Consensus and Debate in the Definition of Breeding Objectives
- 1 September 1998
- journal article
- review article
- Published by American Dairy Science Association in Journal of Dairy Science
- Vol. 81, 6-18
- https://doi.org/10.3168/jds.s0022-0302(98)70150-x
Abstract
The breeding objective is usually to increase the profit of the firm, industry, or society that is investing in a breeding program. This objective should include long-term genetic gain and nonadditive genetic changes such as inbreeding depression and possibly a weighting against the variability of outcome. The breeding objective is described by a profit function that takes genetic values as input and produces profit as outcome. This profit function may be a bioeconomic model of the farm. The traits in the profit function should relate as directly as possible to all sources of income and costs. The profit function can include variables controlled by management decisions if these interact with genetic merit. The differences between genotypes should be evaluated when management variables are optimized for each genotype. In the long term, mean profit is expected to be close to zero, and all costs are assumed to be variable costs. Under these conditions, the relative economic weights are the same, regardless of how the farm is constrained how the unit for which profit is calculated, whether the perspective is that of individual producers, an industry, or consumers. However, if price signals are not passed along the chain from consumers to seed-stock breeders, the economic weights become distorted. The use to which breeding objectives are put, the perspective from which they are calculated, the rescaling and biological versus economic objectives, and the special problems associated with the inclusion of length of herdlife in the objective are discussed.Keywords
This publication has 30 references indexed in Scilit:
- Economic weights from profit equations: appraising their accuracy in the long runAnimal Science, 1994
- Decision rules and variance of response in breeding schemesAnimal Science, 1993
- Estimation of economic weights in genetic improvement using neoclassical production theory: an alternative to rescalingAnimal Science, 1992
- Economic weights and index selection of milk production traits when multiple production quotas applyAnimal Science, 1989
- A method to incorporate competitive position in the breeding goalAnimal Production, 1989
- On the derivation of economic weights in livestock improvementAnimal Science, 1986
- Scope for selecting many breeding stocks of possible economic value in the futureAnimal Science, 1985
- Estimation of economic values for selection indicesAnimal Science, 1979
- The effect of inflation and form of investment on the estimated value of genetic improvement in farm livestockAnimal Science, 1978
- Specialised sire and dam lines. IV. Selection within linesAnimal Science, 1966