Literature DB >> 12462249

Genetic variation in fatness and fatty acid composition of crossbred cattle.

W S Pitchford1, M P B Deland, B D Siebert, A E O Malau-Aduli, C D K Bottema.   

Abstract

Mature Hereford cows (766) were mated to 97 sires from seven breeds (Jersey, Wagyu, Angus, Hereford, South Devon, Limousin, and Belgian Blue), resulting in 1,215 calves born over 4 yr (1994 to 1997). These cattle comprised Australia's 'Southern Crossbreeding Project." Heifers were slaughtered at an average of 16 mo with hot standard carcass weight of 219 kg and 9 mm fat over the rump. Steers were slaughtered at an average of 23 mo with carcass weight of 319 kg and 13 mm fat over the rump. Meat and fat samples were taken from the carcass on the day after slaughter for subsequent laboratory analysis of i.m. fat content and fatty acid composition. Data were analyzed using uni- and bivariate animal models containing fixed effects of cohort, management group, birth month, and sire breed. March-born calves had fat with a 0.5 degrees C lower melting point, 0.6% higher total monounsaturated fatty acids, and 0.7% higher fatty acid desaturation index than calves born in April. Steers born in 1997 were the only cohort finished on pasture, and they had much more yellow fat than the other cohorts. Four heavy breed crosses (Angus, South Devon, Limousin, and Belgian Blue) averaged 284 kg carcass weight, followed by purebred Hereford (268 kg), Wagyu (244 kg) and Jersey (236 kg). Angus had the greatest fat depth (14.3 mm), ahead of Hereford and Wagyu (11.9 mm), Jersey (10.7 mm), South Devon and Limousin (9.9 mm) and Belgian Blue (8.0 mm). Jersey, Wagyu, and Angus had themost i.m. fat (4.6%), followed by Hereford and South Devon (3.8%), and Limousin and Belgian Blue (3.1%). The highly marbled Jersey and Wagyu had softer fat (6% lower fat melting point) than the other breeds. Angus were more highly marbled, similar to Jersey and Wagyu, but had harder fat similar to the leaner breeds. Heritabilities for all traits were low to moderate (16 to 36%). Genetic correlations between fatty add composition and carcass traits were not significant, indicating little evidence of antagonisms between traits that would prevent genetic progress in both production and quality.

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Year:  2002        PMID: 12462249     DOI: 10.2527/2002.80112825x

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


  23 in total

1.  Differences in delta9 desaturase activity between Jersey- and Limousin-sired cattle.

Authors:  B D Siebert; W S Pitchford; Z A Kruk; H Kuchel; M P B Deland; C D K Bottema
Journal:  Lipids       Date:  2003-05       Impact factor: 1.880

2.  Effect of low vitamin A status on fat deposition and fatty acid desaturation in beef cattle.

Authors:  B D Siebert; Z A Kruk; J Davis; W S Pitchford; G S Harper; C D K Bottema
Journal:  Lipids       Date:  2006-04       Impact factor: 1.880

3.  Genetic correlation estimates between beef fatty acid profile with meat and carcass traits in Nellore cattle finished in feedlot.

Authors:  Fabieli Loise Braga Feitosa; Bianca Ferreira Olivieri; Carolyn Aboujaoude; Angélica Simone Cravo Pereira; Marcos Vinicius Antunes de Lemos; Hermenegildo Lucas Justino Chiaia; Mariana Piatto Berton; Elisa Peripolli; Adrielle Matias Ferrinho; Lenise Freitas Mueller; Mônica Roberta Mazalli; Lucia Galvão de Albuquerque; Henrique Nunes de Oliveira; Humberto Tonhati; Rafael Espigolan; Rafael Lara Tonussi; Rafael Medeiros de Oliveira Silva; Daniel Gustavo Mansan Gordo; Ana Fabrícia Braga Magalhães; Ignacio Aguilar; Fernando Baldi
Journal:  J Appl Genet       Date:  2016-07-30       Impact factor: 3.240

4.  Phenotypic and genetic correlations of fatty acid composition in subcutaneous adipose tissue with carcass merit and meat tenderness traits in Canadian beef cattle.

Authors:  C Ekine-Dzivenu; M Vinsky; J A Basarab; J L Aalhus; M E R Dugan; C Li
Journal:  J Anim Sci       Date:  2017-12       Impact factor: 3.159

5.  Association study between copy number variation and beef fatty acid profile of Nellore cattle.

Authors:  Marcos Vinicius Antunes de Lemos; Elisa Peripolli; Mariana Piatto Berton; Fabiele Loise Braga Feitosa; Bianca Ferreira Olivieri; Nedenia Bonvino Stafuzza; Rafael Lara Tonussi; Sabrina Kluska; Hermenegildo Lucas Justino Chiaia; Lenise Mueller; Adrielli Mathias Ferrinho; Angelica Simone Cravo Prereira; Henrique Nunes de Oliveira; Lucia Galvão de Albuquerque; Fernando Baldi
Journal:  J Appl Genet       Date:  2018-03-08       Impact factor: 3.240

6.  Fatty acid profile, mineral content, and palatability of beef from a multibreed Angus-Brahman population.

Authors:  Sarah Flowers; Heather Hamblen; Joel D Leal-Gutiérrez; Mauricio A Elzo; Dwain D Johnson; Raluca G Mateescu
Journal:  J Anim Sci       Date:  2018-09-29       Impact factor: 3.159

7.  Major effect of retinal short-chain dehydrogenase reductase (RDHE2) on bovine fat colour.

Authors:  Rugang Tian; Neil G Cullen; Chris A Morris; Paul J Fisher; Wayne S Pitchford; Cynthia D K Bottema
Journal:  Mamm Genome       Date:  2012-03-24       Impact factor: 2.957

8.  Genetic background and diet impact beef fatty acid composition and stearoyl-CoA desaturase mRNA expression.

Authors:  Ana S H Costa; Marta P Silva; Cristina P M Alfaia; Virgínia M R Pires; Carlos M G A Fontes; Rui J B Bessa; José A M Prates
Journal:  Lipids       Date:  2013-03-07       Impact factor: 1.880

9.  Discovery of novel genetic networks associated with 19 economically important traits in beef cattle.

Authors:  Zhihua Jiang; Jennifer J Michal; Jie Chen; Tyler F Daniels; Tanja Kunej; Matthew D Garcia; Charles T Gaskins; Jan R Busboom; Leeson J Alexander; Raymond W Wright; Michael D Macneil
Journal:  Int J Biol Sci       Date:  2009-07-29       Impact factor: 6.580

10.  Effect of 2,4-thiazolidinedione on limousin cattle growth and on muscle and adipose tissue metabolism.

Authors:  M Arévalo-Turrubiarte; L González-Dávalos; A Yabuta; J D Garza; J L Dávalos; O Mora; A Shimada
Journal:  PPAR Res       Date:  2012-12-06       Impact factor: 4.964

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