Father has hemophilia XY Mother is not a carrier Father does not have hemophila XY e the hemophilia gene Xx Mother is a carrier of the hemophillia gene XX XY s0% chance s0% chance daughters will be a carrier of the hemophila gene XX 0% chance sons will have hemophilia XY 100% chance daughters will be a carrier of the hemophilla gene XX sons will have hemophila XY Key Does not have Hemophilia Carmier of th Hemophilia gene Has Hemophilia Key Does not hwve Hemophilia Carrier of the Hemophilia gene Has Hemophila a b Fig. 92. Inheritance of hemophilia or bleeder's disease (a) when mother is a carrier, and (b) when father has the condition.
Father has hemophilia XY Mother is not a carrier Father does not have hemophila XY e the hemophilia gene Xx Mother is a carrier of the hemophillia gene XX XY s0% chance s0% chance daughters will be a carrier of the hemophila gene XX 0% chance sons will have hemophilia XY 100% chance daughters will be a carrier of the hemophilla gene XX sons will have hemophila XY Key Does not have Hemophilia Carmier of th Hemophilia gene Has Hemophilia Key Does not hwve Hemophilia Carrier of the Hemophilia gene Has Hemophila a b Fig. 92. Inheritance of hemophilia or bleeder's disease (a) when mother is a carrier, and (b) when father has the condition.
Human Heredity: Principles and Issues (MindTap Course List)
11th Edition
ISBN:9781305251052
Author:Michael Cummings
Publisher:Michael Cummings
Chapter4: Pedigree Analysis In Human Genetics
Section: Chapter Questions
Problem 17QP: Analysis of X-Linked Dominant and Recessive Traits A young boy is color-blind. His one brother and...
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1. Construct pedigree charts using the inheritance of hemophilia in figure 92. This is X-linked inheritance so you are required to label XX for females and XY for males. The gene responsible for the trait is represented by the superscript which should be specified in the legend.
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