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Genes for both loci have been isolated and characterized.
Both loci showed a high power of discrimination (Penta D: 0.927; Penta E: 0.966; both loci combined: 0.9975) as reported in other populations.
This effect is caused by episodes of elevated rate of evolution in both loci simultaneously.
Accuracy of this method is greater than 98% for both loci.
(We are presuming that Mendel's first law holds at both loci).
Respective comparative analyses revealed that both loci were sufficiently variable to allow unambiguous genetic discrimination between different trichomonad species.
We interpreted them as representing nuclei with both loci off, one locus on and both loci on, respectively, for a particular globin gene.
Individuals that were heterozygous at both loci were grouped as heterozygous, while individuals that were homozygous at one or both loci were grouped as homozygous.
Whether a common selection pressure balances diversity at both loci remains to be established.
For mating to occur, the interacting partners must have different alleles at both loci.
In spite of this difference, for both loci the average ω is larger than 0.5.
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