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The second offspring is generated in the opposite way.
This type of offspring is generated for the sake of diversity and to avoid sticking to the local optimum.
The remaining offspring is generated by copying the gene from the second parent provided that the gene does not already exist in the offspring.
When no better offspring is generated, a new pair of parent chromosomes is randomly selected from the current population and undergoes the same steps until the maximum number of hill-climbing iterations is reached.
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When two selected parent chromosomes sexually reproduce, offspring are generated as follows.
In this study, control, SGA and LGA offspring were generated from dams fed control, low protein or high fat diet, respectively, throughout pregnancy and lactation.
F1 transgenic Xenopus laevis offspring were generated by IVF, using pieces of testes from male transgenic frogs and eggs harvested from wild-type females.
F1 transgenic Xenopus laevis offspring were generated by in vitro fertilization (IVF), either using pieces of testes from male transgenic frogs and eggs harvested from wild-type females or using pieces of testes from male wild-types and eggs from transgenic females.
C3H × C57 F1 offspring were generated by breeding male C3H and female C57 mice.
Multilocus genotypes in offspring were generated randomly, assuming simple Mendelian inheritance from the two randomly chosen parents.
Furthermore, no offspring were generated, suggesting that the presence of parasites in the testes leads to male sterility.
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