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It should be noted that the efficiency of selection also reflects the reduced number of selected animals.
Mating followed a selection step where the average coancestry of selected animals was constrained, while genetic response was maximised.
The simulations revealed that avoiding full sib matings became less and less relevant as population size and proportion of selected animals increased and as heritability and impact of inbreeding on phenotype decreased.
Therefore, as the first local strategic axis, appropriate summer grazing and mating practices are laying the basis for such survival, and the practice of otor improves the body condition of selected animals that may be sold after summer to purchase feed stocks (Addison and Brown 2014).
Therefore, priority was given to hay-making and winter pen preparation, whereas improvement of livestock productivity through segregated grazing (otor) of selected animals, frequent pastureland rotation of the main herd, controlled mating and early sale of fattened as well as skinny livestock were sometimes mentioned but hardly practiced.
Two levels of heritability (h²) were studied (0.1; 0.5) as well as four different proportions of selected animals (2, 5, 10 and 20%), four population sizes (1000, 2,000, 4,000 and 10,000 candidates) and two levels of inbreeding depression (0 and 5% decrease of phenotype for 10% increase in inbreeding).
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Examples are presented to compare the heterogeneity of selected animal models for these biochemical characteristics as they relate to the spectrum of human responses noted above.
Cole and VanRaden [ 11] discussed the possibility of selecting animals for which gamete breeding values vary little, in order to produce more homogeneous progeny and simplify herd management.
Moreover, a positive genetic correlation between bacteria negative SCS and liability to mastitis was found, suggesting that the approach of selecting animals for decreased SCS will help to reduce the prevalence of mastitis.
A positive genetic correlation between bacteria negative SCS and liability to infection was found, suggesting that the approach of selecting animals for decreased SCS should help to reduce mastitis prevalence.
The probability to introduce a certain number x of infected animals (m start ) into each isolation facility of group size (g) in Switzerland was given by the probability of selecting animals having a false negative test result in the exporting country.
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