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Potential for selection to improve efficiency of feed use in beef cattle: a review

J. A. Archer, E. C. Richardson, R. M. Herd and P. F. Arthur
50(2) pp.147 - 162


242 articles found in Crossref database.

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Herd Robert M., Arthur Paul F.
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Welch C. M., Thornton K. J., Murdoch G. K., Chapalamadugu K. C., Schneider C. S., Ahola J. K., Hall J. B., Price W. J., Hill R. A.
Journal of Animal Science. 2013 91(12). p.5626
Relationships among performance, residual feed intake, and product quality of progeny from Red Angus sires divergent for maintenance energy EPD1
Welch C. M., Ahola J. K., Hall J. B., Murdoch G. K., Crews D. H., Davis L. C., Doumit M. E., Price W. J., Keenan L. D., Hill R. A.
Journal of Animal Science. 2012 90(13). p.5107
Genome-wide association analysis of feed intake and residual feed intake in Nellore cattle
Santana Miguel HA, Utsunomiya Yuri T, Neves Haroldo HR, Gomes Rodrigo C, Garcia José F, Fukumasu Heidge, Silva Saulo L, Oliveira Junior Gerson A, Alexandre Pâmela A, Leme Paulo R, Brassaloti Ricardo A, Coutinho Luiz L, Lopes Thiago G, Meirelles Flávio V, Eler Joanir P, Ferraz José BS
BMC Genetics. 2014 15(1). p.21
Genetic and phenotypic associations of feed efficiency with growth and carcass traits in Australian Angus cattle1
Torres-Vázquez José Antonio, van der Werf Julius H J, Clark Samuel A
Journal of Animal Science. 2018 96(11). p.4521
Association of mitochondrial function and feed efficiency in poultry and livestock species1
Bottje W. G., Carstens G. E.
Journal of Animal Science. 2009 87(suppl_14). p.E48
Selection for residual feed intake affects appetite and body composition rather than energetic efficiency
Lines D. S., Pitchford W. S., Bottema C. D. K., Herd R. M., Oddy V. H.
Animal Production Science. 2018 58(1). p.175
Quantitative trait loci with effects on feed efficiency traits in Hereford × composite double backcross populations
Márquez G. C., Enns R. M., Grosz M. D., Alexander L. J., MacNeil M. D.
Animal Genetics. 2009 40(6). p.986
The effects of energy metabolism variables on feed efficiency in respiration chamber studies with lactating dairy cows
Guinguina A., Yan T., Bayat A.R., Lund P., Huhtanen P.
Journal of Dairy Science. 2020 103(9). p.7983
Feed efficiency of Nellore cattle selected for postweaning weight
Castilhos André Michel de, Branco Renata Helena, Corvino Tatiana Lucila Sobrinho, Razook Alexander George, Bonilha Sarah Figueiredo Martins, Figueiredo Leopoldo Andrade de
Revista Brasileira de Zootecnia. 2010 39(11). p.2486
Residual feed intake in beef cattle
Arthur J P.F., Herd R.M.
Revista Brasileira de Zootecnia. 2008 37(spe). p.269
Brahman and Brahman crossbred cattle grown on pasture and in feedlots in subtropical and temperate Australia. 3. Feed efficiency and feeding behaviour of feedlot-finished animals
Schutt K. M., Arthur P. F., Burrow H. M.
Animal Production Science. 2009 49(6). p.452
Modelling systems to describe maternal productivity, with the aim of improving beef production efficiency by eliciting practice change
Walmsley B. J., Oddy V. H.
Animal Production Science. 2018 58(1). p.193
Waste energy recovery improves price competitiveness of artificial forage from rapeseed straw
Škapa Stanislav, Vochozka Marek
Clean Technologies and Environmental Policy. 2019 21(5). p.1165
Correlation of Particular Bacterial PCR-Denaturing Gradient Gel Electrophoresis Patterns with Bovine Ruminal Fermentation Parameters and Feed Efficiency Traits
Hernandez-Sanabria Emma, Guan Le Luo, Goonewardene Laksiri A., Li Meiju, Mujibi Denis F., Stothard Paul, Moore Stephen S., Leon-Quintero Monica C.
Applied and Environmental Microbiology. 2010 76(19). p.6338
Responses of dairy cows with divergent residual feed intake as calves to metabolic challenges during midlactation and the nonlactating period
DiGiacomo K., Norris E., Dunshea F.R., Hayes B.J., Marett L.C., Wales W.J., Leury B.J.
Journal of Dairy Science. 2018 101(7). p.6474
Energy requirements and cow/calf efficiency of Nellore and Continental and British Bos taurus × Nellore crosses1
Calegare L., Alencar M. M., Packer I. U., Lanna D. P. D.
Journal of Animal Science. 2007 85(10). p.2413
Reducing GHG emissions through genetic improvement for feed efficiency: effects on economically important traits and enteric methane production
Basarab J.A., Beauchemin K.A., Baron V.S., Ominski K.H., Guan L.L., Miller S.P., Crowley J.J.
Animal. 2013 7 p.303
The Root towards More Circularized Animal Production Systems: From Animal to Territorial Metabolism
De Rosa Marcello, Di Pasquale Jorgelina, Adinolfi Felice
Animals. 2021 11(6). p.1540
Genetic variation in feed consumption, growth, nutrient utilization efficiency and mitochondrial function within a farmed population of channel catfish (Ictalurus punctatus)
Eya Jonathan C., Ashame Martha F., Pomeroy Charles F., Manning Bruce B., Peterson Brian C.
Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology. 2012 163(2). p.211
Genetic parameters for fatty acid composition and feed efficiency traits in Japanese Black cattle
Inoue K., Kobayashi M., Shoji N., Kato K.
Animal. 2011 5(7). p.987
Relationship between residual feed intake and radiated heat loss using infrared thermography in young beef bulls
Thompson S., Schaefer A.L., Crow G.H., Basarab J., Colyn J., Ominski K.
Journal of Thermal Biology. 2018 78 p.304
Onset of puberty and early-life reproduction in Angus females divergently selected for post-weaning residual feed intake
Donoghue K. A., Arthur P. F., Wilkins J. F., Herd R. M.
Animal Production Science. 2011 51(3). p.183
Effect of heat stress and feeding phosphorus levels on pig electron transport chain gene expression
Weller M.M.D.C.A., Alebrante L., Campos P.H.R.F., Saraiva A., Silva B.A.N., Donzele J.L., Oliveira R.F.M., Silva F.F., Gasparino E., Lopes P.S., Guimarães S.E.F.
Animal. 2013 7(12). p.1985
Identification of genomic regions associated with feed efficiency in Nelore cattle
de Oliveira Priscila SN, Cesar Aline SM, do Nascimento Michele L, Chaves Amália S, Tizioto Polyana C, Tullio Rymer R, Lanna Dante PD, Rosa Antonio N, Sonstegard Tad S, Mourao Gerson B, Reecy James M, Garrick Dorian J, Mudadu Maurício A, Coutinho Luiz L, Regitano Luciana CA
BMC Genetics. 2014 15(1).
Hens That Exhibit Poorer Feed Efficiency Produce Eggs with Lower Albumen Quality and Are Prone to Being Overweight
Anene Doreen Onyinye, Akter Yeasmin, Thomson Peter Campbell, Groves Peter, Liu Sonia, O’Shea Cormac John
Animals. 2021 11(10). p.2986
Residual feed intake, carcass traits and meat quality in Nellore cattle
Fidelis H.A., Bonilha S.F.M., Tedeschi L.O., Branco R.H., Cyrillo J.N.S.G., Mercadante M.E.Z.
Meat Science. 2017 128 p.34
Genetic parameters for residual feed intake in growing pigs, with emphasis on genetic relationships with carcass and meat quality traits
Gilbert H., Bidanel J.-P., Gruand J., Caritez J.-C., Billon Y., Guillouet P., Lagant H., Noblet J., Sellier P.
Journal of Animal Science. 2007 85(12). p.3182
Relationships between residual feed intake and hepatic mitochondrial function in growing beef cattle1
Lancaster P. A., Carstens G. E., Michal J. J., Brennan K. M., Johnson K. A., Davis M. E.
Journal of Animal Science. 2014 92(7). p.3134
Efficient design for doing genetic studies of feed efficiency in Atlantic salmon (Salmo salar)
Kolstad Kari, Meuwissen Theo H.E., Gjerde Bjarne
Aquaculture. 2005 247(1-4). p.153
Identification of a metabolomic signature associated with feed efficiency in beef cattle
Novais Francisco José, Pires Pedro Ratto Lisboa, Alexandre Pâmela Almeida, Dromms Robert A, Iglesias Amadeu Hoshi, Ferraz José Bento Sterman, Styczynski Mark Philip-Walter, Fukumasu Heidge
BMC Genomics. 2019 20(1).
Estimation of genetic parameters for weight traits and Kleiber Index in a Brahman cattle population
Manuel Matos, Cavani Ligia, Millen Danilo Domingues, Andrighetto Cristiana, Lupatini Gelci Carlos, Fonseca Ricardo da
Scientia Agricola. 2019 76(6). p.459
Genetic parameters for dry matter, energy and protein intake, and their relationships with performance and carcass traits in Japanese Black cattle
Hoque M.A., Hosono M., Suzuki K.
Journal of Animal Breeding and Genetics. 2009 126(1). p.14
Specific microbiome-dependent mechanisms underlie the energy harvest efficiency of ruminants
Shabat Sheerli Kruger Ben, Sasson Goor, Doron-Faigenboim Adi, Durman Thomer, Yaacoby Shamay, Berg Miller Margret E, White Bryan A, Shterzer Naama, Mizrahi Itzhak
The ISME Journal. 2016 10(12). p.2958
Meat quality of young Nellore bulls with low and high residual feed intake
Zorzi K., Bonilha S.F.M., Queiroz A.C., Branco R.H., Sobrinho T.L., Duarte M.S.
Meat Science. 2013 93(3). p.593
Hormonal growth implants affect feed efficiency and expression of residual feed intake-associated genes in beef cattle
Al-Husseini W., Gondro C., Quinn K., Cafe L. M., Herd R. M., Gibson J. P., Greenwood P. L., Chen Y.
Animal Production Science. 2014 54(5). p.550
Prediction of residual feed intake for first-lactation dairy cows using orthogonal polynomial random regression
Manafiazar G., McFadden T., Goonewardene L., Okine E., Basarab J., Li P., Wang Z.
Journal of Dairy Science. 2013 96(12). p.7991
Productivity of steers of different genotypes: forecast based on interior indicators
Slozhenkina M.I., Gorlov I.F., Shakhbazova O.P., Radjabov R.G., Ivanova N.V., Mosolova D.A., Knyazhechenko O.A., Poorghasemi M.R., Seidavi A.R.
Arquivo Brasileiro de Medicina Veterinária e Zootecnia. 2020 72(6). p.2279
Fine mapping quantitative trait loci for feed intake and feed efficiency in beef cattle1
Sherman E. L., Nkrumah J. D., Li C., Bartusiak R., Murdoch B., Moore S. S.
Journal of Animal Science. 2009 87(1). p.37
Linkage of microbial ecology to phenotype: correlation of rumen microbial ecology to cattle's feed efficiency
Guan Le Luo, Nkrumah Joshua D., Basarab John A., Moore Stephen S.
FEMS Microbiology Letters. 2008 288(1). p.85
Effects of divergent selection for serum insulin-like growth factor-I concentration on performance, feed efficiency, and ultrasound measures of carcass composition traits in Angus bulls and heifers
Lancaster P. A., Carstens G. E., Ribeiro F. R. B., Davis M. E., Lyons J. G., Welsh T. H.
Journal of Animal Science. 2008 86(11). p.2862
Random regression analyses of feed intake of individually tested beef steers
Schenkel F.S., Devitt C.J.B., Wilton J.W., Miller S.P., Jamrozik J.
Livestock Production Science. 2004 88(1-2). p.129
Residual feed intake as selection tool in South African Bonsmara cattle
Steyn Y., van Marle-Köster E., Theron H.E.
Livestock Science. 2014 164 p.35
Phenotypic association between feed efficiency and feeding behavior, growth and carcass traits in Senepol cattle
Guimarães André Lasmar, Mercadante Maria Eugênia Zerlotti, Canesin Roberta Carrilho, Branco Renata Helena, Lima Maria Lucia Pereira, Cyrillo Joslaine Noely dos Santos Gonçalves
Revista Brasileira de Zootecnia. 2017 46(1). p.47
Hayvan Beslemede Rezidüel Yem Tüketimi
ELFAKİ Mahmoud O. A., KILIÇ Ünal
Hayvansal Üretim. 2024 64(2). p.85
Plasma nitrogen isotopic fractionation and feed efficiency in growing beef heifers
Wheadon N. M., McGee M., Edwards G. R., Dewhurst R. J.
British Journal of Nutrition. 2014 111(9). p.1705
Genetic and phenotypic relationships among different measures of growth and feed efficiency in young Charolais bulls
Arthur P.F, Renand G, Krauss D
Livestock Production Science. 2001 68(2-3). p.131
Variance components due to direct genetic, maternal genetic and permanent environmental effect for growth and feed‐efficiency traits in young male Japanese Black cattle
Hoque M. A., Arthur P. F., Hiramoto K., Gilmour A. R., Oikawa T.
Journal of Animal Breeding and Genetics. 2007 124(3). p.102
Relationship between feeding behavior and residual feed intake in growing Brangus heifers
Bingham G. M., Friend T. H., Lancaster P. A., Carstens G. E.
Journal of Animal Science. 2009 87(8). p.2685
Effects of feed efficiency and diet on performance and carcass characteristics in growing wether lambs
Ellison M.J., Cockrum R.R., Means W.J., Meyer A.M., Ritten J., Austin K.J., Cammack K.M.
Small Ruminant Research. 2022 207 p.106611
Relationships among measures of growth performance and efficiency with carcass traits, visceral organ mass, and pancreatic digestive enzymes in feedlot cattle1,2
Mader C. J., Montanholi Y. R., Wang Y. J., Miller S. P., Mandell I. B., McBride B. W., Swanson K. C.
Journal of Animal Science. 2009 87(4). p.1548
Feed efficiency and body composition are related to cortisol response to adrenocorticotropin hormone and insulin-induced hypoglycemia in rams
Knott S.A., Cummins L.J., Dunshea F.R., Leury B.J.
Domestic Animal Endocrinology. 2010 39(2). p.137
Smart Livestock Nutrition (2023)
Zuidhof Martin J., Afrouziyeh Mohammad, van der Klein Sasha A. S., You Jihao
Animal Manure (2022)
Gowtham H. G., Priyanka G., Hariprasad P.
Effects of feeding a novel alfalfa leaf pellet product (ProLEAF MAX) and alfalfa stems (ProFiber Plus) on performance in the feedlot and carcass quality of beef steers
Motsinger Laura A, Young Allen Y, Feuz Ryan, Larsen Ryan, Brady Tevan J, Briggs Reganne K, Bowman Brett, Pratt Chris, Thornton Kara J
Translational Animal Science. 2021 5(3).
Similar feed-intake levels yield no differences in energy utilisation between beef heifers identified as low (efficient) and high (inefficient) for residual feed intake
Vining T. P., Lancaster P. A., DiLorenzo N., Lamb G. C., Vendramini J. M. B.
Animal Production Science. 2024 64(5).
Use of residual feed intake as a selection criterion on the performance and relative development costs of replacement beef heifers
Damiran D., Penner G.B., Larson K., Lardner H.A. (Bart)
The Professional Animal Scientist. 2018 34(2). p.156
Residual feed intake of Angus beef cattle divergently selected for feed conversion ratio
Smith S.N., Davis M.E., Loerch S.C.
Livestock Science. 2010 132(1-3). p.41
Relationships between feed efficiency and puberty in Bos taurus and Bos indicus-influenced replacement beef heifers
Canal Luara B, Fontes Pedro L P, Sanford Carla D, Mercadante Vitor R G, DiLorenzo Nicolas, Lamb G Cliff, Oosthuizen Nicola
Journal of Animal Science. 2020 98(10).
Effect of total mixed ration processing time on ration consistency and beef cattle performance during the early fattening period
Marchesini Giorgio, Cortese Martina, Ughelini Nicola, Ricci Rebecca, Chinello Maria, Contiero Barbara, Andrighetto Igino
Animal Feed Science and Technology. 2020 262 p.114421
Plasma and milk metabolomics in lactating sheep divergent for feed efficiency
Toral Pablo G., Abecia Leticia, Hervás Gonzalo, Yáñez-Ruiz David R., Frutos Pilar
Journal of Dairy Science. 2023 106(6). p.3947
Brain and intestine transcriptome analyses and identification of genes involved in feed conversion efficiency of Yellow River carp (Cyprinus carpio haematopterus)
Zhou Ying, Luo Weiwei, Yu Xiaomu, Liu Qingshan, Tong Jingou
Comparative Biochemistry and Physiology Part D: Genomics and Proteomics. 2019 29 p.221
Different measures of energetic efficiency and their phenotypic relationships with growth, feed intake, and ultrasound and carcass merit in hybrid cattle1
Nkrumah J. D., Basarab J. A., Price M. A., Okine E. K., Ammoura A., Guercio S., Hansen C., Li C., Benkel B., Murdoch B., Moore S. S.
Journal of Animal Science. 2004 82(8). p.2451
The past, present, and future of herbivore impacts on savanna vegetation
Staver A. Carla, Abraham Joel O., Hempson Gareth P., Karp Allison T., Faith J. Tyler
Journal of Ecology. 2021 109(8). p.2804
Short Communication: Association analyses of a single nucleotide polymorphism in the promoter of OLR1 with growth, feed efficiency, fat deposition, and carcass merit traits in hybrid, Angus and Charolais beef cattle
Vinsky Michael, Islam Khandker, Chen Liuhong, Li Changxi
Canadian Journal of Animal Science. 2013 93(2). p.193
CELL BIOLOGY SYMPOSIUM: Genetics of feed efficiency in dairy and beef cattle1
Berry D. P., Crowley J. J.
Journal of Animal Science. 2013 91(4). p.1594
Residual feed intake adjusted for backfat thickness and feeding frequency is independent of fertility in beef heifers
Basarab J. A., Colazo M. G., Ambrose D. J., Novak S., McCartney D., Baron V. S.
Canadian Journal of Animal Science. 2011 91(4). p.573
Genetic parameters for quality traits by non-invasive methods and their G x E interactions in ocean cages and estuaries on gilthead seabream (Sparus aurata)
Elalfy I., Shin H.S., Negrín-Báez D., Navarro A., Zamorano M.J., Manchado M., Afonso J.M.
Aquaculture. 2021 537 p.736462
Thermal Profiles: Novel phenotypic measurements of animal growth and metabolic efficiency
Schaefer A.L., Iheshiulor O., von Gaza H., Charagu P., Simpson G., Huisman A.
Journal of Thermal Biology. 2023 113 p.103537
Greenhouse Gas Emissions from Calf- and Yearling-Fed Beef Production Systems, With and Without the Use of Growth Promotants
Basarab John, Baron Vern, López-Campos Óscar, Aalhus Jennifer, Haugen-Kozyra Karen, Okine Erasmus
Animals. 2012 2(2). p.195
Heritability and genetic correlation for residual feed intake of Pacific abalone Haliotis discus hannai
Yu Wenchao, Liu Junyu, Yu Feng, Shen Yawei, Gong Shihai, Lu Yisha, Peng Wenzhu, Wang Yi, Gan Yang, Xiao Qizhen, Luo Xuan, You Weiwei, Ke Caihuan
Aquaculture. 2022 553 p.738060
Residual feed intake and relationships with performance of Nellore cattle selected for post weaning weight
Lucila Sobrinho T., Branco R.H., Bonilha S.F.M., Castilhos A.M., Figueiredo L.A., Razook A.G., Mercadante M.E.Z.
Revista Brasileira de Zootecnia. 2011 40(4). p.929
Fibrolytic enzymes and a ferulic acid esterase‐producing bacterial additive applied to alfalfa hay at baling: effects on fibre digestibility, chemical composition and conservation characteristics
Lynch J. P., Jin L., Church J. S., Baah J., Beauchemin K. A.
Grass and Forage Science. 2015 70(1). p.85
Analysis of biological networks and biological pathways associated with residual feed intake in beef cattle
Karisa Brian, Moore Stephen, Plastow Graham
Animal Science Journal. 2014 85(4). p.374
Expression of growth genes in response to glycerol use in Japanese quail diets
Gasparino E., Oliveira Neto A.R., Del Vesco A.P., Pires A.V., Batista E., Voltolini D.M., Souza K.R.S.
Genetics and Molecular Research. 2012 11(3). p.3063
Genomic Regions Associated with Feed Efficiency Indicator Traits in an Experimental Nellore Cattle Population
Olivieri Bianca Ferreira, Mercadante Maria Eugênia Zerlotti, Cyrillo Joslaine Noely dos Santos Gonçalves, Branco Renata Helena, Bonilha Sarah Figueiredo Martins, de Albuquerque Lucia Galvão, Silva Rafael Medeiros de Oliveira, Baldi Fernando, PENA i SUBIRÀ Ramona Natacha
PLOS ONE. 2016 11(10). p.e0164390
Relationships of feedlot feed efficiency, performance, and feeding behavior with metabolic rate, methane production, and energy partitioning in beef cattle1
Nkrumah J. D., Okine E. K., Mathison G. W., Schmid K., Li C., Basarab J. A., Price M. A., Wang Z., Moore S. S.
Journal of Animal Science. 2006 84(1). p.145
Family differences in feed efficiency in Atlantic salmon (Salmo salar)
Kolstad Kari, Grisdale-Helland Barbara, Gjerde Bjarne
Aquaculture. 2004 241(1-4). p.169
In search for indirect criteria to improve residual feed intake in sea bass (Dicentrarchus labrax)
Grima Laure, Vandeputte Marc, Ruelle François, Vergnet Alain, Mambrini Muriel, Chatain Béatrice
Aquaculture. 2010 300(1-4). p.50
Inter-relationships among alternative definitions of feed efficiency in grazing lactating dairy cows
Hurley A.M., López-Villalobos N., McParland S., Kennedy E., Lewis E., O'Donovan M., Burke J.L., Berry D.P.
Journal of Dairy Science. 2016 99(1). p.468
Genetic divergence in residual feed intake affects growth, feed efficiency, carcass and meat quality characteristics of Angus steers in a large commercial feedlot
Herd R. M., Arthur P. F., Bottema C. D. K., Egarr A. R., Geesink G. H., Lines D. S., Piper S., Siddell J. P., Thompson J. M., Pitchford W. S.
Animal Production Science. 2018 58(1). p.164
Partial utilization efficiencies of protein and methionine by barramundi (Lates calcarifer) in response to dietary methionine source and form
Poppi David A, Glencross Brett D
Aquaculture Research. 2018 49(7). p.2518
Interrelations between the rumen microbiota and production, behavioral, rumen fermentation, metabolic, and immunological attributes of dairy cows
Schären M., Frahm J., Kersten S., Meyer U., Hummel J., Breves G., Dänicke S.
Journal of Dairy Science. 2018 101(5). p.4615
The IoT-based weighing system for growth monitoring and evaluation of fattening process in beef cattle farm
2022 Joint International Conference on Digital Arts, Media and Technology with ECTI Northern Section Conference on Electrical, Electronics, Computer and Telecommunications Engineering (ECTI DAMT & NCON) (2022)
Noinan Khunkanok, Wicha Santichai, Chaisricharoen Roungsan
Effect of residual feed intake on hypothalamic gene expression and meat quality in Angus-sired cattle grown during the hot season1,2
Perkins S. D., Key C. N., Marvin M. N., Garrett C. F., Foradori C. D., Bratcher C. L., Kriese-Anderson L. A., Brandebourg T. D.
Journal of Animal Science. 2014 92(4). p.1451
Impact of reduced marker set estimation of genomic relationship matrices on genomic selection for feed efficiency in Angus cattle
Rolf Megan M, Taylor Jeremy F, Schnabel Robert D, McKay Stephanie D, McClure Matthew C, Northcutt Sally L, Kerley Monty S, Weaber Robert L
BMC Genetics. 2010 11(1).
A prototype national cattle evaluation for feed intake and efficiency of Angus cattle1,2
MacNeil M. D., Lopez-Villalobos N., Northcutt S. L.
Journal of Animal Science. 2011 89(12). p.3917
Precision livestock feeding: matching nutrient supply with nutrient requirements of individual animals
Zuidhof M.J.
Journal of Applied Poultry Research. 2020 29(1). p.11
Lowering ruminant methane emissions through improved feed conversion efficiency
Waghorn G.C., Hegarty R.S.
Animal Feed Science and Technology. 2011 166-167 p.291
Assessment of the Microbial Ecology of Ruminal Methanogens in Cattle with Different Feed Efficiencies
Zhou Mi, Hernandez-Sanabria Emma, Guan Le Luo
Applied and Environmental Microbiology. 2009 75(20). p.6524
Overview of Metabolomic Analysis and the Integration with Multi-Omics for Economic Traits in Cattle
Hao Dan, Bai Jiangsong, Du Jianyong, Wu Xiaoping, Thomsen Bo, Gao Hongding, Su Guosheng, Wang Xiao
Metabolites. 2021 11(11). p.753
Beneficial Microorganisms in Multicellular Life Forms (2012)
Mizrahi Itzhak
Gene expression differences in Longissimus muscle of Nelore steers genetically divergent for residual feed intake
Tizioto Polyana C., Coutinho Luiz L., Oliveira Priscila S. N., Cesar Aline S. M., Diniz Wellison J. S., Lima Andressa O., Rocha Marina I., Decker Jared E., Schnabel Robert D., Mourão Gerson B., Tullio Rymer R., Zerlotini Adhemar, Taylor Jeremy F., Regitano Luciana C. A.
Scientific Reports. 2016 6(1).
Phenotypic and genetic relationships for feed intake, feed efficiency, body composition and cow milk yield measured postweaning and in mature beef cows
Archer J. A., Reverter A., Herd R. M., Arthur P. F., Mortimer Suzanne
Animal Production Science. 2023 63(15). p.1473
QTLs associated with dry matter intake, metabolic mid-test weight, growth and feed efficiency have little overlap across 4 beef cattle studies
Saatchi Mahdi, Beever Jonathan E, Decker Jared E, Faulkner Dan B, Freetly Harvey C, Hansen Stephanie L, Yampara-Iquise Helen, Johnson Kristen A, Kachman Stephen D, Kerley Monty S, Kim JaeWoo, Loy Daniel D, Marques Elisa, Neibergs Holly L, Pollak E John, Schnabel Robert D, Seabury Christopher M, Shike Daniel W, Snelling Warren M, Spangler Matthew L, Weaber Robert L, Garrick Dorian J, Taylor Jeremy F
BMC Genomics. 2014 15(1).
Genetic and phenotypic relationships of feed intake and measures of efficiency with growth and carcass merit of beef cattle1
Nkrumah J. D., Basarab J. A., Wang Z., Li C., Price M. A., Okine E. K., Crews D. H., Moore S. S.
Journal of Animal Science. 2007 85(10). p.2711
Genetic analysis of growth efficiency-related traits in Mazandaran native chickens
Gholizadeh Mohsen, Hafezian Hasan
Livestock Science. 2022 264 p.105040
The effect of glycerol on mRNA expression of growth hormone, insulin-like growth factor, and mitochondrial breast muscle genes of Japanese quail
Gasparino E., Guimarães S.E.F., Neto A.R. Oliveira, Martins E.N., Lopes P.S., Batista E., Vesco A.P.D.
British Poultry Science. 2012 53(4). p.497
Systems Biology in Animal Production and Health, Vol. 2 (2016)
Fukumasu Heidge, Santana Miguel Henrique, Alexandre Pamela Almeida, Ferraz José Bento Sterman
Accuracy of predicting genomic breeding values for residual feed intake in Angus and Charolais beef cattle1
Chen L., Schenkel F., Vinsky M., Crews D. H., Li C.
Journal of Animal Science. 2013 91(10). p.4669
Stochastic simulation of the cost of home-produced feeds for ruminant livestock systems
FINNERAN E., CROSSON P., O'KIELY P., SHALLOO L., FORRISTAL D., WALLACE M.
The Journal of Agricultural Science. 2012 150(1). p.123
Systems Biology Reveals NR2F6 and TGFB1 as Key Regulators of Feed Efficiency in Beef Cattle
Alexandre Pâmela A., Naval-Sanchez Marina, Porto-Neto Laercio R., Ferraz José Bento S., Reverter Antonio, Fukumasu Heidge
Frontiers in Genetics. 2019 10
Effects of residual feed intake classification and method of alfalfa processing on ewe intake and growth
Redden R. R., Surber L. M. M., Grove A. V., Kott R. W.
Journal of Animal Science. 2014 92(2). p.830
Effect of olive pomace as supplement on growth, carcass and meat characteristics of Karadi lambs
SALIH SHAWNM, MAHMOOD AYAD
The Indian Journal of Animal Sciences. 2023 93(10).
Global liver gene expression differences in Nelore steers with divergent residual feed intake phenotypes
Tizioto Polyana C, Coutinho Luiz L, Decker Jared E, Schnabel Robert D, Rosa Kamila O, Oliveira Priscila SN, Souza Marcela M, Mourão Gerson B, Tullio Rymer R, Chaves Amália S, Lanna Dante PD, Zerlotini-Neto Adhemar, Mudadu Mauricio A, Taylor Jeremy F, Regitano Luciana CA
BMC Genomics. 2015 16(1).
Transcriptome Profiling of the Liver in Nellore Cattle Phenotypically Divergent for RFI in Two Genetic Groups
Serna-García Marta, Fonseca Larissa Fernanda Simielli, Panadero Romero Joaquin Javier, Carretero Asuncion Julian, dos Santos Silva Danielly Beraldo, Salatta Bruna Maria, Frezarim Gabriela Bonfá, Mercadante Maria Eugênia Zerlotti, Bonilha Sarah Figueiredo Martins, Ferro Jesus Aparecido, De Albuquerque Lucia Galvão
Animals. 2023 13(3). p.359
Variation in residual feed intake in Holstein-Friesian dairy heifers in southern Australia
Williams Y.J., Pryce J.E., Grainger C., Wales W.J., Linden N., Porker M., Hayes B.J.
Journal of Dairy Science. 2011 94(9). p.4715
CASE STUDY: Searching for the Ultimate Cow: The Economic Value of Residual Feed Intake at Bull Sales
McDonald T.J., Brester G.W., Bekkerman A., Paterson J.A.
The Professional Animal Scientist. 2010 26(6). p.655
Growth performance, feed digestibility, body composition, and feeding behavior of high– and low–residual feed intake fat-tailed lambs under moderate feed restriction1
Rajaei Sharifabadi H., Naserian A. A., Valizadeh R., Nassiry M. R., Bottje W. G., Redden R. R.
Journal of Animal Science. 2016 94(8). p.3382
Genetics of steer daily and residual feed intake in two tropical beef genotypes, and relationships among intake, body composition, growth and other post-weaning measures
Barwick S. A., Wolcott M. L., Johnston D. J., Burrow H. M., Sullivan M. T.
Animal Production Science. 2009 49(6). p.351
Suckler cow efficiency – breed by environment interactions in commercial herds under various natural production conditions
Wetlesen M. S., Åby B. A., Vangen O., Aass L.
Acta Agriculturae Scandinavica, Section A — Animal Science. 2018 68(4). p.161
Using gene expression information obtained by quantitative real-time PCR to evaluate Angus bulls divergently selected for feed efficiency
Chen Y., Arthur P. F., Barchia I. M., Quinn K., Parnell P. F., Herd R. M.
Animal Production Science. 2012 52(11). p.1058
Evaluation of the effect of alternative measurements of body weight gain and dry matter intake for the calculation of residual feed intake in growing purebred Charolais and Red Angus cattle1
Kayser W., Glaze J. B., Welch C. M., Kerley M., Hill R. A.
Journal of Animal Science. 2015 93(7). p.3675
Preweaning performance and body composition of calves from straightbred Nellore and Bos taurus × Nellore crosses1
Calegare L., Alencar M. M., Packer I. U., Leme P. R., Ferrell C. L., Lanna D. P. D.
Journal of Animal Science. 2009 87(5). p.1814
Maternal productivity of Angus cows divergently selected for post-weaning residual feed intake
Arthur P. F., Herd R. M., Wilkins J. F., Archer J. A.
Australian Journal of Experimental Agriculture. 2005 45(8). p.985
Divergent breeding values for fatness or residual feed intake in Angus cattle. 5. Cow genotype affects feed efficiency and maternal productivity
Hebart M. L., Accioly J. M., Copping K. J., Deland M. P. B., Herd R. M., Jones F. M., Laurence M., Lee S. J., Lines D. S., Speijers E. J., Walmsley B. J., Pitchford W. S.
Animal Production Science. 2018 58(1). p.80
Effect of Dietary Supplementation with Lipids of Different Unsaturation Degree on Feed Efficiency and Milk Fatty Acid Profile in Dairy Sheep
Hervás Gonzalo, Toral Pablo G., Fernández-Díez Cristina, Badia Antonella Della, Frutos Pilar
Animals. 2021 11(8). p.2476
Relationships of feeding behaviors with efficiency in RFI-divergent Japanese Black cattle1
McGee M., Ramirez J. A., Carstens G. E., Price W. J., Hall J. B., Hill R. A.
Journal of Animal Science. 2014 92(8). p.3580
Variation in residual feed intake depends on feed on offer
Pitchford W. S., Lines D. S., Wilkes M. J.
Animal Production Science. 2018 58(8). p.1414
Ruminal Bacterial Communities and Metabolome Variation in Beef Heifers Divergent in Feed Efficiency
Clemmons Brooke A., Mulon Pierre-Yves, Anderson David E., Ault-Seay Taylor B., Henniger Madison T., Schneider Liesel G., Staton Meg, Voy Brynn H., Donohoe Dallas R., Campagna Shawn R., McLean Kyle J., Myer Phillip R.
Ruminants. 2022 2(2). p.282
Conservation, fiber digestibility, and nutritive value of corn harvested at 2 cutting heights and ensiled with fibrolytic enzymes, either alone or with a ferulic acid esterase-producing inoculant
Lynch J.P., Baah J., Beauchemin K.A.
Journal of Dairy Science. 2015 98(2). p.1214
A glimpse of the future in animal nutrition science. 2. Current and future solutions
Tedeschi Luis Orlindo, Fonseca Mozart Alves, Muir James Pierre, Poppi Dennis P., Carstens Gordon E., Angerer Jay P., Fox Danny Gene
Revista Brasileira de Zootecnia. 2017 46(5). p.452
Characterization of Variation in Rumen Methanogenic Communities under Different Dietary and Host Feed Efficiency Conditions, as Determined by PCR-Denaturing Gradient Gel Electrophoresis Analysis
Zhou Mi, Hernandez-Sanabria Emma, Guan Le Luo
Applied and Environmental Microbiology. 2010 76(12). p.3776
Performance of lactating suckler cows of diverse genetic merit and genotype under a seasonal pasture-based system
McCabe S., McHugh N., O’Connell N.E., Prendiville R.
Irish Journal of Agricultural and Food Research. 2021 60(1).
Genetic variation in residual feed intake is associated with body composition, behavior, rumen, heat production, hematology, and immune competence traits in Angus cattle1
Herd Robert M, Velazco Jose I, Smith Helen, Arthur Paul F, Hine Brad, Oddy Hutton, Dobos Robin C, Hegarty Roger S
Journal of Animal Science. 2019 97(5). p.2202
Plasma proteins δ15N vs plasma urea as candidate biomarkers of between-animal variations of feed efficiency in beef cattle: Phenotypic and genetic evaluation
Guarnido-Lopez P., Ortigues-Marty I., Taussat S., Fossaert C., Renand G., Cantalapiedra-Hijar G.
Animal. 2021 15(8). p.100318
Genetic parameters for measures of energetic efficiency of bulls and their relationships with carcass traits of field progeny in Japanese Black cattle1
Hoque M. A., Hosono M., Oikawa T., Suzuki K.
Journal of Animal Science. 2009 87(1). p.99
Genetic assessment of residual feed intake as a feed efficiency trait in the Pacific white shrimp Litopenaeus vannamei
Dai Ping, Luan Sheng, Lu Xia, Luo Kun, Meng Xianhong, Cao Baoxiang, Kong Jie
Genetics Selection Evolution. 2017 49(1).
Residual intake and gain for the evaluation of performance, non-carcass components, and carcass characteristics of confined crossbred Texel lambs
Carneiro Mayara Mitiko Yoshihara, Morais Maria da Graça, Souza Andréa Roberto Duarte Lopes, Fernandes Henrique Jorge, Feijó Gelson Luís Dias, Bonin Marina de Nadai, Franco Gumercindo Loriano, Rocha Raizza Fátima Abadia Tulux
Revista Brasileira de Zootecnia. 2019 48
Genome-wide association study for feed efficiency and growth traits in U.S. beef cattle
Seabury Christopher M., Oldeschulte David L., Saatchi Mahdi, Beever Jonathan E., Decker Jared E., Halley Yvette A., Bhattarai Eric K., Molaei Maral, Freetly Harvey C., Hansen Stephanie L., Yampara-Iquise Helen, Johnson Kristen A., Kerley Monty S., Kim JaeWoo, Loy Daniel D., Marques Elisa, Neibergs Holly L., Schnabel Robert D., Shike Daniel W., Spangler Matthew L., Weaber Robert L., Garrick Dorian J., Taylor Jeremy F.
BMC Genomics. 2017 18(1).
Feed Efficiency in the Beef Industry (2012)
Crews D. H. (denny), Carstens Gordon E.
Association of SNP of neuropeptide Y, leptin, and IGF-1 genes with residual feed intake in confinement and under grazing condition in Angus cattle1
Trujillo A. I., Casal A., Peñagaricano F., Carriquiry M., Chilibroste P.
Journal of Animal Science. 2013 91(9). p.4235
Residual feed intake and related biochemical parameters in male Sahiwal calves
BABAN BHONG N, DATT CHANDER, SHARMA PH. SURAJ, DUDI KULDEEP, SHARMA VIJAY K
The Indian Journal of Animal Sciences. 2021 90(10). p.1423
Comparison and relation among different estimates of residual feed intake for Japanese Black (Wagyu) bulls
HOQUE Azharul, OIKAWA Takuro
Animal Science Journal. 2004 75(3). p.201
Residual feed efficiency established in a post-weaning growth test may not result in more efficient ewes on the range
Redden R.R., Surber L.M.M., Roeder B.L., Nichols B.M., Paterson J.A., Kott R.W.
Small Ruminant Research. 2011 96(2-3). p.155
Relationships between restricted residual feed intake of Brahman bulls measured in confinement and under different stocking intensities on Coastal bermudagrass pastures
Wiley L.M., Tedeschi L.O., Forbes T.D.A., Rouquette F.M.
The Professional Animal Scientist. 2016 32(5). p.605
Selection for lower residual feed intake in mice is accompanied by increased body fatness and lower activity but not lower metabolic rate
Hebart M. L., Herd R. M., Oddy V. H., Geiser F., Pitchford W. S.
Animal Production Science. 2021 61(13). p.1303
Impact of Feed Efficiency and Diet on Adaptive Variations in the Bacterial Community in the Rumen Fluid of Cattle
Hernandez-Sanabria Emma, Goonewardene Laksiri A., Wang Zhiquan, Durunna Obioha N., Moore Stephen S., Guan Le Luo
Applied and Environmental Microbiology. 2012 78(4). p.1203
Quantitative trait loci mapping for feed conversion efficiency in crucian carp (Carassius auratus)
Pang Meixia, Fu Beide, Yu Xiaomu, Liu Haiyang, Wang Xinhua, Yin Zhan, Xie Shouqi, Tong Jingou
Scientific Reports. 2017 7(1).
Relationship between body measurements, metabolic hormones, metabolites and residual feed intake in performancetested pedigree beef bulls
Kelly A.K., McGee M., Crews D.H., Lynch C.O., Wylie A.R., Evans R.D., Kenny D.A.
Livestock Science. 2011 135(1). p.8
Effect of breed and diet on the M. longissimus thoracis et lumborum transcriptome of steers divergent for residual feed intake
Keogh Kate, McKenna Clare, Waters Sinead M., Porter Richard K., Fitzsimons Claire, McGee Mark, Kenny David A.
Scientific Reports. 2023 13(1).
Longitudinal analysis of body weight and average daily feed intake during the feedlot test period in Angus cattle
Torres‐Vázquez José Antonio, Duijvesteijn Naomi, van der Werf Julius H. J., Clark Samuel A.
Journal of Animal Breeding and Genetics. 2020 137(3). p.281
The Prokaryotes (2013)
Mizrahi Itzhak
Potential Role of the Bovine Rumen Microbiome in Modulating Milk Composition and Feed Efficiency
Jami Elie, White Bryan A., Mizrahi Itzhak, Heimesaat Markus M.
PLoS ONE. 2014 9(1). p.e85423
A meta-analysis of dry matter intake in Nellore and Zebu-crosses cattle
Azevêdo José Augusto Gomes, Valadares Filho Sebastião de Campos, Pina Douglas dos Santos, Chizzotti Mario Luiz, Valadares Rilene Ferreira Diniz
Revista Brasileira de Zootecnia. 2010 39(8). p.1801
1H-NMR-Based Plasma Metabolomic Profiling of Crossbred Beef Cattle with Divergent RFI Phenotype
Taiwo Godstime, Idowu Modoluwamu, Sidney Taylor, Treon Emily, Ologunagba Deborah, Leal Yarahy, Johnson Samanthia, Taiwo Rhoda Olowe, Adewoye Anjola, Ezeigbo Ephraim, Eichie Francisca, Ogunade Ibukun M.
Ruminants. 2024 4(2). p.182
Fruit and vegetable discards preserved with sodium metabisulfite as a high-moisture ingredient in total mixed ration for ruminants: effect on in vitro ruminal fermentation and in vivo metabolism
Ahmadi Farhad, Lee Won Hee, Oh Young-Kyoon, Park Keunkyu, Kwak Wan Sup
Asian-Australasian Journal of Animal Sciences. 2020 33(3). p.446
Direct and maternal genetic parameters for measures of feed consumption and feed efficiency in young male Japanese Black cattle
Hoque M.A., Hosono M., Suzuki K.
Livestock Science. 2009 122(2-3). p.333
Identification of single nucleotide polymorphisms in genes involved in digestive and metabolic processes associated with feed efficiency and performance traits in beef cattle1,2
Abo-Ismail M. K., Kelly M. J., Squires E. J., Swanson K. C., Bauck S., Miller S. P.
Journal of Animal Science. 2013 91(6). p.2512
Effects of Concentrate and Bypass Fat Supplementations on Growth Performance, Blood Profile, and Rearing Cost of Feedlot Buffaloes
Mohd Azmi Amirul Faiz, Ahmad Hafandi, Mohd Nor Norhariani, Meng Goh Yong, Saad Mohd Zamri, Abu Bakar Md Zuki, Abdullah Punimin, Jayanegara Anuraga, Abu Hassim Hasliza
Animals. 2021 11(7). p.2105
The relationship between mitochondrial function and residual feed intake in Angus steers1
Kolath W. H., Kerley M. S., Golden J. W., Keisler D. H.
Journal of Animal Science. 2006 84(4). p.861
Review: Biological determinants of between-animal variation in feed efficiency of growing beef cattle
Cantalapiedra-Hijar G., Abo-Ismail M., Carstens G.E., Guan L.L., Hegarty R., Kenny D.A., McGee M., Plastow G., Relling A., Ortigues-Marty I.
Animal. 2018 12 p.s321
Residual feed intake, body composition, and fertility in yearling beef heifers12
Shaffer K. S., Turk P., Wagner W. R., Felton E. E. D.
Journal of Animal Science. 2011 89(4). p.1028
Residual feed intake of purebred Angus steers: Effects on meat quality and palatability
Baker S. D., Szasz J. I., Klein T. A., Kuber P. S., Hunt C. W., Glaze J. B., Falk D., Richard R., Miller J. C., Battaglia R. A., Hill R. A.
Journal of Animal Science. 2006 84(4). p.938
Genetic parameters and halothane genotype effect for residual feed intake in Piétrain growing pigs
Saintilan R., Mérour I., Schwob S., Sellier P., Bidanel J., Gilbert H.
Livestock Science. 2011 142(1-3). p.203
Estimation of genomic breeding values for residual feed intake in a multibreed cattle population1
Khansefid M., Pryce J. E., Bolormaa S., Miller S. P., Wang Z., Li C., Goddard M. E.
Journal of Animal Science. 2014 92(8). p.3270
Relationships of feeding behaviors with average daily gain, dry matter intake, and residual feed intake in Red Angus–sired cattle1
McGee M., Welch C. M., Ramirez J. A., Carstens G. E., Price W. J., Hall J. B., Hill R. A.
Journal of Animal Science. 2014 92(11). p.5214
Gene expression profiling of the bovine gastrointestinal tract
Hansen Christiane, Fu Anna, Meng Yan, Okine Erasmus, Hawken Rachel, Barris Wes, Li Changxi, Moore Stephen S
Genome. 2004 47(4). p.639
Genetic relationships of body composition and feed utilization traits in European whitefish (Coregonus lavaretus L.) and implications for selective breeding in fishmeal- and soybean meal-based diet environments1
Quinton C. D., Kause A., Ruohonen K., Koskela J.
Journal of Animal Science. 2007 85(12). p.3198
A review of factors influencing key biological components of maternal productivity in temperate beef cattle
Walmsley B. J., Lee S. J., Parnell P. F., Pitchford W. S.
Animal Production Science. 2018 58(1). p.1
Estimation of herbage intake of Angus heifers from growth rate and milk production selection lines
Martínez JM, Morris ST, Parkinson TJ
New Zealand Journal of Agricultural Research. 2010 53(1). p.29
Influence of nutrition, body condition, and metabolic status on reproduction in female beef cattle: A review
D'Occhio Michael J., Baruselli Pietro S., Campanile Giuseppe
Theriogenology. 2019 125 p.277
Plasticity of gut and metabolic limitations of Deoni calves in comparison to crossbred calves on a high plane of nutrition
Singh Ajay, Srinivas Bandla
Tropical Animal Health and Production. 2020 52(6). p.3365
A review of rumen parameters in bovines with divergent feed efficiencies: What do these parameters tell us about improving animal productivity and sustainability?
Fregulia Priscila, Neves André Luis Alves, Dias Roberto Júnio Pedroso, Campos Mariana Magalhães
Livestock Science. 2021 254 p.104761
Defining breeding objectives for sustainability in cattle: challenges and opportunities
Richardson C. M., Crowley J. J., Amer P. R., Hatcher Sue
Animal Production Science. 2023 63(11). p.931
The effect of breed and diet type on the global transcriptome of hepatic tissue in beef cattle divergent for feed efficiency
Higgins Marc G., Kenny David A., Fitzsimons Claire, Blackshields Gordon, Coyle Séan, McKenna Clare, McGee Mark, Morris Derek W., Waters Sinéad M.
BMC Genomics. 2019 20(1).
Genetic improvement of feed conversion ratio via indirect selection against lipid deposition in farmed rainbow trout (Oncorhynchus mykissWalbaum)
Kause Antti, Kiessling Anders, Martin Samuel A. M., Houlihan Dominic, Ruohonen Kari
British Journal of Nutrition. 2016 116(9). p.1656
A Chihuahuan Desert Brangus Breeding Program: Feed Efficiency, Metabolic Hormones, and Puberty in Heifers Sired by Bulls with Differing Expected Progeny Differences for Growth and Scrotal Circumference
Shirley K.L., Thomas M.G., Keisler D.H., Hallford D.M., Montrose D.M., Silver G.A., Garcia M.D.
The Professional Animal Scientist. 2006 22(1). p.48
A methodology framework for weighting genetic traits that impact greenhouse gas emission intensities in selection indexes
Amer P.R., Hely F.S., Quinton C.D., Cromie A.R.
Animal. 2018 12(1). p.5
Using the difference in actual and expected calf liveweight relative to its dam liveweight as a statistic for interherd and intraherd benchmarking and genetic evaluations1
McHugh Noirin, Evans Ross D, Berry Donagh P
Journal of Animal Science. 2019 97(12). p.4737
Genetic and phenotypic relationships between insulin-like growth factor-I (IGF-I) and net feed intake, fat, and growth traits in Angus beef cattle
Moore K. L., Johnston D. J., Graser H-U., Herd R.
Australian Journal of Agricultural Research. 2005 56(3). p.211
Estimation of genetic correlations of two key feed efficiency traits with production traits in male Hu sheep
Zhao Yuan, Zhang Xiaoxue, Li Fadi, Zhang Deyin, Zhang Yukun, Li Xiaolong, Song Qizhi, Li Chong, Zhao Liming, Wang Jianghui, Xu Dan, Cheng Jiangbo, Li Wenxin, Lin Changchun, Zhou Bubo, Wang Weiming
Animal Biotechnology. 2023 34(7). p.2805
Feed Efficiency in the Beef Industry (2012)
Retallick Keela M., Faulkner Dan B.
Redefining residual feed intake to account for marbling fat in beef breeding programs
Duff C. J., van der Werf J. H. J., Parnell P. F., Clark S. A.
Animal Production Science. 2021 61(18). p.1837
Indicators of genetic variation for feed conversion efficiency in black bream
Doupe Robert G, Lymbery Alan J
Aquaculture Research. 2004 35(14). p.1305
Whole genome single nucleotide polymorphism associations with feed intake and feed efficiency in beef cattle1
Sherman E. L., Nkrumah J. D., Moore S. S.
Journal of Animal Science. 2010 88(1). p.16
Time required to determine performance variables and production efficiency of lactating dairy cows
Asher A., Shabtay A., Haim A., Aharoni Y., Miron J., Adin G., Tamir A., Arieli A., Halachmi I., Moallem U., Orlov A., Brosh A.
Journal of Dairy Science. 2014 97(7). p.4340
Sustainability in Ruminant Livestock (2021)
Rout Pramod Kumar, Behera Basanta Kumara
Genetic relationship between different measures of feed efficiency and its component traits in Japanese Black (Wagyu) bulls
Hoque M.A., Arthur P.F., Hiramoto K., Oikawa T.
Livestock Science. 2006 99(2-3). p.111
Detecting QTL for feed intake traits and other performance traits in growing pigs in a Piétrain–Large White backcross
Gilbert H., Riquet J., Gruand J., Billon Y., Fève K., Sellier P., Noblet J., Bidanel J.P.
Animal. 2010 4(8). p.1308
Effects of early weaning on growth, feed efficiency and carcass traits in Shorthorn cattle
Wolcott M. L., Graser H.-U., Johnston D. J.
Animal Production Science. 2010 50(4). p.315
The effect of breed and individual heterosis on the feed efficiency, performance, and carcass characteristics of feedlot steers1
Retallick K. M., Faulkner D. B., Rodriguez-Zas S. L., Nkrumah J. D., Shike D. W.
Journal of Animal Science. 2013 91(11). p.5161
Transcriptome analyses reveal reduced hepatic lipid synthesis and accumulation in more feed efficient beef cattle
Mukiibi Robert, Vinsky Michael, Keogh Kate A., Fitzsimmons Carolyn, Stothard Paul, Waters Sinéad M., Li Changxi
Scientific Reports. 2018 8(1).
Identification of genetic markers associated with residual feed intake and meat quality traits in the pig
Fan B., Lkhagvadorj S., Cai W., Young J., Smith R.M., Dekkers J.C.M., Huff-Lonergan E., Lonergan S.M., Rothschild M.F.
Meat Science. 2010 84(4). p.645
Growth curve, carcass traits and Kleiber ratio of Dorper crossbreed with hairless native Brazilian sheep breeds
de Rezende Marcos Paulo Gonçalves, Figueiredo Gabriel Chaves, Araujo Johnny Iglesias Mendes, Campos Barbara Machado, Moretti Riccardo, Bozzi Riccardo, Malhado Carlos Henrique Mendes, de Souza Antônio Alcione Oliveira, Carneiro Paulo Luiz Souza
Small Ruminant Research. 2020 192 p.106190
Global gene expression profiling reveals genes expressed differentially in cattle with high and low residual feed intake
Chen Y., Gondro C., Quinn K., Herd R. M., Parnell P. F., Vanselow B.
Animal Genetics. 2011 42(5). p.475
Temperament and performance of Nellore bulls classified for residual feed intake in a feedlot system
GUIMARÃES TIAGO P., RESTLE JOÃO, MOREIRA KÍRIA KAROLLINE G., FREITAS NETO MARCONDES D. DE, SOUZA LEONARDO FREDERICO N., MORAES ÉMERSON G., FERNANDES JULIANO JOSÉ R.
Anais da Academia Brasileira de Ciências. 2020 92(3).
Toward the Genetic Improvement of Feed Conversion Efficiency in Fish
Doupé Robert G., Lymbery Alan J.
Journal of the World Aquaculture Society. 2003 34(3). p.245
Genetic parameters and genome-wide association study regarding feed efficiency and slaughter traits in Charolais cows
Martin Pauline, Taussat Sébastien, Vinet Aurélie, Krauss Daniel, Maupetit David, Renand Gilles
Journal of Animal Science. 2019 97(9). p.3684
Genomic Regions Associated With Skeletal Type Traits in Beef and Dairy Cattle Are Common to Regions Associated With Carcass Traits, Feed Intake and Calving Difficulty
Doyle Jennifer L., Berry Donagh P., Veerkamp Roel F., Carthy Tara R., Walsh Siobhan W., Evans Ross D., Purfield Deirdre C.
Frontiers in Genetics. 2020 11
Phenotypic and genetic relationships of feed efficiency with growth performance, ultrasound, and carcass merit traits in Angus and Charolais steers1
Mao F., Chen L., Vinsky M., Okine E., Wang Z., Basarab J., Crews D. H., Li C.
Journal of Animal Science. 2013 91(5). p.2067
Test duration for growth, feed intake, and feed efficiency in beef cattle using the GrowSafe System1
Wang Z., Nkrumah J. D., Li C., Basarab J. A., Goonewardene L. A., Okine E. K., Crews D. H., Moore S. S.
Journal of Animal Science. 2006 84(9). p.2289
The effect of residual feed intake classification on forage intake by grazing beef cows
Meyer A. M., Kerley M. S., Kallenbach R. L.
Journal of Animal Science. 2008 86(10). p.2670
Rangeland Systems (2017)
Derner Justin D., Hunt Leigh, Filho Kepler Euclides, Ritten John, Capper Judith, Han Guodong
Influence of Diet on Mitochondrial Complex Activity in Channel Catfish
Eya Jonathan C., Ashame Martha F., Pomeroy Charles F.
North American Journal of Aquaculture. 2010 72(3). p.225
Infrared thermography as a tool to evaluate body surface temperature and its relationship with feed efficiency in Bos indicus cattle in tropical conditions
Martello Luciane Silva, da Luz e Silva Saulo, da Costa Gomes Rodrigo, da Silva Corte Rosana Ruegger Pereira, Leme Paulo Roberto
International Journal of Biometeorology. 2016 60(1). p.173
Public policies for low carbon emission agriculture foster beef cattle production in southern Brazil
Costa Jr. Newton Borges da, Baldissera Tiago Celso, Pinto Cassiano Eduardo, Garagorry Fabio Cervo, Moraes Aníbal de, Carvalho Paulo César de Faccio
Land Use Policy. 2019 80 p.269
Effect of direct and indirect selection criteria for efficiency of gain on profitability of Japanese Black cattle selection strategies1
Kahi A. K., Hirooka H.
Journal of Animal Science. 2007 85(10). p.2401
Residual feed intake: a nutritional tool for genetic improvement
Bezerra Leilson Rocha, Sarmento José Lindenberg Rocha, Neto Severino Gonzaga, de Paula Ney Rômulo Oliveira, Oliveira Ronaldo Lopes, do Rêgo Wagner Martins Fontes
Tropical Animal Health and Production. 2013 45(8). p.1649
The relationship between feed efficiency traits and fertility in young beef bulls
Awda B. J., Miller S. P., Montanholi Y. R., Voort G. Vander, Caldwell T., Buhr M. M., Swanson K. C.
Canadian Journal of Animal Science. 2013 93(2). p.185
Buffalo heifers selected for lower residual feed intake have lower feed intake, better dietary nitrogen utilisation and reduced enteric methane production
Sharma V. K., Kundu S. S., Datt C., Prusty S., Kumar M., Sontakke U. B.
Journal of Animal Physiology and Animal Nutrition. 2018 102(2).
JOINT ALPHARMA-BEEF SPECIES SYMPOSIUM: Interactions of feed efficiency with beef heifer reproductive development1
Randel R. D., Welsh T. H.
Journal of Animal Science. 2013 91(3). p.1323
Suckler Bulls Slaughtered at 15 Months of Age: Effect of Different Production Systems on the Fatty Acid Profile and Selected Quality Characteristics of Longissimus Thoracis
Moran Lara, Wilson Shannon S., McElhinney Cormac K., Monahan Frank J., McGee Mark, O’Sullivan Maurice G., O’Riordan Edward G., Kerry Joseph P., Moloney Aidan P.
Foods. 2019 8(7). p.264
Physiological basis for residual feed intake1
Herd R. M., Arthur P. F.
Journal of Animal Science. 2009 87(suppl_14). p.E64
Genetic architecture of quantitative traits in beef cattle revealed by genome wide association studies of imputed whole genome sequence variants: I: feed efficiency and component traits
Zhang Feng, Wang Yining, Mukiibi Robert, Chen Liuhong, Vinsky Michael, Plastow Graham, Basarab John, Stothard Paul, Li Changxi
BMC Genomics. 2020 21(1).
Effects of Temperament on the Reproduction of Beef Cattle
Brandão Alice Poggi, Cooke Reinaldo Fernandes
Animals. 2021 11(11). p.3325
Effects of feeding level on efficiency of high- and low-residual feed intake beef steers
Andreini Emily M, Augenstein Sheyenne M, Fales Carrie S, Sainz Roberto D, Oltjen James W
Journal of Animal Science. 2020 98(10).
Herd of origin effect on weight gain of station-tested beef bulls
Schenkel F.S, Miller S.P, Wilton J.W
Livestock Production Science. 2004 86(1-3). p.93
Evaluation of production efficiencies at pasture of lactating suckler cows of diverse genetic merit and replacement strategy
McCabe S., McHugh N., O’Connell N.E., Prendiville R.
Animal. 2020 14(8). p.1768
Assessing feed efficiency in beef steers through feeding behavior, infrared thermography and glucocorticoids
Montanholi Y.R., Swanson K.C., Palme R., Schenkel F.S., McBride B.W., Lu D., Miller S.P.
Animal. 2010 4(5). p.692
Economic analysis, performance, and feed efficiency in feedlot lambs
Lima Natália Ludmila Lins, Ribeiro Carolina Resende de Freitas, Sá Hemilly Cristina Menezes de, Leopoldino-Júnior Izac, Cavalcanti Luigi Francis Lima, Santana Ronan Aparecido Valadares, Furusho-Garcia Iraides Ferreira, Pereira Idalmo Garcia
Revista Brasileira de Zootecnia. 2017 46(10). p.821
Molecular basis for residual feed intake in beef cattle1
Moore S. S., Mujibi F. D., Sherman E. L.
Journal of Animal Science. 2009 87(suppl_14). p.E41
Relationships of the Microbial Communities with Rumen Epithelium Development of Nellore Cattle Finished in Feedlot Differing in Phenotypic Residual Feed Intake
Silvestre Antonio M., Pinto Ana Carolina J., Schleifer Werner F., Miranda Lidiane S., Silva Leandro A. F., Casali Daniel M., Souza Katia L. R., Gasparini Vanessa G. L., Cruz Gustavo D., Suen Garret, Millen Danilo D.
Animals. 2022 12(7). p.820
Residual feed intake studies in Angus-sired cattle reveal a potential role for hypothalamic gene expression in regulating feed efficiency1,2
Perkins S. D., Key C. N., Garrett C. F., Foradori C. D., Bratcher C. L., Kriese-Anderson L. A., Brandebourg T. D.
Journal of Animal Science. 2014 92(2). p.549
Phenotypic and genetic relationships of residual feed intake measures and their component traits with fatty acid composition in subcutaneous adipose of beef cattle1
Zhang F., Ekine-Dzivenu C., Vinsky M., Basarab J. A., Aalhus J. L., Dugan M. E. R., Li C.
Journal of Animal Science. 2017 95(7). p.2813
Ruminant enteric methane mitigation: a review
Cottle D. J., Nolan J. V., Wiedemann S. G.
Animal Production Science. 2011 51(6). p.491
Feed Efficiency in the Beef Industry (2012)
Arthur Paul F., Herd Robert M.
Divergent genotypes for fatness or residual feed intake in Angus cattle. 7. Low-fat and low-RFI cows produce more liveweight and better gross margins than do high-fat and high-RFI cows when managed under the same conditions
Anderton L., Accioly J. M., Copping K. J., Deland M. P. B., Hebart M. L., Herd R. M., Jones F. M., Laurence M., Lee S. J., Speijers E. J., Walmsley B. J., Pitchford W. S.
Animal Production Science. 2018 58(1). p.103
Selection effect for growth traits on energy requirements in beef Nelore steers
Del Pilar Solar Diaz Iara, Bezerra Luis Antonio Framartino, Lôbo Raysildo Barbosa, de Araújo Neto Francisco Ribeiro, de Camargo Gregório Miguel Ferreira, da Cruz Valdecy Aparecida Rocha, Costa Raphael Bermal, de Oliveira Henrique Nunes
Tropical Animal Health and Production. 2022 54(4).
Effect of cow replacement strategy on cow and calf performance in the beef herd
McCabe S., Prendiville R., Evans R., O’Connell N.E., McHugh N.
Animal. 2019 13(3). p.631
Development and application of a bioeconomic efficiency index for beef cattle production in Rio Grande do Sul, Brazil
Lampert Vinícius do Nascimento, Barcellos Júlio Otávio Jardim, Kliemann Neto Francisco José, Canellas Leonardo Canali, Dill Matheus Dhein, Canozzi Maria Eugênia Andrighetto
Revista Brasileira de Zootecnia. 2012 41(3). p.775
The use of different models for the estimation of residual feed intake (RFI) as a measure of feed efficiency in meat sheep
Knott S.A., Cummins L.J., Dunshea F.R., Leury B.J.
Animal Feed Science and Technology. 2008 143(1-4). p.242
Distinctive roles between rumen epimural and content bacterial communities on beef cattle feed efficiency: A combined analysis
Zhou Mi, Ghoshal Bibaswan, Stothard Paul, Guan Le Luo
Current Research in Microbial Sciences. 2021 2 p.100085
Emerging Issues in Climate Smart Livestock Production (2022)
Gupta Bharti, Balakrishna S. Lokeswara, Singh Kshitij R.B., Sridevi Parikipandla, Singh Ravindra Pratap
Transcriptomic analysis by RNA sequencing reveals that hepatic interferon-induced genes may be associated with feed efficiency in beef heifers1
Paradis F., Yue S., Grant J. R., Stothard P., Basarab J. A., Fitzsimmons C.
Journal of Animal Science. 2015 93(7). p.3331
Growth efficiency of ewe lambs classified into residual feed intake groups and pen fed a restricted amount of feed
Redden R.R., Surber L.M.M., Grove A.V., Kott R.W.
Small Ruminant Research. 2013 114(2-3). p.214
Genetic parameters for carcass traits of field progeny and their relationships with feed efficiency traits of their sire population for Japanese Black cattle
Hoque M.A., Arthur P.F., Hiramoto K., Oikawa T.
Livestock Science. 2006 100(2-3). p.251
Validation of the Residual Feed Intake Model in Brangus Heifers: Determination of the Optimal Days on Feed Interval to Estimate Dry Matter Intake and Average Daily Gain
Mahler Lauren E., Mullenix Mary Kimberly, Brandebourg Terry D., Kriese-Anderson Lisa A.
Animals. 2024 14(14). p.2044
Rams with poor feed efficiency are highly responsive to an exogenous adrenocorticotropin hormone (ACTH) challenge
Knott S.A., Cummins L.J., Dunshea F.R., Leury B.J.
Domestic Animal Endocrinology. 2008 34(3). p.261
Body chemical composition of Nellore bulls with different residual feed intakes1
Bonilha E. F. M., Branco R. H., Bonilha S. F. M., Araujo F. L., Magnani E., Mercadante M. E. Z.
Journal of Animal Science. 2013 91(7). p.3457
Relationships between feeding behaviour, activity, dominance and feed efficiency in finishing beef steers
Haskell Marie J., Rooke John A., Roehe Rainer, Turner Simon P., Hyslop James J., Waterhouse Anthony, Duthie Carol-Anne
Applied Animal Behaviour Science. 2019 210 p.9
Primary genome scan to identify putative quantitative trait loci for feedlot growth rate, feed intake, and feed efficiency of beef cattle1
Nkrumah J. D., Sherman E. L., Li C., Marques E., Crews D. H., Bartusiak R., Murdoch B., Wang Z., Basarab J. A., Moore S. S.
Journal of Animal Science. 2007 85(12). p.3170
A Multiple Trait Selection Index Including Feed Efficiency
Crews D.H., Carstens G.E., Lancaster P.A.
The Professional Animal Scientist. 2006 22(1). p.65
Selection for yearling growth rate in Angus cattle results in bigger cows that eat more
Herd R. M., Oddy V. H., Mortimer Suzanne
Animal Production Science. 2023 63(13). p.1272
Blood parameters associated with residual feed intake in beef heifers
Clemmons Brooke A., Ault-Seay Taylor B., Henniger Madison T., Martin M. Gabbi, Mulon Pierre-Yves, Anderson David E., Voy Brynn H., McLean Kyle J., Myer Phillip R.
BMC Research Notes. 2023 16(1).
The importance of body composition in explaining variation in feed conversion efficiency and residual feed intake between meat sheep at two different ages
Knott S A, Cummins L J, Leury B J, Dunshea F R
Proceedings of the British Society of Animal Science. 2006 2006 p.153
Single nucleotide polymorphisms and haplotypes associated with feed efficiency in beef cattle
Serão Nick VL, González-Peña Dianelys, Beever Jonathan E, Faulkner Dan B, Southey Bruce R, Rodriguez-Zas Sandra L
BMC Genetics. 2013 14(1).
Genome‐wide association analysis for feed efficiency in Angus cattle
Rolf M. M., Taylor J. F., Schnabel R. D., McKay S. D., McClure M. C., Northcutt S. L., Kerley M. S., Weaber R. L.
Animal Genetics. 2012 43(4). p.367
Longitudinal analysis of body weight, feed intake and residual feed intake in F2 chickens
Begli Hakimeh Emamgholi, Torshizi Rasoul Vaez, Masoudi Ali Akbar, Ehsani Alireza, Jensen Just
Livestock Science. 2016 184 p.28
Effects of Different Cutting Height on Nutritional Quality of Whole Crop Barley Silage and Feed Value on Hanwoo Heifers
Kim Dong Hyeon, Amanullah Sardar M., Lee Hyuk Jun, Joo Young Ho, Han Ouk Kyu, Adesogan Adegbola T., Kim Sam Churl
Asian-Australasian Journal of Animal Sciences. 2016 29(9). p.1265
Identification of polymorphisms influencing feed intake and efficiency in beef cattle
Sherman E. L., Nkrumah J. D., Murdoch B. M., Moore S. S.
Animal Genetics. 2008 39(3). p.225
Effects of timing and duration of test period and diet type on intake and feed efficiency of Charolais-sired cattle1
Cassady C. J., Felix T. L., Beever J. E., Shike D. W.
Journal of Animal Science. 2016 94(11). p.4748

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