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The law of independent assortment states that alleles for separate traits are passed independently of one another This means that the alleles for different genes segregate and recombine independently during meiosis, leading to the production of gametes with unique combinations of alleles. That is, the biological selection of an allele for one trait has nothing to do with the selection of an allele for any other trait.
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Law of independent assortment the law states that alleles of two or more different genes separate independently from the other into gametes that reproduce sexually The law of independent assortment states that the inheritance of one trait is independent of the inheritance of other traits Thus, the allele received from one gene does not influence the allele received from the other.
Mendel's law of independent assortment states that the alleles of two (or more) different genes get sorted into gametes independently of one another
In other words, the allele a gamete receives for one gene does not influence the allele received for another gene. The law of independent assortment is one of the important principles of genetics stated by gregor mendel in the 19th century based on his work with pea plants It explains how different genes independently separate from one another when reproductive cells develop. The law of independent assortment states that the alleles of two or more genes separate independently of each other during gamete formation
In 1856, gregor mendel, an austrian monk with a scientific drive, began his experiments on heritability. Mendel’s law of independent assortment states that genes do not influence each other with regard to the sorting of alleles into gametes, and every possible combination of alleles for every gene is equally likely to occur. The principle of independent assortment describes how different genes independently separate from one another during the formation of reproductive cells. Learn how this principle explains genetic variation in inheritance.