It isn't really a condition but a term used for codominance. ABO blood type is an example.
Codominance is the condition in which two different alleles for a gene are both expressed and neither is dominant or recessive. This results in a phenotype that shows a mixture of the traits from both alleles.
The type of inheritance where both alleles are expressed equally in the offspring is known as codominance. In codominance, neither allele is dominant or recessive, resulting in a phenotype that displays characteristics of both alleles simultaneously. A classic example of this is seen in certain blood types, such as AB blood type, where both A and B alleles are fully expressed.
In genetics, gene with two dominant alleles that are expressed at the same time is known as codominance. This results in a phenotype where both alleles are equally and fully expressed in the offspring. An example of codominance is the AB blood type in humans, where the A and B alleles are both expressed on the surfaces of red blood cells.
homozygous dominant or recessive depending on what gene it is
Codominance is the interaction of two alleles where both alleles are equally expressed in the phenotype, resulting in a mixed or blended phenotype. This means that the traits controlled by each allele are both visible in the individual.
Codominance is the condition in which two different alleles for a gene are both expressed and neither is dominant or recessive. This results in a phenotype that shows a mixture of the traits from both alleles.
The expression of more than one allele is referred to as incomplete dominance. For example a flower that is heterozygous red and white will have a pink phenotype.
Codominance is a genetic trait where two different alleles for a gene are both expressed equally in the phenotype of a heterozygote individual. This results in a phenotype that shows characteristics of both alleles instead of a blending of traits. An example is the AB blood type in humans, where both A and B alleles are expressed equally.
co dominance
The type of inheritance where both alleles are expressed equally in the offspring is known as codominance. In codominance, neither allele is dominant or recessive, resulting in a phenotype that displays characteristics of both alleles simultaneously. A classic example of this is seen in certain blood types, such as AB blood type, where both A and B alleles are fully expressed.
In genetics, gene with two dominant alleles that are expressed at the same time is known as codominance. This results in a phenotype where both alleles are equally and fully expressed in the offspring. An example of codominance is the AB blood type in humans, where the A and B alleles are both expressed on the surfaces of red blood cells.
This is called co-dominance. This is when 2 or more alleles are expressed at the same time. In other words they both affect the phenotype. In the example of human blood ABO type we have an allele for A = IA, B= Ib O=iIAIb = AB blood typeIbIb = B blood typeIai = AIaIa = A bloody typeIbi = B blood typeii = O blood type
In codominance, both alleles in a gene pair are expressed equally, resulting in a blending of traits. This is different from a dominant and recessive relationship, where one allele is dominant and masks the expression of the recessive allele.
homozygous dominant or recessive depending on what gene it is
Genetic makeup formed from both inherited alleles together is called a genotype. Homozygous alleles would be a pair of identical alleles for a single trait. Heterozygous is different alleles for a single trait.
Codominance is the interaction of two alleles where both alleles are equally expressed in the phenotype, resulting in a mixed or blended phenotype. This means that the traits controlled by each allele are both visible in the individual.
Because both factors are present; when we talk about blood types, we have 2 individuals with 2 different blood types and they become codominant within the reproduction; meaning, there is a set of alleles and both of them show in the phenotype.