gregor mendel used pea plants that were heterozygous for each of two traits—seed color and seed shape—to…

gregor mendel used pea plants that were heterozygous for each of two traits—seed color and seed shape—to generate a dihybrid cross. the phenotypic ratio of the resulting offspring was nine with round and yellow seeds, three with round and green seeds, three with wrinkled and yellow seeds, and one with wrinkled and green seeds. from these results, what could mendel conclude?\ntraits are inherited as pairs, sets, or groups.\ntraits that are dominant mask traits that are recessive.\ngametes carry one allele for each trait.\ntraits are passed independently of one another.

gregor mendel used pea plants that were heterozygous for each of two traits—seed color and seed shape—to generate a dihybrid cross. the phenotypic ratio of the resulting offspring was nine with round and yellow seeds, three with round and green seeds, three with wrinkled and yellow seeds, and one with wrinkled and green seeds. from these results, what could mendel conclude?\ntraits are inherited as pairs, sets, or groups.\ntraits that are dominant mask traits that are recessive.\ngametes carry one allele for each trait.\ntraits are passed independently of one another.

Answer

Brief Explanations:

Mendel's dihybrid cross with a 9:3:3:1 phenotypic ratio supports the law of independent assortment, which states that traits are passed independently of one another. The other options do not directly relate to the significance of this ratio.

Answer:

Traits are passed independently of one another.