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SEX-LINKED TRAITS
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Karyotype: a picture of chromosomes.
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Autosomes: the first 22 homologous pairs of chromosomes. Autosomes are the same for both males and females.
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Sex chromosomes: determines the sex of the individual. The sex chromosomes are the 23rd pair of chromosomes.
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XX = female
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XY = male
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Which parent determines the sex of an offspring?
DAD
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Why? All moms have the genotype XX. When egg cells are made, they will all carry a single X chromosome.
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All dads have the genotype XY
All dads have the genotype XY. When sperm cells are made, 50% will have an X chromosome and 50% will have a Y chromosome. Therefore, males and females are born in roughly a 50:50 ratio.
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SEX-LINKED TRAITS: those traits that are controlled by genes on the X or Y chromosomes.
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NOTE: The Y chromosome is much smaller than the X chromosome and only contains a few genes. Most sex-linked traits are on the X chromosome.
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Examples of X-linked traits:
1. Hemophilia 2. Color Blindness 3. Muscular Dystrophy 4. Icthyosis simplex (scaly skin)
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Hemophilia Hemophilia- Lacking in the ability to clot blood
There is a gene on the “X” chromosome that control blood clotting People who have hemophilia are missing the protein to clot blood They can bleed to death by minor cut.
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In humans, hemophilia is a sex-linked trait
In humans, hemophilia is a sex-linked trait. Having hemophilia is recessive (Xh) to being normal (XH). The heterozygous female is called a carrier. Cross a carrier female with a normal male. XHXh X _____
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In humans, hemophilia is a sex-linked trait
In humans, hemophilia is a sex-linked trait. Having hemophilia is recessive (Xh) to being normal (XH). The heterozygous female is called a carrier. Cross a carrier female with a normal male. XHXh X XHY
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XH Xh Y
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XH Xh XHXH Y
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XH Xh XHXH XHXh Y
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XH Xh XHXH XHXh Y XHY
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XH Xh XHXH XHXh Y XHY XhY
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Genotypic ratio: 1 XHXH :1XHXh :1XHY :1XhY Phenotypic ratio: 2 normal females: 1normal male: 1 male with hemophilia
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Cross a carrier female with a male with hemophilia.
XHXh X _____
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Cross a carrier female with a male with hemophilia.
XHXh X XhY
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XH Xh Y
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XH Xh XHXh Y
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XH Xh XHXh XhXh Y
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XH Xh XHXh XhXh Y XHY
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XH Xh XHXh XhXh Y XHY XhY
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Genotypic ratio: 1 XHXh :1XhXh :1XHY :1XhY Phenotypic ratio: 1 normal female: 1 female with hemophilia:1 normal male: 1 male with hemophilia
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Colorblindness A person with normal color vision sees a number seven in the circle above. Those who are color blind usually do not see any number at all.
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Colorblindness RED-GREEN COLORBLINDNESS:
People with red-green color blindness see either a three or nothing at all. Those with normal color vision see an 8.
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In humans, red-green colorblindness is a sex-linked trait
In humans, red-green colorblindness is a sex-linked trait. People with red-green colorblindness can not tell the difference between red and green. Colorblindness is the result of a recessive allele. Cross a female with colorblindness with a male with normal vision. XnXn X _____
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In humans, red-green colorblindness is a sex-linked trait
In humans, red-green colorblindness is a sex-linked trait. People with red-green colorblindness can not tell the difference between red and green. Colorblindness is the result of a recessive allele. Cross a female with colorblindness with a male with normal vision. XnXn X XNY
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Xn XN Y
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Xn XN XNXn Y
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Xn XN XNXn Y
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Xn XN XNXn Y XnY
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Xn XN XNXn Y XnY
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Genotypic ratio: 2 XNXn : 2 XnY Phenotypic ratio: 2 normal females: 2 males with colorblindness
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Muscular Dystrophy - Results in weakening/loss of muscles
- Caused by defective version of gene that codes for muscle
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Why are sex-linked traits more common in males than in females?
Because a male only has to inherit ONE recessive allele in order to get a sex-linked trait and a female has to inherit TWO recessive alleles in order to acquire the sex-linked trait.
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It is easier to inherit one recessive allele than two.
If the female only inherits one recessive allele, then they are a carrier but have the normal phenotype.
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