about
Genetic and environmental variation in methane emissions of sheep at pasture.Genetic correlations between body weight change and reproduction traits in Merino ewes depend on age.Breeding objectives for sheep should be customised depending on variation in pasture growth across years.Follicle development, endocrine profiles and ovulation rate in adult Merino ewes: effects of early nutrition (pre- and post-natal) and supplementation with lupin grain.Supplementation of Merino ewes with vitamin E plus selenium increases α-tocopherol and selenium concentrations in plasma of the lamb but does not improve their immune function.Merino ewes can be bred for body weight change to be more tolerant to uncertain feed supply.More feed efficient sheep produce less methane and carbon dioxide when eating high-quality pellets.Relationships among body composition, circulating concentrations of leptin and follistatin, and the onset of puberty and fertility in young female sheep.Milk production and composition, and progeny performance in young ewes with high merit for rapid growth and muscle and fat accumulation.Mob size of single-bearing or twin-bearing Merino ewes at lambing may not influence lamb survival when feed-on-offer is highSelection for superior growth advances the onset of puberty and increases reproductive performance in ewe lambsLamb survival, glutathione redox state and immune function of neonates and lambs from periparturient Merino ewes supplemented with rumen-protected methionineBehavioural measures reflect pain-mitigating effects of meloxicam in combination with Tri-Solfen® in mulesed Merino lambs
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description
investigador
@es
researcher
@en
wetenschapper
@nl
name
A N Thompson
@en
A N Thompson
@nl
type
label
A N Thompson
@en
A N Thompson
@nl
prefLabel
A N Thompson
@en
A N Thompson
@nl
P31
P496
0000-0001-7121-7459