QUESTION IMAGE
Question
- who will males always inherit their x chromosome from?
- who will males always pass on their x chromosome to?
- why would a recessive x - linked trait always be expressed in males, but not in females?
- under what circumstances will recessive x - linked traits be expressed in females?
- look at the figure showing the unaffected father (xy) and the carrier mother (xx^c). let c represent the recessive allele for color blindness. use the colors in the diagram to help you fill in the punnett square that represents the children you see.
| x | y | |
|---|---|---|
| x^c |
Brief Explanations
- Males have the sex - chromosome combination \(XY\). Since the \(Y\) chromosome comes from the father, the \(X\) chromosome must come from the mother.
- When males pass on their chromosomes, they can pass either an \(X\) or a \(Y\) chromosome. Females have \(XX\) chromosomes. So, males always pass their \(X\) chromosome to their daughters.
- Males have only one \(X\) chromosome (\(XY\)). If a recessive allele is on that single \(X\) chromosome, there is no second \(X\) chromosome with a dominant allele to mask it. Females have two \(X\) chromosomes (\(XX\)). A recessive trait on one \(X\) can be masked by a dominant allele on the other \(X\).
- For a recessive \(X -\)linked trait to be expressed in females, they must inherit the recessive allele on both of their \(X\) chromosomes (i.e., be homozygous recessive \(X^{c}X^{c}\)).
- In a Punnett square, we combine the gametes. The father has gametes \(X\) and \(Y\), and the mother has gametes \(X\) and \(X^{c}\).
- When we combine \(X\) (from mother) and \(X\) (from father), we get \(XX\).
- When we combine \(X\) (from mother) and \(Y\) (from father), we get \(XY\).
- When we combine \(X^{c}\) (from mother) and \(X\) (from father), we get \(X^{c}X\).
- When we combine \(X^{c}\) (from mother) and \(Y\) (from father), we get \(X^{c}Y\).
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- Mother
- Daughters
- Males have one \(X\) chromosome; no dominant allele to mask recessive. Females have two \(X\) chromosomes; dominant can mask recessive.
- When homozygous recessive (\(X^{c}X^{c}\))
17.
| \(X\) | \(Y\) | |
|---|---|---|
| \(X^{c}\) | \(X^{c}X\) | \(X^{c}Y\) |