Chapter 6: Problem 6
What are the possible reasons behind translocations?
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Chapter 6: Problem 6
What are the possible reasons behind translocations?
These are the key concepts you need to understand to accurately answer the question.
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Drasophila may be monosomic for chromosome \(4,\) yet remain fertile. Contrast the \(\mathrm{F}_{1}\) and \(\mathrm{F}_{2}\) results of the following crosses involving the recessive chromosome 4 trait, bent bristles: (a) monosomic \(\mathrm{IV}\), bent bristles \(\times\) normal bristles; (b) monosomic \(\mathrm{IV},\) normal bristles \(\times\) bent bristles.
A couple goes through multiple miscarriages, and fetal karyotyping indicates the same trisomy every time. This trisomy is not compatible with life. Obviously, neither of the parents has this trisomy. Can you explain this situation?
Define these pairs of terms, and distinguish between them. aneuploidy/euploidy monosomy/trisomy Patau syndrome/Edwards syndrome autopolyploidy/allopolyploidy autotetraploid/amphidiploid paracentric inversion/pericentric inversion
In a human genetic study, a family with five phenotypically normal children was investigated. Two children were "homozygous" for a Robertsonian translocation between chromosomes 19 and 20 (they contained two identical copies of the fused chromosome). They have only 44 chromosomes but a complete genetic complement. Three of the children were "heterozygous" for the translocation and contained 45 chromosomes, with one translocated chromosome plus a normal copy of both chromosomes 19 and \(20 .\) Two other pregnancies resulted in stillbirths. It was later discovered that the parents were first cousins. Based on this information, determine the chromosome compositions of the parents. What led to the stillbirths? Why was the discovery that the parents were first cousins a key piece of information in understanding the genetics of this family?
A couple has two children, of whom one has Turner syndrome and the other has Klinefelter syndrome. A genetic analysis of the parents reveals one to produce normal gametes. Which of the two parents is normal? What kind of abnormality would you predict in the gametes of the other parent?
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