Chapter 5: Problem 9
Describe how nondisjunction in human female gametes can give rise to Klinefelter and Turner syndrome offspring following fertilization by a normal male gamete.
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Chapter 5: Problem 9
Describe how nondisjunction in human female gametes can give rise to Klinefelter and Turner syndrome offspring following fertilization by a normal male gamete.
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Describe the major difference between sex determination in Drosophila and in humans.
An attached-X female fly, XXY (see the Insights and Solutions box), expresses the recessive X-linked white-eye phenotype. It is crossed to a male fly that expresses the X-linked recessive miniature wing phenotype. Determine the outcome of this cross in terms of sex, eye color, and wing size of the offspring.
Review the Chapter Concepts list on p. \(83 .\) These all center on sex determination or the expression of genes encoded on sex chromosomes. Write a short essay that discusses sex chromosomes as they contrast with autosomes.
Indicate the expected number of Barr bodies in interphase cells of individuals with (a) triple \(X\) syndrome \((X X X)\) (b) \(\mathrm{XYY}\) syndrome, (c) Klinefelter syndrome, (d) Turner syndrome, and karyotype \(48, \mathrm{XXXX}\)
An insect species is discovered in which the heterogametic sex is unknown. An X-linked recessive mutation for reduced wing (rw) is discovered. Contrast the \(F_{1}\) and \(F_{2}\) generations from a cross between a female with reduced wings and a male with normalsized wings when (a) the female is the heterogametic sex. (b) the male is the heterogametic sex.
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