a. purebred crosses b. dihybrid crosses c. monohybrid crosses d. testcrosses
(B)
He performed dihybrid crosses.
Mendel wanted to investigate whether the color of the seed in pea plants was linked to the shape of the seed to understand the principles of inheritance and trait correlation. To test this, he performed a dihybrid cross by breeding pea plants with yellow round seeds (homozygous) with those having green wrinkled seeds (homozygous). He then analyzed the offspring to observe the ratio of different seed colors and shapes, which ultimately led to his formulation of the laws of inheritance. This experiment demonstrated that the traits were inherited independently of one another.
He tested seed color and shape at the same time
testcross
Mendel conducted a dihybrid cross experiment by breeding pea plants that differed in both seed color (yellow vs. green) and seed shape (round vs. wrinkled). He started with true-breeding plants for each trait and then crossed them to observe the offspring. By analyzing the ratios of the phenotypes in the F2 generation, he determined that seed color and seed shape assort independently, demonstrating that these traits are inherited separately. This experiment laid the foundation for Mendel's laws of inheritance.
(Apex Learning) He tested seed color and shape at the same time.
(Apex Learning) He tested seed color and shape at the same time.
He performed dihybrid crosses.
(Apex Learning) He tested seed color and shape at the same time.
Mendel wanted to investigate whether the color of the seed in pea plants was linked to the shape of the seed to understand the principles of inheritance and trait correlation. To test this, he performed a dihybrid cross by breeding pea plants with yellow round seeds (homozygous) with those having green wrinkled seeds (homozygous). He then analyzed the offspring to observe the ratio of different seed colors and shapes, which ultimately led to his formulation of the laws of inheritance. This experiment demonstrated that the traits were inherited independently of one another.
He tested seed color and shape at the same time
testcross
i dont no but i need the anwser Yes an experiment will test a theory. You perform an experiment to test the hypothesis. If the experiment can be repeated then the hypothesis becomes a theory. People perform experiments to test and retest theories.
Mendel conducted a dihybrid cross experiment by breeding pea plants that differed in both seed color (yellow vs. green) and seed shape (round vs. wrinkled). He started with true-breeding plants for each trait and then crossed them to observe the offspring. By analyzing the ratios of the phenotypes in the F2 generation, he determined that seed color and seed shape assort independently, demonstrating that these traits are inherited separately. This experiment laid the foundation for Mendel's laws of inheritance.
He tested seed color and shape at the same time.APEX
Gregor Johann Mendel - The Father of Genetics
(Apex Learning) He tested seed color and shape at the same time.