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This law is called Mendel's second law, or the Law of Independent Assortment.

The law is derived from observations of dihybrid crosses. A classic example involves seed shape and color in garden peas. The shape may be round (caused by a dominant allele, denoted by R) or wrinkled (recessive, r). The wrinkling is caused by a mutation preventing the formation of branches in starch molecules. The color of the seeds may be yellow (dominant, Y) or green (recessive, y). The green color results from a variant sequence in a gene; the seeds fail to develop normally.

Parentals are RRYY and rryy.

The F1 plants are RrYy.

The F2 plants show independent segregation of the alleles for the two characteristics, shape and color. A Punnett grid predicts a 9:3:3:1 ratio for the phenotypes round yellow, round green, wrinkled yellow, and wrinkled green.

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

That's correct. Mendel's Law of Independent Assortment states that the inheritance of one trait is not dependent on the inheritance of another trait. This is due to the random alignment of homologous chromosomes during meiosis.


Who emphasized that mental process could exist independently of physical states or the body?

René Descartes, a 17th century French philosopher, is known for his concept of dualism, which posits that the mind and the body are separate entities that interact with each other. Descartes emphasized that mental processes, such as thoughts and consciousness, could exist independently of physical states or the body.


Why atoms of most of the elements do not exist independently?

Atoms of most elements do not exist independently because they are more stable and energetically favorable when they form chemical bonds with other atoms. These bonds allow atoms to achieve a full outer electron shell and attain a lower energy state. This results in the formation of molecules or compounds rather than isolated atoms.


Why are some physical traits more common than others?

Physical traits can become more common in a population due to natural selection, genetic drift, and gene flow. Traits that provide an advantage for survival and reproduction in a particular environment are more likely to be passed down to future generations, increasing their frequency. Additionally, random genetic drift and the movement of individuals between populations can also influence the prevalence of certain traits.


How many bananas does it take to make an apple?

It is impossible to make an apple from bananas, as they are two different fruits with distinct characteristics and flavors. Each fruit grows independently and cannot be converted into the other.

Related Questions

What is the law that states that each gene pair is inherited independently of the pair for other traits?

Law of segregation


What law states that each gene pair is inherited independently of the gene pairs of other traits independently?

It's called law of independent assortment.


Which law states each gene pair is inherited independently of the gene pair for other traits?

Principle of Independent Assortment


What independent states each gene pair is inherited independently of the gene pairs for other traits?

The law of INDEPENDENT ASSORTMENT (Mendel)


What is the law that states that each gene gene pair is inherited independently of the gene pairs for other traits?

Mendel's law of independent assortment


What law states that each gene pair is inherited independently of the gene pairs of other traits?

Mendel's second law - the law of Independent assortment.


What was the purpose of Mendel's experiments with dihybrid crosses?

He wanted to determine if traits affected each other, and concluded (based on his observations) that they did not. + To find out if traits could affect the inheritance of other traits. to determine if traits affected each other


What regular Mendelian rule do non-Mendelian traits break?

Non-Mendelian traits break the regular Mendelian rule of independent assortment, which states that genes for different traits are inherited independently of each other. Non-Mendelian traits do not follow this rule and may be influenced by factors such as incomplete dominance, codominance, or epistasis.


When genetically based traits are inherited independently from each other this is known as?

This is known as "independent assortment," where genes for different traits are passed on to offspring randomly and independently of each other. It occurs during meiosis when homologous chromosomes line up and separate into gametes.


Two or more pairs of alleles segregate independently?

This is known as the principle of independent assortment, which states that alleles for different traits are inherited independently of each other during meiosis. This occurs when the genes for the traits are located on different chromosomes or are far apart on the same chromosome.


What did Mendel hypothesize about inherited traits?

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

Law of Independent Assortment