7. A cross between a red-flowered plant and a blue-flowered plant results in a Identify the type of non-Mendelian genetics described. Write A on the blank if the item describes incomplete dominance, B if it describes codominance, and C if the item describes multiple alleles. 1. It is also known as blended inheritance because neither of the genes is able to mask the other. a 2. The offspring has both alleles and both are equally dominant. 3. The genes contain three or more alleles. 4. A cross between a red-flowered plant and a blue-flowered plant results violet-flowered plant. 5. More than two alleles can code for a gene. 6. It is a gene expression in which the phenotype of the heterozygous individual is intermediate between those of the parents. plant with red and blue flowers.

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7. A cross between a red-flowered plant and a blue-flowered plant results in a
Identify the type of non-Mendelian genetics described. Write A on the blank if the
item describes incomplete dominance, B if it describes codominance, and C if the item
describes multiple alleles.
1. It is also known as blended inheritance because neither of the genes is able
to mask the other.
a
2. The offspring has both alleles and both are equally dominant.
3. The genes contain three or more alleles.
4. A cross between a red-flowered plant and a blue-flowered plant results
violet-flowered plant.
5. More than two alleles can code for a gene.
6. It is a gene expression in which the phenotype of the heterozygous
individual is intermediate between those of the parents.
plant with red and blue flowers.
Transcribed Image Text:7. A cross between a red-flowered plant and a blue-flowered plant results in a Identify the type of non-Mendelian genetics described. Write A on the blank if the item describes incomplete dominance, B if it describes codominance, and C if the item describes multiple alleles. 1. It is also known as blended inheritance because neither of the genes is able to mask the other. a 2. The offspring has both alleles and both are equally dominant. 3. The genes contain three or more alleles. 4. A cross between a red-flowered plant and a blue-flowered plant results violet-flowered plant. 5. More than two alleles can code for a gene. 6. It is a gene expression in which the phenotype of the heterozygous individual is intermediate between those of the parents. plant with red and blue flowers.
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