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  2. File:Independent assortment.svg - Wikipedia

    en.wikipedia.org/.../File:Independent_assortment.svg

    English: 3 pairs of homologous chromosomes allow 8 possible combinations, all equally likely to move into the gamete during meiosis. This is the main reason for independent assortment. The equation to determine the number of possible combinations given the number of homologous pairs = 2 x (x = number of homologous pairs)

  3. File:Independent assortment & segregation.svg - Wikipedia

    en.wikipedia.org/wiki/File:Independent_assortment...

    The file size of this SVG image may be abnormally large because most or all of its text has been converted to paths rather than using the more conventional <text> element. . Unless rendering the text of the SVG file produces an image with text that is incurably unreadable due to technical limitations, it is highly recommended to change the paths back to t

  4. Genetic recombination - Wikipedia

    en.wikipedia.org/wiki/Genetic_recombination

    Most recombination occurs naturally and can be classified into two types: (1) interchromosomal recombination, occurring through independent assortment of alleles whose loci are on different but homologous chromosomes (random orientation of pairs of homologous chromosomes in meiosis I); & (2) intrachromosomal recombination, occurring through ...

  5. Meiosis - Wikipedia

    en.wikipedia.org/wiki/Meiosis

    Meiosis generates gamete genetic diversity in two ways: (1) Law of Independent Assortment. The independent orientation of homologous chromosome pairs along the metaphase plate during metaphase I and orientation of sister chromatids in metaphase II, this is the subsequent separation of homologs and sister chromatids during anaphase I and II, it ...

  6. Chromosome segregation - Wikipedia

    en.wikipedia.org/wiki/Chromosome_segregation

    Following recombination, chromosome segregation occurs as indicated by the stages metaphase I and anaphase I in the meiosis diagram. Different pairs of chromosomes segregate independently of each other, a process termed “independent assortment of non-homologous chromosomes”. This process results in each gamete usually containing a mixture ...

  7. Genetic linkage - Wikipedia

    en.wikipedia.org/wiki/Genetic_linkage

    During meiosis, chromosomes assort randomly into gametes, such that the segregation of alleles of one gene is independent of alleles of another gene. This is stated in Mendel's Second Law and is known as the law of independent assortment. The law of independent assortment always holds true for genes that are located on different chromosomes ...

  8. Mendelian inheritance - Wikipedia

    en.wikipedia.org/wiki/Mendelian_inheritance

    Independent assortment occurs in eukaryotic organisms during meiotic metaphase I, and produces a gamete with a mixture of the organism's chromosomes. The physical basis of the independent assortment of chromosomes is the random orientation of each bivalent chromosome along the metaphase plate with respect to the other bivalent chromosomes.

  9. Meiotic drive - Wikipedia

    en.wikipedia.org/wiki/Meiotic_drive

    The unequal inheritance of gametes has been observed since the 1950s, [5] in contrast to Gregor Mendel's First and Second Laws (the law of segregation and the law of independent assortment), which dictate that there is a random chance of each allele being passed on to offspring. Examples of selfish drive genes in animals have primarily been ...