Literature DB >> 25414103

CAPN1, CAST, and DGAT1 genetic effects on preweaning performance, carcass quality traits, and residual variance of tenderness in a beef cattle population selected for haplotype and allele equalization.

R G Tait1, S D Shackelford1, T L Wheeler1, D A King1, J W Keele1, E Casas1, T P L Smith1, G L Bennett2.   

Abstract

Genetic marker effects and type of inheritance are estimated with poor precision when minor marker allele frequencies are low. A stable composite population (MARC III) was subjected to marker-assisted selection for multiple years to equalize specific marker frequencies to 1) estimate effect size and mode of inheritance for previously reported SNP on targeted beef carcass quality traits (n=254), 2) estimate pleiotropic effects of previously reported SNP on nontarget performance traits (n=542 or 254), and 3) evaluate tenderness SNP specific residual variance for LM tenderness. Three haplotypes within μ-calpain (CAPN1), a SNP in calpastatin (CAST), and a dinucleotide substitution in diacylglycerol O-acyltransferase 1 (DGAT1) were successfully selected to equalize their frequencies. Traits evaluated were birth BW, weaning BW, yearling BW, final BW, dressing percent, HCW, fat thickness, LM area, USDA marbling score, yield grade, LM slice shear force (SSF), and visible and near-infrared (VISNIR)-predicted SSF. While the CAPN1 genotype effect on SSF was not significant (P=0.12), the direction and size of CAPN1 contrasts were consistent with previous research. Effects on SSF between divergent CAPN1 haplotypes (1.153 kg) and the additive effect of CAST (0.902 kg) were large, and animals homozygous for tender alleles at both CAPN1 and CAST would have 4.11 kg lower SSF (27.5% of the mean) than animals homozygous tough for both markers. Furthermore, the interaction between CAPN1 and CAST for SSF was not significant (P=0.40). There were significant effects for DGAT1 on adjusted fat thickness (P=0.02) and VISNIR-predicted SSF (P<0.001) with additive and dominance modes of inheritance (P<0.05) for both traits. Furthermore, CAST genotype specific residual variance models fit significantly better (P<0.001) than single residual variance models for SSF, with the tougher genotypes having progressively larger residual (and hence phenotypic) variances. Therefore, risk of a tough steak from the undesired CAST genotype is increased through both an increase in mean and an increase in variation. This work is supportive of the importance of CAPN1 and CAST for mean tenderness in beef, confirms an effect of CAST on beef LM tenderness variation, and identifies an effect of DGAT1 on subcutaneous fat thickness.

Entities:  

Keywords:  CAPN1; CAST; DGAT1; beef tenderness; carcass quality; marker association

Mesh:

Substances:

Year:  2014        PMID: 25414103     DOI: 10.2527/jas.2014-8211

Source DB:  PubMed          Journal:  J Anim Sci        ISSN: 0021-8812            Impact factor:   3.159


  5 in total

1.  Production performance of cows raised with different postweaning growth patterns.

Authors:  Harvey C Freetly; Robert A Cushman; Gary L Bennett
Journal:  Transl Anim Sci       Date:  2021-02-16

Review 2.  A Review of Selected Genes with Known Effects on Performance and Health of Cattle.

Authors:  Eduardo Casas; Marcus E Kehrli
Journal:  Front Vet Sci       Date:  2016-12-15

3.  Association of μ-Calpain and Calpastatin Polymorphisms with Meat Tenderness in a Brahman-Angus Population.

Authors:  Joel D Leal-Gutiérrez; Mauricio A Elzo; Dwain D Johnson; Tracy L Scheffler; Jason M Scheffler; Raluca G Mateescu
Journal:  Front Genet       Date:  2018-02-22       Impact factor: 4.599

4.  A large interactive visual database of copy number variants discovered in taurine cattle.

Authors:  Arun Kommadath; Jason R Grant; Kirill Krivushin; Adrien M Butty; Christine F Baes; Tara R Carthy; Donagh P Berry; Paul Stothard
Journal:  Gigascience       Date:  2019-06-01       Impact factor: 6.524

5.  Comprehensive assessment of candidate genes associated with fattening performance in Holstein-Friesian bulls.

Authors:  Sena Ardicli; Hale Samli; Buse Vatansever; Bahadir Soyudal; Deniz Dincel; Faruk Balci
Journal:  Arch Anim Breed       Date:  2019-01-21
  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.