Effects of the myostatin F94L substitution on beef traits

被引:72
作者
Esmailizadeh, A. K. [1 ]
Bottema, C. D. K. [1 ]
Sellick, G. S. [1 ]
Verbyla, A. P. [1 ]
Morris, C. A. [2 ]
Cullen, N. G. [2 ]
Pitchford, W. S. [1 ]
机构
[1] Univ Adelaide, Sch Agr Food & Wine, Roseworthy, SA 5371, Australia
[2] Ruakura Agr Res Ctr, Hamilton, New Zealand
关键词
beef cattle; carcass trait; GDF8; F94L; meat quality; myostatin;
D O I
10.2527/jas.2007-0589
中图分类号
S8 [畜牧、 动物医学、狩猎、蚕、蜂];
学科分类号
0905 ;
摘要
This study investigated the effects of a SNP in the myostatin gene (MSTN or growth differentiation factor 8, GDF8) on birth, growth, carcass, and beef quality traits in Australia (Aust.) and New Zealand (NZ). The SNP is a cytosine to adenine transversion in exon 1, causing an amino acid substitution of leucine for phenylalanine(94) (F94L). The experiment used crosses between the Jersey and Limousin breeds, with the design being a backcross using first-cross bulls of Jersey x Limousin or Limousin x Jersey breeding, mated to Jersey and Limousin cows. Progeny were genotyped for the myostatin SNP and phenotyped in Aust., with finishing on feedlot (366 calves, over 3 birth years) and in NZ with finishing on pasture (416 calves, over 2 birth years). The effect of the F94L allele (A allele) on birth and growth traits was not significant. The F94L allele in Limousin backcross calves was associated with an increase in meat weight (7.3 and 5.9% of the trait mean in Aust. and NZ, respectively, P < 0.001), and a reduction in fat depth (-13.9 and -18.7% of the trait means on live calves (600 d) and carcasses, respectively, Aust. only, P < 0.001), intramuscular fat content (-8.2% of the trait mean in Aust., P < 0.05; -7.1% in NZ, not significant), total carcass fat weight (-16.5 and -8.1% of the trait mean, Aust. and NZ; P < 0.001 and P < 0.05, respectively). Meat tenderness, pH, and cooking loss of the M. longissimus dorsi were not affected by the F94L variant. In the Jersey backcross calves, additive and dominance effects were confounded because the F94L allele was not segregating in the Jersey dams. The combined effects, however, were significant on LM area (4.4% in both Aust., P < 0.05, and NZ, P < 0.01), channel fat (-11.7%, NZ only, P < 0.01), rib fat depth (-11.2%, NZ only, P < 0.05), and carcass fat weight (-7.1%, NZ only, P < 0.05). The results provide strong evidence that this myostatin F94L variant provides an intermediate and more useful phenotype than the more severe double-muscling phenotype caused by knockout mutations in the myostatin gene.
引用
收藏
页码:1038 / 1046
页数:9
相关论文
共 33 条
[1]  
Arnold H., 2001, INT ARCH BIOSCI, V1, P1014
[2]  
Arthur PF, 2001, J ANIM SCI, V79, P2805
[3]   Double muscling in cattle: A review [J].
Arthur, PF .
AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH, 1995, 46 (08) :1493-1515
[4]   HETEROSIS, MATERNAL AND DIRECT EFFECTS IN DOUBLE-MUSCLED AND NORMAL CATTLE .1. REPRODUCTION AND GROWTH TRAITS [J].
ARTHUR, PF ;
MAKARECHIAN, M ;
PRICE, MA ;
BERG, RT .
JOURNAL OF ANIMAL SCIENCE, 1989, 67 (04) :902-910
[5]  
*AUS MEAT LTD, 1998, AUS MEAT HDB AUSTR M
[6]  
Bailey A. J., 1982, Muscle hypertrophy of genetic origin and its use to improve beef production. A seminar in the CEC Programme of Coordination of Research on Beef Production held in Toulouse, France, June 1-12, 1980., P178
[7]  
BELLOWS RA, 1971, J ANIM SCI, V33, P407
[8]   COMPARISON OF SOME OBJECTIVE METHODS USED TO ASSESS MEAT TENDERNESS [J].
BOUTON, PE ;
HARRIS, PV .
JOURNAL OF FOOD SCIENCE, 1972, 37 (02) :218-&
[9]  
Casas E, 2004, J ANIM SCI, V82, P2913
[10]  
Casas E, 1998, J ANIM SCI, V76, P468