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Hierarchical Bayesian modeling for the evaluation of growth curves of pigs genotyped for the halothane gene

A hierarchical Bayesian modeling was used to evaluate the influence of halothane gene and its interaction with sex on pig´s growth curves. Under this approach, the parameters from growth models (Logistic, Gompertz and von Bertalanffy) were estimated jointly with the effects of halothane gene and sex. A total of 344 F2 (Commercial x Piau) animals were weighted at birth, 21, 42, 63, 77, 105 and 150 days in life. The Logistic model has presented the best fit based on DIC (Deviance Information Criterion). Thus, the samples from marginal posterior distributions for the differences between the parameters estimates of Logistic model have indicated that the maturity weight of males with heterozygous genotypes (HalNn) was superior to males with homozygous genotypes (HalNN). In order to realize a comparison with the traditional methodology, the frequentist approach based on two distinct steps also was used, but there was not identified significant differences between growth curve parameter estimates from each group (combinations of halothane genotypes and sex)

improvement; nonlinear models; pig stress syndrome


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