Genetic and phenotypic relationships of feed intake and measures of efficiency with growth and carcass merit of beef cattle. 2007

J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
Igenity Livestock Production Business Unit, Merial Ltd., Edmonton, Alberta, T6G 2P5, Canada.

Feed intake and efficiency of growth are economically important traits of beef cattle. This study determined the relationships of daily DMI, feed:gain ratio [F:G, which is the reciprocal of the efficiency of gain (G:F) and therefore increases as the efficiency of gain decreases and vice versa, residual feed intake (RFI), and partial efficiency of growth (efficiency of ADG, PEG) with growth and carcass merit of beef cattle. Residual feed intake was calculated from phenotypic regression (RFIp) or genetic regression (RFIg) of ADG and metabolic BW on DMI. An F1 half-sib pedigree file containing 28 sires, 321 dams, and 464 progeny produced from crosses between Alberta Hybrid cows and Angus, Charolais, or Alberta Hybrid bulls was used. Families averaged 20 progeny per sire (range = 3 to 56). Performance, ultrasound, and DMI data was available on all progeny, of which 381 had carcass data. Phenotypic and genetic parameters were obtained using SAS and ASREML software, respectively. Differences in RFIp and RFIg, respectively, between the most and least efficient steers (i.e., steers with the lowest PEG) were 5.59 and 6.84 kg of DM/d. Heritabilities for DMI, F:G, PEG, RFIp, and RFIg were 0.54 +/- 0.15, 0.41 +/- 0.15, 0.56 +/- 0.16, 0.21 +/- 0.12, and 0.42 +/- 0.15, respectively. The genetic (r = 0.92) and phenotypic (r = 0.97) correlations between RFIp and RFIg indicated that the 2 indices are very similar. Both indices of RFI were favorably correlated phenotypically (P < 0.001) and genetically with DMI, F:G, and PEG. Residual feed intake was tendentiously genetically correlated with ADG (r = 0.46 +/- 0.45) and metabolic BW (r = 0.27 +/- 0.33), albeit with high SE. Genetically, RFIg was independent of ADG and BW but showed a phenotypic correlation with ADG (r = -0.21; P < 0.05). Daily DMI was correlated genetically (r = 0.28) and phenotypically (r = 0.30) with F:G. Both DMI and F:G were strongly correlated with ADG (r > 0.50), but only DMI had strong genetic (r = 0.87 +/- 0.10) and phenotypic (r = 0.65) correlations with metabolic BW. Generally, the phenotypic and genetic correlations of RFI with carcass merit were not different from zero, except genetic correlations of RFI with ultrasound and carcass LM area and carcass lean yield and phenotypic correlations of RFI with backfat thickness (P < 0.01). Daily DMI had moderate to high phenotypic (P < 0.01) and genetic correlations with all the ultrasound and carcass traits. Depending on how RFI technology is applied, adjustment for body composition in addition to growth may be required to minimize the potential for correlated responses to selection in cattle.

UI MeSH Term Description Entries
D008297 Male Males
D008460 Meat The edible portions of any animal used for food including cattle, swine, goats/sheep, poultry, fish, shellfish, and game. Meats
D010641 Phenotype The outward appearance of the individual. It is the product of interactions between genes, and between the GENOTYPE and the environment. Phenotypes
D001823 Body Composition The relative amounts of various components in the body, such as percentage of body fat. Body Compositions,Composition, Body,Compositions, Body
D001947 Breeding The production of offspring by selective mating or HYBRIDIZATION, GENETIC in animals or plants. Breedings
D002417 Cattle Domesticated bovine animals of the genus Bos, usually kept on a farm or ranch and used for the production of meat or dairy products or for heavy labor. Beef Cow,Bos grunniens,Bos indicus,Bos indicus Cattle,Bos taurus,Cow,Cow, Domestic,Dairy Cow,Holstein Cow,Indicine Cattle,Taurine Cattle,Taurus Cattle,Yak,Zebu,Beef Cows,Bos indicus Cattles,Cattle, Bos indicus,Cattle, Indicine,Cattle, Taurine,Cattle, Taurus,Cattles, Bos indicus,Cattles, Indicine,Cattles, Taurine,Cattles, Taurus,Cow, Beef,Cow, Dairy,Cow, Holstein,Cows,Dairy Cows,Domestic Cow,Domestic Cows,Indicine Cattles,Taurine Cattles,Taurus Cattles,Yaks,Zebus
D003433 Crosses, Genetic Deliberate breeding of two different individuals that results in offspring that carry part of the genetic material of each parent. The parent organisms must be genetically compatible and may be from different varieties or closely related species. Cross, Genetic,Genetic Cross,Genetic Crosses
D004435 Eating The consumption of edible substances. Dietary Intake,Feed Intake,Food Intake,Macronutrient Intake,Micronutrient Intake,Nutrient Intake,Nutritional Intake,Ingestion,Dietary Intakes,Feed Intakes,Intake, Dietary,Intake, Feed,Intake, Food,Intake, Macronutrient,Intake, Micronutrient,Intake, Nutrient,Intake, Nutritional,Macronutrient Intakes,Micronutrient Intakes,Nutrient Intakes,Nutritional Intakes
D005260 Female Females
D005838 Genotype The genetic constitution of the individual, comprising the ALLELES present at each GENETIC LOCUS. Genogroup,Genogroups,Genotypes

Related Publications

J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
March 2014, Journal of animal science,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
May 2013, Journal of animal science,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
January 2022, Animal science journal = Nihon chikusan Gakkaiho,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
November 2018, Journal of animal science,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
January 2016, Journal of animal science,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
September 1971, Journal of animal science,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
May 2021, Animal bioscience,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
February 1992, Journal of animal science,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
July 2017, Journal of animal science,
J D Nkrumah, and J A Basarab, and Z Wang, and C Li, and M A Price, and E K Okine, and D H Crews, and S S Moore
November 2018, Journal of animal science,
Copied contents to your clipboard!