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Maternal productivity of Angus cows divergently selected for post-weaning residual feed intake

P. F. Arthur A F G , R. M. Herd B F , J. F. Wilkins C F and J. A. Archer D E F
+ Author Affiliations
- Author Affiliations

A NSW Department of Primary Industries, Elizabeth Macarthur Agricultural Institute, Camden, NSW 2570, Australia.

B NSW Department of Primary Industries, Beef Industry Centre, Armidale, NSW 2351, Australia.

C NSW Department of Primary Industries, Wagga Wagga Agricultural Institute, Wagga Wagga, NSW 2650, Australia.

D NSW Department of Primary Industries, Agricultural Research Centre, Trangie, NSW 2823, Australia.

E Present address: AgResearch Ltd, Invermay Agricultural Centre, Mosgiel, New Zealand.

F Cooperative Research Centre for Cattle and Beef Quality, University of New England, Armidale, NSW 2351, Australia.

G Corresponding author. Email: paul.arthur@dpi.nsw.gov.au

Australian Journal of Experimental Agriculture 45(8) 985-993 https://doi.org/10.1071/EA05052
Submitted: 12 February 2005  Accepted: 18 May 2005   Published: 26 August 2005



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Journal of Animal Science. 2013 91(3). p.1323
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Walker R. S., Martin R. M., Gentry G. T., Gentry L. R.
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Jones F. M., Accioly J. M., Copping K. J., Deland M. P. B., Graham J. F., Hebart M. L., Herd R. M., Laurence M., Lee S. J., Speijers E. J., Pitchford W. S.
Animal Production Science. 2018 58(1). p.33
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Pesquisa Agropecuária Brasileira. 2011 46(9). p.1105
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Animal Genetics. 2011 42(5). p.475
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The Professional Animal Scientist. 2016 32(5). p.605
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Chen Y., Arthur P. F., Barchia I. M., Quinn K., Parnell P. F., Herd R. M.
Animal Production Science. 2012 52(11). p.1058
Genetic correlations between female fertility and postweaning growth and feed efficiency traits in multibreed beef cattle
Mu Y., Vander Voort G., Abo-Ismail M.K., Ventura R., Jamrozik J., Miller S.P., Plaizier J.
Canadian Journal of Animal Science. 2016 96(3). p.448
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
Strategies to improve the efficiency of beef cattle production
Terry Stephanie A., Basarab John A., Guan Le Luo, McAllister Tim A., Miglior Filippo
Canadian Journal of Animal Science. 2021 101(1). p.1
Effects of residual feed intake and dam body weight on replacement heifer intake, efficiency, performance, and metabolic response
Walker R. S., Martin R. M., Buttrey B.
Journal of Animal Science. 2015 93(7). p.3602
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Dai Ping, Luan Sheng, Lu Xia, Luo Kun, Meng Xianhong, Cao Baoxiang, Kong Jie
Genetics Selection Evolution. 2017 49(1).
Feed efficiency and maternal productivity of Bos indicus beef cows
Broleze Danielly Fernanda, Souza Luana Lelis, Zorzetto Mariana Furtado, Savegnago Rodrigo Pelicioni, Negrão João Alberto, Bonilha Sarah Figueiredo Martins, Mercadante Maria Eugênia Zerlotti, Duarte Marcio de Souza
PLOS ONE. 2020 15(6). p.e0233926
The influence of RFI classification and cow age on body weight and body condition change, supplement intake, and grazing behavior of beef cattle winter grazing mixed-grass rangelands
Parsons Cory T, Dafoe Julia M, Wyffels Samuel A, Van Emon Megan, DelCurto Timothy, Boss Darrin L
Translational Animal Science. 2020 4(Supplement_1). p.S68
Residual feed intake in beef cattle
Arthur J P.F., Herd R.M.
Revista Brasileira de Zootecnia. 2008 37(spe). p.269
Intake of conserved and grazed grass and performance traits in beef suckler cows differing in phenotypic residual feed intake
Lawrence P., Kenny D.A., Earley B., McGee M.
Livestock Science. 2013 152(2-3). p.154
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ELFAKİ Mahmoud O. A., KILIÇ Ünal
Hayvansal Üretim. 2024 64(2). p.85
Relationships among feed efficiency traits across production segments and production cycles in cattle
Lancaster Phillip A, Davis Michael E, Rutledge Jack J, Cundiff Larry V
Translational Animal Science. 2021 5(3).
An intersection network based on combining SNP coassociation and RNA coexpression networks for feed utilization traits in Japanese Black cattle1
Okada Daigo, Endo Satoko, Matsuda Hirokazu, Ogawa Shinichiro, Taniguchi Yukio, Katsuta Tomohiro, Watanabe Toshio, Iwaisaki Hiroaki
Journal of Animal Science. 2018 96(7). p.2553
Impacts of heifer postweaning residual feed intake classification on reproductive and performance measurements of first, second, and third parity Angus beef females
Parsons Cory T, Dafoe Julia M, Wyffels Sam A, DelCurto Timothy, Boss Darrin L
Translational Animal Science. 2019 3(Supplement_1). p.1782
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).
Genome-wide association study for residual concentrate intake using different approaches in Italian Brown Swiss
Manca E., Cesarani A., Falchi L., Atzori A. S., Gaspa G., Rossoni A., Macciotta N. P. P., Dimauro C.
Italian Journal of Animal Science. 2021 20(1). p.1957
Evidence of negative relationship between female fertility and feed efficiency in Nellore cattle1,2
Ferreira Júnior Rubens J, Bonilha Sarah F M, Monteiro Fábio M, Cyrillo Joslaine N S G, Branco Renata H, Silva Josineudson A II V, Mercadante Maria Eugênia Z
Journal of Animal Science. 2018 96(10). p.4035
Phenotypic and genetic relationships of residual feed intake with performance and ultrasound carcass traits in Brangus heifers1
Lancaster P. A., Carstens G. E., Crews D. H., Welsh T. H., Forbes T. D. A., Forrest D. W., Tedeschi L. O., Randel R. D., Rouquette F. M.
Journal of Animal Science. 2009 87(12). p.3887
Encyclopedia of Sustainability Science and Technology (2022)
Berry Donagh
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
Microbial community profiles of the jejunum from steers differing in feed efficiency1,2,3
Myer P. R., Wells J. E., Smith T. P. L., Kuehn L. A., Freetly H. C.
Journal of Animal Science. 2016 94(1). p.327
Correlated responses in sow appetite, residual feed intake, body composition, and reproduction after divergent selection for residual feed intake in the growing pig1
Gilbert H., Bidanel J.-P., Billon Y., Lagant H., Guillouet P., Sellier P., Noblet J., Hermesch S.
Journal of Animal Science. 2012 90(4). p.1097
Influence of residual feed intake and cow age on dry matter intake postweaning and peak lactation
Parsons Cory T, Dafoe Julia M, Wyffels Samuel A, DelCurto Timothy, Boss Darrin L
Translational Animal Science. 2021 5(Supplement_S1). p.S129
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
Energy efficiency, reproductive performance, and metabolic parameters of grazing Hereford heifers
Marín Maria F., Naya Hugo, Espasandin Ana C., Navajas Elly, Devincenzi Thais, Carriquiry Mariana
Livestock Science. 2024 279 p.105389
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Scholljegerdes E. J., Summers A. F.
Journal of Animal Science. 2016 94(suppl_6). p.103
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
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Arthur Paul F., Herd Robert M.
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