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Genome-wide association analysis and functional annotation of positional candidate genes for feed conversion efficiency and growth rate in pigs

机译:全基因组关联分析和位置候选基因的功能注释对猪饲料转化效率和生长速度的影响

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摘要

Feed conversion efficiency is a measure of how well an animal converts feed into live weight and it is typically expressed as feed conversion ratio (FCR). FCR and related traits like growth rate (e.g. days to 110 kg—D110) are of high interest for animal breeders, farmers and society due to implications on animal performance, feeding costs and environmental sustainability. The objective of this study was to identify genomic regions associated with FCR and D110 in pigs. A total of 952 terminal line boars, showing an individual variation in FCR, were genotyped using 60K SNP-Chips. Markers were tested for associations with estimated breeding values (EBV) for FCR and D110. For FCR, the largest number of associated SNPs was located on chromosomes 4 (30 SNPs), 1 (25 SNPs), X (15 SNPs) and 6 (12 SNPs). The most prominent genomic regions for D110 were identified on chromosomes 15 (10 SNPs), 1 and 4 (both 9 SNPs). The most significantly associated SNPs for FCR and D110 mapped 129.8 Kb from METTL11B (chromosome 4) and 32Kb from MBD5 (chromosome 15), respectively. A list of positional genes, closest to significantly associated SNPs, was used to identify enriched pathways and biological functions related to the QTL for both traits. A number of candidate genes were significantly overrepresented in pathways of immune cell trafficking, lymphoid tissue structure, organ morphology, endocrine system function, lipid metabolism, and energy production. After resequencing the coding region of selected positional and functional candidate genes, six SNPs were genotyped in a subset of boars. SNPs in PRKDC, SELL, NR2E1 and AKRIC3 showed significant associations with EBVs for FCR/D110. The study revealed a number of chromosomal regions and candidate genes affecting FCR/D110 and pointed to corresponding biological pathways related to lipid metabolism, olfactory reception, and also immunological status.
机译:饲料转化效率是衡量动物如何将饲料转化为活体重的指标,通常以饲料转化率(FCR)表示。 FCR和相关性状(例如生长速度(例如,天数达到110公斤-D110))对动物饲养者,农民和社会都非常感兴趣,因为它们会影响动物的性能,饲养成本和环境可持续性。这项研究的目的是确定与猪中FCR和D110相关的基因组区域。使用60K SNP-Chip对总共952个显示FCR个体差异的公猪进行了基因分型。测试了标记与FCR和D110的估计育种值(EBV)的关联。对于FCR,关联的SNP数量最多,位于4号染色体(30个SNP),1号染色体(25个SNP),X号染色体(15个SNP)和6号染色体(12个SNP)上。 D110最突出的基因组区域是在15号染色体(10个SNP),1号染色体和4号染色体(均9个SNP)上鉴定的。与FCR和D110关联最密切的SNP分别来自METTL11B(第4号染色体)的129.8 Kb和来自MBD5(第15号染色体)的32Kb。最接近显着相关的SNP的位置基因列表被用于鉴定与两个性状的QTL相关的富集途径和生物学功能。在免疫细胞运输,淋巴组织结构,器官形态,内分泌系统功能,脂质代谢和能量产生的途径中,许多候选基因的表达明显过高。对选定的位置和功能候选基因的编码区重新测序后,在一个公猪的子集中对六个SNP进行了基因分型。 PRKDC,SELL,NR2E1和AKRIC3中的SNP与FCR / D110的EBV显着相关。该研究揭示了影响FCR / D110的许多染色体区域和候选基因,并指出了与脂质代谢,嗅觉接收以及免疫状态有关的相应生物学途径。

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