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Comparison of Breeding System Between Single Population and Two Sub-population Scheme by Computer Simulation II. Different genetic level for Sub-populations

  • Oikawa, T. (Faculty of Agriculture, Okayama University) ;
  • Matsura, Y. (Faculty of Agriculture, Okayama University) ;
  • Sato, K. (Faculty of Agriculture, Okayama University)
  • Received : 1996.08.20
  • Accepted : 1996.12.16
  • Published : 1997.08.01

Abstract

The effect of genetic diversity in sub-populations on breeding efficiency was examined with prospect of potential crossbreeding. Simulation study of selection was performed for 20 generations with 20 replications each, comparing average breeding values and inbreeding coefficients between the two breeding systemes; single population scheme and two population scheme. The different genetic levels were assumed to be caused by different gene frequencies. Phenotypes of two traits generated polygenic effect with additive 36 loci and residuals distributed normally were selected by selection index procedure. High genetic gain with less inbreeding was clearly recognized in the single population scheme, independently of difference in genetic level, economic weight and genetic correlation. Genetic correlation after selection in the single population scheme was lower than the two population scheme. When crossbreeding between the sub-population was taken into account, superiority of the two population scheme was suggested under those restrictions; difference in genetic level is moderate, selection criterion for the two traits is not far from even economic weight, and genetic correlation is positive with low to moderate value. The use of complementarity increased the possibility of the two population scheme.

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