首页> 外文期刊>Canadian Journal of Animal Science >Association analyses of a single nucleotide polymorphism in the promoter of OLR1 with growth, feed efficiency, fat deposition, and carcass merit traits in hybrid, Angus and Charolais beef cattle
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Association analyses of a single nucleotide polymorphism in the promoter of OLR1 with growth, feed efficiency, fat deposition, and carcass merit traits in hybrid, Angus and Charolais beef cattle

机译:OLR1启动子中单核苷酸多态性与杂种,安格斯和夏洛来牛肉牛的生长,饲料效率,脂肪沉积和car体品质性状的关联分析

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摘要

A single nucleotide polymorphism (SNP) in the promoter region of oxidized low density lipoprotein (lectin-like) receptor 1 (OLR1) (c. -495 T>C) was identified and analyzed for associations with 10 traits related to growth, feed efficiency, body fat deposition and carcass merit traits in hybrid (n = 456), Angus (n = 567) and Charolais (n = 423) beef cattle populations. A significant allele substitution effect (P = 0.023) was found for residual feed intake (RFI) in the Angus population. The allele "C", which had a frequency of 0.24 in the Angus population, was associated with decreased RFI. Angus steers with the "CC" genotype had a lower RFI value (i.e. more efficient) than the Angus steers carrying the "TT" genotype. The SNP was also found to have significant dominance effects on final ultrasound rib-eye area (FUREA) (P = 0.0004) and carcass rib-eye area (CREA) (P = 0.009) in the Angus steer population. The Angus steers with the "CT" genotype had smaller rib-eye areas of both ultrasound and carcass measures than the average of the steers with the homozygous genotypes. However, the SNP did not show significant associations with the traits examined in either the hybrid or the Charolais steer population at P < 0.05. OLR1 plays a role in lipid metabolism, and analyses of transcript binding site based on the transcription element search system revealed that the "T" allele of the c.-495T>C SNP introduces a presumptive binding site for CCAAT/enhancer binding protein alpha (C/EBP alpha). However, further investigation is required to delineate the possible regulatory role of the SNP on growth and efficiency of energy utilization in relation to different biological types of beef cattle.
机译:氧化低密度脂蛋白(凝集素样)受体1(OLR1)(c。-495 T> C)的启动子区域中的单核苷酸多态性(SNP)被确定并分析与生长,饲料效率相关的10个性状的关联,杂种(n = 456),安格斯(n = 567)和夏洛来牛(n = 423)肉牛种群的体脂肪沉积和car体品质特征。对于安格斯种群中的剩余饲料摄入量(RFI),发现了显着的等位基因替代效应(P = 0.023)。等位基因“ C”在安格斯种群中的频率为0.24,与RFI降低有关。与带有“ TT”基因型的安格斯ers牛相比,具有“ CC”基因型的安格斯ste牛具有较低的RFI值(即效率更高)。在安格斯牛群中,SNP还对最终的超声肋眼面积(P = 0.0004)和car体肋眼面积(CREA)(P = 0.009)具有显着的主导作用。具有“ CT”基因型的安格斯牛的超声和car体测量值均比具有纯合基因型的牛平均的肋眼面积小。然而,在P <0.05时,SNP与杂种或夏洛来牛转向种群中未检测到的性状之间没有显着相关性。 OLR1在脂质代谢中起作用,根据转录元件搜索系统对转录本结合位点进行分析后发现,c.-495T> C SNP的“ T”等位基因为CCAAT /增强子结合蛋白α( C / EBP alpha)。但是,需要进行进一步的研究来确定SNP对与不同生物类型的肉牛有关的生长和能量利用效率的可能调节作用。

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