4.7 Article

Phenotypic and genetic associations between feeding behavior and carcass merit in crossbred growing cattle

Journal

JOURNAL OF ANIMAL SCIENCE
Volume 99, Issue 12, Pages -

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1093/jas/skab285

Keywords

carcass weight; genetic correlations; response to selection

Funding

  1. Department of Agriculture, Food and the Marine, Ireland Research Stimulus Fund [17/S/235]

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The study found weak phenotypic correlations but strong genetic correlations between feeding behavior and ultrasound and carcass traits in growing crossbred Bos taurus cattle, suggesting that selection for improved carcass merit may lead to changes in feeding behavior.
In growing cattle, the phenotypic and genetic relationships between feeding behavior and both live animal ultrasound measures and subsequent carcass merit are generally poorly characterized. The objective of the current study was to quantify the phenotypic and genetic associations between a plethora of feeding behavior traits with both pre-slaughter ultrasound traits and post-slaughter carcass credentials in crossbred Bos taurus cattle. Carcass data were available on 3,146 young bulls, steers, and heifers, of which 2,795 and 2,445 also had records for pre-slaughter ultrasound muscle depth and intramuscular fat percentage, respectively; a total of 1,548 steers and heifers had information on all of the feeding behavior, ultrasound, and carcass traits. Young bulls were fed concentrates, while steers and heifers were fed a total mixed ration. Feeding behavior traits were defined based on individual feed events or meal events (i.e., individual feed events grouped into meals). Animal linear mixed models were used to estimate (co)variance components. Phenotypic correlations between feeding behavior and both ultrasound and carcass traits were generally weak and not different from zero, although there were phenotypic correlations of 0.40, 0.26, and 0.37 between carcass weight and feeding rate, energy intake per feed event, and energy intake per meal, respectively. Genetically, cattle that had heavier carcass weights, better carcass conformation, or a higher dressing percentage fed for a shorter time per day (genetic correlations [+/- SE] of -0.46 +/- 0.12, -0.39 +/- 0.11, and -0.50 +/- 0.10, respectively). Genetic correlations of 0.43 +/- 0.12 and 0.68 +/- 0.13 were estimated between dressing difference (i.e., differential between live weight pre-slaughter and carcass weight) and energy intake per feed event and energy intake per meal, respectively. Neither intramuscular fat percentage measured on live animals nor carcass fat score (i.e., a measure of subcutaneous fat cover of the carcass) was genetically associated with any of the feeding behavior traits. The genetic associations between some feeding behavior traits and both ultrasound and carcass traits herein suggested that indirect responses in the feeding behavior of growing cattle from selection for improved carcass merit would be expected. Such changes in feeding behavior patterns in cattle may be reduced by measuring and including feeding behavior in a multipletrait selection index alongside carcass traits.

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