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What percentage of possible types of offspring had genotype of the same genotype as the parent?

75 percent


What perentage of the possible types of the offspring had the same genotype as the parents?

75%


What percentage of the possible types offspring had the same phenotype as parent?

75%


What was the phenotype for seed shape of both parent?

What percentage of the possible types of offspring had the same phenotype as the parents


What percentage of the possible types of offspring had the same genotype as the parents?

That depends entirely on the genotypes of the parents.


How many of the possible types of offspring had the same genotype as the parents?

Use a punnet square it may be a little tricky though.Just remember which letter is dominant and which one is recessive.heterozygous and Homozygous.


A scientist is preparing a punnett square for a dihybrid cross of a plant with a genotype of GGKk. What possible gametes can the plant produce?

The plant with genotype GGKk can produce two types of gametes: GK and Gk. This is because each parent contributes one allele per gene to the offspring, resulting in a total of four possible gametes when considering two different genes.


What is the percentage of the possible types of offspring had the same genotype as the parents?

Since there is no information on the genetic make up of the parents only a generalized set of answerscan be given.The chance of an offspring being genetically identical in every way to either or both of its parents is virtually nil.The percentages of individuals that match the genetics of the parents for a few traits can be determined through the use of a punnet square.For example considering a single trait where one parent is homozygous dominant and the other is homozygous recessive zero offspring will have the genotype of either parent.If the parents are heterozygous for a single trait 50% of the offspring will have the genotype of the parents for that trait.The more gene pairs considered the less likely an offspring identical to the parents is possible.


How can one create a Punnett square to determine the possible blood types of offspring based on the parents' blood types?

To create a Punnett square for determining the possible blood types of offspring based on the parents' blood types, you would first identify the blood type alleles of each parent (A, B, or O). Then, you would create a 4-square grid with the alleles of each parent on the top and side of the grid. By combining the alleles in each square, you can determine the possible blood types of the offspring.


What percentage of the possible types of the offspring had the same phenotype as the parent?

25% The percentage of the possible types of offspring that had the same phenotype as the parents are : bB-bb,BB-Bb=25% has black hair (dad) and 75% has blonde hair (mom).


What percentage of possibles types of offspring had the same genotype as the parents?

That depends entirely on the genotypes of the parents.


What are the phenotypes and genotypes of the offspring from the mating of a person with type B blood with a person with type O blood in codominance?

The offspring blood type with parents that have O and B blood types would come out with O positive. This is taught in biology. Based on the details of the question this initial answer is incorrect. Type O is not a dominant characteristic merely a common one. A person with type B blood could have a genotype of BO or BB so there are two potential answers to this question. The parent with O type blood can only have an OO genotype. If the parents are BB and OO then all offspring will be type B phenotypically and their genotype will be BO. If the parents are BO and OO then 50% of the offspring will have the BO genotype and 50% will have the OO genotype. Phenotypes will be B and O respectively. Since the question did not include any mention of the RH factor there is no way to determine that the offspring would be positive or negative. True codominance in blood types really only shows up with the AB genotype where the phenotype of the individual matches the genotype and the person has both A and B blood factors.