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Response and rate of inbreeding were evaluated over four generations of conventional selection and eight generations of GS because the generation interval was reduced by 50%% in GS.
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This approach cannot be used to reduce the generation interval in layers because in layers phenotype is measured after breeding age.
In scenario II, the advantage of genomic selection was particularly evident, because genomic information was the main basis for selection, such that the generation interval could be reduced substantially.
Furthermore, the generation interval may decrease during the course of the outbreak because of quicker interventions, leading to possible bias in the estimates of R (2 ).
This made it possible to reduce the generation interval to the biological limit of about eight months, because the time of selection did not depend on performance information of contemporary hens.
The average relatedness was 0.000144572 and the generation interval was 2.385 years.
This was mainly through reducing the generation interval and increasing selection intensity.
Because generation intervals are difficult to observe, we used the serial interval as a proxy for the generation interval (18 ) and assumed equivalence.
The generation interval for RRS was 20 years.
Generations were kept separate and the generation interval was one year.
*Values are based on a range of estimates provided by considering different distributions of the generation interval (exponentially distributed latent and infectious periods or fixed generation interval).
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