Register      Login
Animal Production Science Animal Production Science Society
Food, fibre and pharmaceuticals from animals

Articles citing this paper

Onset of puberty and early-life reproduction in Angus females divergently selected for post-weaning residual feed intake

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

A Cooperative Research Centre for Beef Genetic Technologies, C. J. Hawkins Homestead, University of New England, Armidale, NSW 2351, Australia.

B Industry and Investment NSW, Agricultural Research Centre, Trangie, NSW 2823, Australia.

C Industry and Investment NSW, Elizabeth Macarthur Agricultural Institute, Menangle, NSW 2568, Australia.

D Industry and Investment NSW, Wagga Wagga Agricultural Institute, Wagga Wagga, NSW 2650, Australia.

E Industry and Investment NSW, Beef Industry Centre, Armidale, NSW 2351, Australia.

F Corresponding author. Email: paul.arthur@industry.nsw.gov.au

Animal Production Science 51(3) 183-190 https://doi.org/10.1071/AN10097
Submitted: 17 June 2010  Accepted: 15 November 2010   Published: 7 March 2011



31 articles found in Crossref database.

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
Relationship between residual feed intake classification as a heifer and lifetime productivity of beef cattle
Callum C., Ominski K.H., Crow G., Zvomuya F., Basarab J.A., Plaizier J.
Canadian Journal of Animal Science. 2019 99(1). p.191
Life cycle efficiency of beef production: VIII. Relationship between residual feed intake of heifers and subsequent cow efficiency ratios1,2
Davis M. E., Lancaster P. A., Rutledge J. J., Cundiff L. V.
Journal of Animal Science. 2016 94(11). p.4860
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
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
Invited review: Improving feed efficiency of beef cattle – the current state of the art and future challenges
Kenny D.A., Fitzsimons C., Waters S.M., McGee M.
Animal. 2018 12(9). p.1815
Feed Efficiency in the Beef Industry (2012)
Herd Robert M., Arthur Paul F.
Divergent breeding values for fatness or residual feed intake in Angus cattle. 1. Pregnancy rates of heifers differed between fat lines and were affected by weight and fat
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
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
Divergent genotypes for fatness or residual feed intake in Angus cattle. 2. Body composition but not reproduction was affected in first-parity cows on both low and high levels of nutrition
Laurence M., Accioly J. M., Copping K. J., Deland M. P. B., Graham J. F., Hebart M. L., Herd R. M., Jones F. M., Lee S. J., Speijers E. J., Pitchford W. S.
Animal Production Science. 2018 58(1). p.43
The impact of selection using residual average daily gain and marbling EPDs on growth, performance, and carcass traits in Angus steers1
Detweiler Rachael A, Pringle T Dean, Rekaya Romdhane, Wells Jonathan B, Segers Jacob R
Journal of Animal Science. 2019 97(6). p.2450
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
Combining information from genome-wide association and multi-tissue gene expression studies to elucidate factors underlying genetic variation for residual feed intake in Australian Angus cattle
de las Heras-Saldana Sara, Clark Samuel A., Duijvesteijn Naomi, Gondro Cedric, van der Werf Julius H. J., Chen Yizhou
BMC Genomics. 2019 20(1).
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).
Feed Efficiency in the Beef Industry (2012)
Arthur Paul F., Herd Robert M.
How do we identify energetically efficient grazing animals?1
Scholljegerdes E. J., Summers A. F.
Journal of Animal Science. 2016 94(suppl_6). p.103
Relationships between postweaning residual feed intake in heifers and forage use, body composition, feeding behavior, physical activity, and heart rate of pregnant beef females
Hafla A. N., Carstens G. E., Forbes T. D. A., Tedeschi L. O., Bailey J. C., Walter J. T., Johnson J. R.
Journal of Animal Science. 2013 91(11). p.5353
Divergent genotypes for fatness or residual feed intake in Angus cattle. 3. Performance of mature cows
Copping K. J., Accioly J. M., Deland M. P. B., Edwards N. J., Graham J. F., Hebart M. L., Herd R. M., Jones F. M., Laurence M., Lee S. J., Speijers E. J., Pitchford W. S.
Animal Production Science. 2018 58(1). p.55
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
Expression of candidate genes for residual feed intake in Angus cattle
Al‐Husseini W., Gondro C., Quinn K., Herd R. M., Gibson J. P., Chen Y.
Animal Genetics. 2014 45(1). p.12
Impact of selection for residual feed intake on breeding soundness and reproductive performance of bulls on pasture-based multisire mating1
Wang Z., Colazo M. G., Basarab J. A., Goonewardene L. A., Ambrose D. J., Marques E., Plastow G., Miller S. P., Moore S. S.
Journal of Animal Science. 2012 90(9). p.2963
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
Characterization and Profiling of Liver microRNAs by RNA-sequencing in Cattle Divergently Selected for Residual Feed Intake
Al-Husseini Wijdan, Chen Yizhou, Gondro Cedric, Herd Robert M., Gibson John P., Arthur Paul F.
Asian-Australasian Journal of Animal Sciences. 2015 29(10). p.1371
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
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
Feed Efficiency in the Beef Industry (2012)
Basarab John A., Fitzsimmons Carolyn, Whisnant C. Scott, Wettemann Robert P.
Effect of postweaning heifer development system on average daily gain, pregnancy rates, and subsequent feed efficiency as a pregnant heifer
Springman S. A., Nielson H. R., Meyer T. L., Funston R. N.
Journal of Animal Science. 2017 95(12). p.5320
Genetic parameters for residual feed intake, methane emissions, and body composition in New Zealand maternal sheep
Johnson Patricia L., Hickey Sharon, Knowler Kevin, Wing Janine, Bryson Brooke, Hall Melanie, Jonker Arjan, Janssen Peter H., Dodds Ken G., McEwan John C., Rowe Suzanne J.
Frontiers in Genetics. 2022 13
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
Utilization of macrominerals and trace elements in pregnant heifers with distinct feed efficiencies
Dias R.S., Montanholi Y.R., Lopez S., Smith B., Miller S.P., France J.
Journal of Dairy Science. 2016 99(7). p.5413
Divergence for residual feed intake of Holstein-Friesian cattle during growth did not affect production and reproduction during lactation
Macdonald K.A., Thomson B.P., Waghorn G.C.
Animal. 2016 10(11). p.1890

Committee on Publication Ethics


Abstract Export Citation Get Permission