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A Gene-Set Enrichment and Protein–Protein Interaction Network-Based GWAS with Regulatory SNPs Identifies Candidate Genes and Pathways Associated with Carcass Traits in Hanwoo Cattle

机译:基于基因集富集和蛋白质-蛋白质相互作用网络的具有调节性SNPs的GWAS识别了与拟woo牛Cat体性状相关的候选基因和途径

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摘要

Non-synonymous SNPs and protein coding SNPs within the promoter region of genes (regulatory SNPs) might have a significant effect on carcass traits. Imputed sequence level data of 10,215 Hanwoo bulls, annotated and filtered to include only regulatory SNPs (450,062 SNPs), were used in a genome-wide association study (GWAS) to identify loci associated with backfat thickness (BFT), carcass weight (CWT), eye muscle area (EMA), and marbling score (MS). A total of 15, 176, and 1 SNPs were found to be significantly associated ( < 1.11 × 10 ) with BFT, CWT, and EMA, respectively. The significant loci were BTA4 (CWT), BTA6 (CWT), BTA14 (CWT and EMA), and BTA19 (BFT). BayesR estimated that 1.1%~1.9% of the SNPs contributed to more than 0.01% of the phenotypic variance. So, the GWAS was complemented by a gene-set enrichment (GSEA) and protein–protein interaction network (PPIN) analysis in identifying the pathways affecting carcass traits. At < 0.005 (~2,261 SNPs), 25 GO and 18 KEGG categories, including calcium signaling, cell proliferation, and folate biosynthesis, were found to be enriched through GSEA. The PPIN analysis showed enrichment for 81 candidate genes involved in various pathways, including the PI3K-AKT, calcium, and FoxO signaling pathways. Our finding provides insight into the effects of regulatory SNPs on carcass traits.
机译:基因(调节性SNP)的启动子区域内的非同义SNP和蛋白质编码SNP可能对car体性状有重要影响。在全基因组关联研究(GWAS)中使用了10,215头Hanwoo公牛的推定序列水平数据进行了注释和过滤,仅包含调节性SNP(450,062 SNP),以鉴定与背脂厚度(BFT),car体重量(CWT)相关的基因座,眼肌面积(EMA)和大理石花纹分数(MS)。发现总共15、176和1个SNP与BFT,CWT和EMA显着相关(<1.11×10)。显着位点是BTA4(CWT),BTA6(CWT),BTA14(CWT和EMA)和BTA19(BFT)。 BayesR估计1.1%〜1.9%的SNP贡献了超过0.01%的表型变异。因此,GWAS辅以基因集富集(GSEA)和蛋白质-蛋白质相互作用网络(PPIN)分析来确定影响car体性状的途径。在<0.005(〜2,261个SNP)处,发现25个GO和18个KEGG类别(包括钙信号传导,细胞增殖和叶酸生物合成)通过GSEA得以富集。 PPIN分析显示81种候选基因的富集涉及各种途径,包括PI3K-AKT,钙和FoxO信号传导途径。我们的发现提供了对监管SNPs对car体性状的影响的见解。

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