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Impact of trait genetic gains on methane emissions from NZ beef and dairy farms,
, New Zealand Journal of Animal Science and Production, 09/2020, Volume 80, Online, p.76-79, (2020)
A comparative analysis of genetic trends within the New Zealand sheep industry,
, Proceedings of the New Zealand Society of Animal Production, Jan, Volume 72, Christchurch, p.159-162, (2012)
Predicting the benefits of two stage genomic selection in young breeding rams,
, Proceedings of the New Zealand Society of Animal Production, Jan, Volume 71, Invercargill, p.266-269, (2011)
The role of breeding in reducing sheep GHG intensity,
, Proceedings of the New Zealand Society of Animal Production, Jan, Volume 71, Invercargill, p.162-167, (2011)
Background effects on ewe lambing and weaning performance in well recorded breeding flocks,
, Proceedings of the New Zealand Society of Animal Production, Jun, Volume 69, Christchurch, p.115-117, (2009)
A simulation model to partition ewe efficiency into component traits for genetic analysis,
, Proceedings of the New Zealand Society of Animal Production, Jun, Volume 69, Christchurch, p.223-227, (2009)
SNiP and cut: Quantifying the potential benefits of genomic selection tools for genetic fault elimination in sheep,
, Proceedings of the New Zealand Society of Animal Production, Jan, Volume 68, Brisbane, Australia, p.33-36, (2008)
DNA variation among seven New Zealand sheep breeds,
, Proceedings of the New Zealand Society of Animal Production, Jan, Volume 51, p.47-54, (1991)
The Booroola F gene is excluded from close genetic linkage with either the haemoglobin Beta or follicle stimulating hormone Beta loci,
, Proceedings of the New Zealand Society of Animal Production, Jan, Volume 50, p.411-416, (1990)