Development and validation of a small SNP panel for feed efficiency in beef cattle

被引:50
作者
Abo-Ismail, M. K. [1 ,2 ]
Lansink, N. [1 ]
Akanno, E. [1 ]
Karisa, B. K. [1 ]
Crowley, J. J. [1 ,3 ]
Moore, S. S. [4 ]
Bork, E. [5 ]
Stothard, P. [1 ]
Basarab, J. A. [6 ]
Plastow, G. S. [1 ]
机构
[1] Univ Alberta, Livestock Gentec, 8215 112st, Edmonton, AB T6G 2C8, Canada
[2] Damanhour Univ, Anim & Poultry Prod Dept, Damanhour 22516, Egypt
[3] Canadian Beef Breeds Council, Calgary, AB T4A 0E2, Canada
[4] Univ Queensland, Ctr Anim Sci, St Lucia, Qld, Australia
[5] Univ Alberta, Rangeland Res Inst, Agr Forestry Ctr 410, Edmonton, AB, Canada
[6] Lacombe Res Ctr, Alberta Agr & Forestry, Lacombe, AB T4L IW1, Canada
关键词
association analysis; Beef cattle; candidate genes; feed efficiency; SINGLE NUCLEOTIDE POLYMORPHISMS; MEAT QUALITY TRAITS; ASSOCIATION ANALYSIS; CANDIDATE GENES; DIVERGENT SELECTION; GENOMIC PREDICTIONS; BODY-COMPOSITION; BIOLOGICAL BASIS; CALPAIN-SYSTEM; HOLSTEIN COWS;
D O I
10.1093/jas/sky020
中图分类号
S8 [畜牧、 动物医学、狩猎、蚕、蜂];
学科分类号
0905 ;
摘要
The objective of this study was to develop and validate a customized cost-effective single nucleotide polymorphism (SNP) panel for genetic improvement of feed efficiency in beef cattle. The SNPs identified in previous association studies and through extensive analysis of candidate genomic regions and genes, were screened for their functional impact and allele frequency in Angus and Hereford breeds used as validation candidates for the panel. Association analyses were performed on genotypes of 159 SNPs from new samples of Angus (n = 160), Hereford (n = 329), and Angus-Hereford crossbred (n = 382) cattle using allele substitution and genotypic models in ASReml. Genomic heritabilities were estimated for feed efficiency traits using the full set of SNPs, SNPs associated with at least one of the traits (at P <= 0.05 and P < 0.10), as well as the Illumina bovine 50K representing a widely used commercial genotyping panel. A total of 63 SNPs within 43 genes showed association (P <= 0.05) with at least one trait. The minor alleles of SNPs located in the GHR and CAST genes were associated with decreasing effects on residual feed intake (RFI) and/or RFI adjusted for backfat (RFIf), whereas minor alleles of SNPs within MKI67 gene were associated with increasing effects on RFI and RFIf. Additionally, the minor allele of rs137400016 SNP within CNTFR was associated with increasing average daily gain (ADG). The SNPs genotypes within UMPS, SMARCAL, CCSER1, and LMCD1 genes showed significant over-dominance effects whereas other SNPs located in SMARCAL1, ANXA2, CACNA1G, and PHYHIPL genes showed additive effects on RFI and RFIf. Gene enrichment analysis indicated that gland development, as well as ion and cation transport are important physiological mechanisms contributing to variation in feed efficiency traits. The study revealed the effect of the Jak-STAT signaling pathway on feed efficiency through the CNTFR, OSMR, and GHR genes. Genomic heritability using the 63 significant (P <= 0.05) SNPs was 0.09, 0.09, 0.13, 0.05, 0.05, and 0.07 for ADG, dry matter intake, midpoint metabolic weight, RFI, RFIf, and backfat, respectively. These SNPs contributed to genetic variation in the studied traits and thus can potentially be used or tested to generate cost-effective molecular breeding values for feed efficiency in beef cattle.
引用
收藏
页码:375 / 397
页数:23
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