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鉴定与肉牛饲料效率和生产性能相关的消化和代谢过程基因中的单核苷酸多态性。

Identification of single nucleotide polymorphisms in genes involved in digestive and metabolic processes associated with feed efficiency and performance traits in beef cattle.

机构信息

Centre for Genetic Improvement of Livestock, Department of Animal and Poultry Science, University of Guelph, Guelph, Ontario, Canada, N1G 2W0.

出版信息

J Anim Sci. 2013 Jun;91(6):2512-29. doi: 10.2527/jas.2012-5756. Epub 2013 Mar 18.

Abstract

Discovery of genetic mutations that have a significant association with economically important traits would benefit beef cattle breeders. Objectives were to identify with an in silico approach new SNP in 8 genes involved in digestive function and metabolic processes and to examine the associations between the identified SNP and feed efficiency and performance traits. The association between SNP and daily DMI, ADG, midpoint metabolic weight (MMWT), residual feed intake (RFI), and feed conversion ratio (FCR; the ratio of average daily DMI to ADG) was tested in discovery and validation populations using a univariate mixed-inheritance animal model fitted in ASReml. Substitution effect of the T allele of SNP rs41256901 in protease, serine, 2 (trypsin 2; PRSS2) was associated with FCR (-0.293 ± 0.08 kg DMI kg(-1) BW gain; P < 0.001) and RFI (-0.199 ± 0.08 kg; P < 0.01) and although not significant in the validation population, the phase of association remained. In the cholecystokinin B receptor (CCKBR) gene, genotypes in rs42670351 were associated with RFI (P < 0.05) whereas genotypes in rs42670352 were associated with RFI (P = 0.002) and DMI (P < 0.05). Substitution of the G allele in rs42670352 was associated with DMI (-0.236 ± 0.12 kg; P = 0.055) and RFI (-0.175 ± 0.09 kg; P = 0.05). Substitution of the G allele of SNP rs42670353 was associated with ADG (0.043 ± 0.02 kg/d; P < 0.01) and FCR (0.114 ± 0.05 kg BW gain kg(-1) DMI; P < 0.05). In the validation dataset, SNP rs42670352 in gene CCKBR was significant for RFI and DMI and had the same phase of associations; SNP rs42670353 was significantly associated with FCR with same phase of association and the C allele in SNP rs42670351 was validated as decreasing DMI, RFI, and FCR. Substituting the G allele of SNP rs42670352 in CCKBR2 was associated with decreasing DMI and RFI in the validation study. New SNP were reported in genes PRSS2 and CCKBR, being associated with feed efficiency and performance traits in beef cattle. The association between these SNP with fertility, carcass, and meat quality traits must still be tested.

摘要

发现与经济重要性状显著相关的遗传突变将使肉牛饲养者受益。目的是通过计算机模拟方法鉴定 8 个参与消化功能和代谢过程的基因中的新 SNP,并研究鉴定出的 SNP 与饲料效率和性能性状之间的关联。使用 ASReml 中拟合的单变量混合遗传动物模型,在发现和验证群体中测试 SNP rs41256901 与每日干物质采食量(DMI)、日增重(ADG)、中点代谢体重(MMWT)、剩余采食量(RFI)和饲料转化率(FCR;平均每日 DMI 与 ADG 的比值)之间的关联。SNP rs41256901 中 T 等位基因的替代效应与 FCR(-0.293±0.08 kg DMI kg(-1) BW gain;P<0.001)和 RFI(-0.199±0.08 kg;P<0.01)有关,尽管在验证群体中不显著,但关联的相位仍然存在。在胆囊收缩素 B 受体(CCKBR)基因中,rs42670351 基因型与 RFI 相关(P<0.05),而 rs42670352 基因型与 RFI(P=0.002)和 DMI(P<0.05)相关。rs42670352 中的 G 等位基因替代与 DMI(-0.236±0.12 kg;P=0.055)和 RFI(-0.175±0.09 kg;P=0.05)有关。SNP rs42670353 的 G 等位基因替代与 ADG(0.043±0.02 kg/d;P<0.01)和 FCR(0.114±0.05 kg BW gain kg(-1) DMI;P<0.05)有关。在验证数据集,基因 CCKBR 中的 SNP rs42670352 与 RFI 和 DMI 显著相关,且具有相同的关联相位;SNP rs42670353 与 FCR 显著相关,且具有相同的关联相位,SNP rs42670351 中的 C 等位基因被验证为降低 DMI、RFI 和 FCR。CCKBR2 中的 SNP rs42670352 的 G 等位基因替代与验证研究中 DMI 和 RFI 的降低有关。在 PRSS2 和 CCKBR 基因中发现了新的 SNP,与肉牛的饲料效率和性能性状有关。这些 SNP 与繁殖力、胴体和肉质性状的关联仍需进一步验证。

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