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  2. Dihybrid cross - Wikipedia

    en.wikipedia.org/wiki/Dihybrid_cross

    This cross results in the expected phenotypic ratio of 9:3:3:1. Another example is listed in the table below and illustrates the process of a dihybrid cross between pea plants with multiple traits and their phenotypic ratio patterns. Dihybrid crosses are easily visualized using a 4 x 4 Punnett square.

  3. Punnett square - Wikipedia

    en.wikipedia.org/wiki/Punnett_square

    The example below assesses another double-heterozygote cross using RrYy x RrYy. As stated above, the phenotypic ratio is expected to be 9:3:3:1 if crossing unlinked genes from two double-heterozygotes. The genotypic ratio was obtained in the diagram below, this diagram will have more branches than if only analyzing for phenotypic ratio.

  4. Test cross - Wikipedia

    en.wikipedia.org/wiki/Test_cross

    When conducting a dihybrid test cross, two dominant phenotypic characteristics are selected and crossed with parents displaying double recessive traits. The phenotypic characteristics of the F1 generation are then analyzed. In such a test cross, if the individual being tested is heterozygous, a phenotypic ratio of 1:1:1:1 is typically observed. [7]

  5. Reciprocal cross - Wikipedia

    en.wikipedia.org/wiki/Reciprocal_cross

    In genetics, a reciprocal cross is a breeding experiment designed to test the role of parental sex on a given inheritance pattern. [1] All parent organisms must be true breeding to properly carry out such an experiment. In one cross, a male expressing the trait of interest will be crossed with a female not expressing the trait.

  6. File:Dihybrid cross.svg - Wikipedia

    en.wikipedia.org/wiki/File:Dihybrid_cross.svg

    Download QR code; In other projects Appearance. move to sidebar hide File; File history ... English: This diagram illustrates a dihybrid cross using a Punnett square ...

  7. Linkage disequilibrium - Wikipedia

    en.wikipedia.org/wiki/Linkage_disequilibrium

    Linkage disequilibrium, often abbreviated to LD, is a term in population genetics referring to the association of genes, usually linked genes, in a population. It has become an important tool in medical genetics and other fields [1] [2]

  8. F1 hybrid - Wikipedia

    en.wikipedia.org/wiki/F1_hybrid

    In his cross-pollination experiments involving two true-breeding, or homozygous, parents, Mendel found that the resulting F1 generation was heterozygous and consistent. The offspring showed a combination of the phenotypes from each parent that were genetically dominant .

  9. Complete linkage - Wikipedia

    en.wikipedia.org/wiki/Complete_linkage

    In genetics, complete (or absolute) linkage [1] is defined as the state in which two loci are so close together that alleles of these loci are virtually never separated by crossing over. The closer the physical location of two genes on the DNA, the less likely they are to be separated by a crossing-over event.

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