2. In humans, the gene for red-green color vision is located on the X chromosome with no corresponding gene on the Y. The defective allele is recessive and causes red-green colorblindness. Show all the possible cross of the parents and their offspring. Also, give the probability of having color blind condition from the offspring. Show your solution/Punnett square/tree diagram. Use B or b as notation for color blindness. a. Normal Color Vision Mother but consider as Carrier and Color Blind Father b. Color Blind Mother and Normal Color Vision Father

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
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2. In humans, the gene for red-green color vision is located on the X chromosome with no
corresponding gene on the Y. The defective allele is recessive and causes red-green
colorblindness. Show all the possible cross of the parents and their offspring. Also, give the
probability of having color blind condition from the offspring. Show your solution/Punnett
square/tree diagram. Use B or b as notation for color blindness.
a. Normal Color Vision Mother but consider as Carrier and Color Blind Father
b. Color Blind Mother and Normal Color Vision Father
Transcribed Image Text:2. In humans, the gene for red-green color vision is located on the X chromosome with no corresponding gene on the Y. The defective allele is recessive and causes red-green colorblindness. Show all the possible cross of the parents and their offspring. Also, give the probability of having color blind condition from the offspring. Show your solution/Punnett square/tree diagram. Use B or b as notation for color blindness. a. Normal Color Vision Mother but consider as Carrier and Color Blind Father b. Color Blind Mother and Normal Color Vision Father
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