以作用于许多靶基因,例如参与胰岛素信号通路的叉头盒O1(FOXO1),它会影响许多生物的营养代谢。另外,鉴定出位于GGA3和GGA9上的一些暗示显着的变体与FI和RFI相关。结论这项GWA分析是针对鸡的采食量和效率性状进行的,在后期蛋鸡的应用方面具有创新性。我们的发现可作为基因组育种计划的参考,以提高成年母鸡的效率表现并增进我们对饲料效率分子决定因素的理解。

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