1. Both parents have one dominant allele and one recessive allele. This means that they are heterozygous for that particular gene. How many percent chance of them producing a child with Huntington's disease?

Human Anatomy & Physiology (11th Edition)
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Chapter1: The Human Body: An Orientation
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III- PROCEDURE:
A. Show the crossing using punnett square for the following genetics problem set.
1. Both parents have one dominant allele and one recessive allele. This means that they are heterozygous for that particular gene. How many percent chance of them producing a child with Huntington's disease?
2. Using punnett square show the two possible chances of parents to produce children with 100% Huntington's disease Put the possible genes of parents in the 2 punnett square. Show the cross
田田
3. For the given result below of the cystic fibrosis inheritance. Show the crossing for this autosomal recessive trait.
88
Crpyige y
4. Show a cross for a sickle cell inheritance of a woman who is homozygous for the disease and a man who is heterozygous. How many percent chance of them producing a child with Sickle cell disease, carrier and normal ?
carrier of the disease
%, not having the disease
%, w/ sickle cell
%
Transcribed Image Text:III- PROCEDURE: A. Show the crossing using punnett square for the following genetics problem set. 1. Both parents have one dominant allele and one recessive allele. This means that they are heterozygous for that particular gene. How many percent chance of them producing a child with Huntington's disease? 2. Using punnett square show the two possible chances of parents to produce children with 100% Huntington's disease Put the possible genes of parents in the 2 punnett square. Show the cross 田田 3. For the given result below of the cystic fibrosis inheritance. Show the crossing for this autosomal recessive trait. 88 Crpyige y 4. Show a cross for a sickle cell inheritance of a woman who is homozygous for the disease and a man who is heterozygous. How many percent chance of them producing a child with Sickle cell disease, carrier and normal ? carrier of the disease %, not having the disease %, w/ sickle cell %
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