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Mendel law of independent assortment states that when two traits are together,followed in same cross ,the distribution of alleles for one trait in the gametes does not affect the distribution of allele for the other trait

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11y ago
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5mo ago

The law of independent assortment states that the inheritance of one trait does not affect the inheritance of another trait. This means that genes for different traits are inherited independently of each other, leading to different combinations of traits in offspring. This principle was discovered by Gregor Mendel in his experiments with pea plants.

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10y ago

The Law of Independent Assortment states that the factors for individual characteristics are distributed to gametes independently. Is observed only for genes that are located on separate chromosomes or are far apart on the same chromosome.

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13y ago

The Law of Independent Assortment states that the alleles (or separate members of a gene pair) separate independently to form the gamete. By doing so, the traits are transferred independent from one another. This allows for much more variation in the offspring since the alleles are randomly matched with the gamete from the other parent to form the zygote. According to how many traits are in question, the number of possible variations can become quite high.

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13y ago

it states that alleles pairs separate independently during the formation of gametes.

this means that traits are transmitted to offspring independently.

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15y ago

Genes sort independently into gametes and each gamete receives one allele of each gene.

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Q: State the law of independent assortment?
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When alleles for different characteristics are on separate chromosomes they are distributed to gametes independently. This observation is summarized by the law of?

The law of independent assortment. This principle states that genes located on different chromosomes segregate independently of each other during the formation of gametes, leading to a random combination of alleles in the offspring.


In meiosis the way in which a chromosome pair separates does not affect the way other pairs separate is another way of expressing Mendel's law of?

independent assortment


Is it true that Mendel's law of independent assortment states alleles for different traits are passed on from one generation to the next independently of each other?

Yes, that is correct. Mendel's law of independent assortment states that alleles for different traits are passed on to offspring independently of each other, as long as the genes controlling those traits are located on different chromosomes and are not linked. This means that the inheritance of one trait does not affect the inheritance of another trait.


Mendel's finding that the inheritance of one trait had no effect on the inheritance of another became known as the law of?

The law of independent assortment. This principle states that genes for different traits are inherited independently of each other during gamete formation.


What are the 5 basic laws of genetics?

Law of Segregation: Alleles separate during gamete formation. Law of Independent Assortment: Alleles of different genes segregate independently during gamete formation. Law of Dominance: In a heterozygote, one allele may mask the expression of another allele. Law of Unit Characters: Inheritance is controlled by discrete units or genes. Law of Homologous Series: Genes come in pairs and are located on homologous chromosomes.

Related questions

When alleles for different characteristics are on separate chromosomes they are distributed to gametes independently. This observation is summarized by the law of?

The law of independent assortment. This principle states that genes located on different chromosomes segregate independently of each other during the formation of gametes, leading to a random combination of alleles in the offspring.


In meiosis the way in which a chromosome pair separates does not affect the way other pairs separate is another way of expressing Mendel's law of?

independent assortment


What concept is considered an exception to Mendel's law of independent assortment?

Gene linkage us considered an exception to Mendel's Law of Independent Assortment.


How does mendel law of independent assortment assure genetic diversity?

because of the assortment from the homolog


Which stage of meiosis is for the law of independent assortment?

metaphase I of meosis


What principle states that during gemete formation genes for different traits separate without influencing each others inheritance?

The principle is known as the Law of Independent Assortment, first proposed by Gregor Mendel in his experiments with pea plants. It states that the inheritance of one gene/trait is independent of the inheritance of another gene/trait when they are located on different chromosomes.


What are the two laws of hereditary?

1. Law of independent assortment 2. Law of segregation


What two laws did Gregor Mendel developed?

law of segregation law of independent assortment


Genes on separate chromosomes follow Mendel's law of?

Independent assortment.


Is it true that Mendel's law of independent assortment states alleles for different traits are passed on from one generation to the next independently of each other?

Yes, that is correct. Mendel's law of independent assortment states that alleles for different traits are passed on to offspring independently of each other, as long as the genes controlling those traits are located on different chromosomes and are not linked. This means that the inheritance of one trait does not affect the inheritance of another trait.


What are mendels laws?

law of segregation, independent assortment, and dominance.


What is the smallest number of traits that are needed to test Mendel's law of independent assortment?

Two traits are needed to test Mendel's law of independent assortment, such as seed color and seed shape in pea plants. By observing the inheritance of these two traits in offspring, one can determine if they are inherited independently of each other, which is a key principle in Mendel's law of independent assortment.