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Strain B Strain B 750 783
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Strain A Strain B 775 416
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14. The map position for three X-linked recessive genes in Drosophila (v, vermilion eyes; m, miniature wings; and s, sable body) is: v 33.0 m 36.1 s 43.0
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A wild-type male is X-rayed and mated to a vermilion, miniature, sable female. Among the progeny is a single vermilion-eyed, long-winged, tan-bodied female. The following shows the progeny when this female is mated with a v m s hemizygous male.
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Females 87 vermilion, miniature, sable 93 vermilion Males 89 vermilion, miniature, sable 1 vermilion
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Explain these results by drawing a genetic map. 15. In Drosophila, recessive genes clot (ct) and black body (b) are located at 16.5 and 48.5 map units, respectively, on the second chromosome. In one cross, wild-type females that are ct b /ct b are mated with ct b/ct b males. They produce these progeny:
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wild-type clot, black black clot 1,250 1,200 30 20
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You cross each strain with wild-type ies and measure the amount of enzyme in the F1 progeny.The results appear as follows. In what region is the gene located
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Percentage of Wild-Type Enzyme Produced in F1 Progeny 100 45 54 98 101
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What is unusual about the results How can you explain them 16. You have four strains of Drosophila (1 4) that were isolated from different geographic regions.You compare the banding patterns of the second chromosome and obtain these results (each letter corresponds to a band): (1) m n r q p o s t u v (2) m n o p q r s t u v (3) m n r q t s u p o v (4) m n r q t s o p u v If (3) is presumed to be the ancestral strain, in what order did the other strains arise 17. In Drosophila, the recessive gene for white eyes is located near the tip of the X chromosome. A wildtype male is irradiated and mated with a white-eyed female. Among the progeny is one red-eyed male. How can you explain the red-eyed male, and how could you test your hypothesis
Strain Crossed A B C D E
13. Consider the following table, which shows the number of viable progeny produced by a plant under standard conditions. Provide an explanation for the results.
Tamarin: Principles of Genetics, Seventh Edition
II. Mendelism and the Chromosomal Theory
8. Cytogenetics
The McGraw Hill Companies, 2001
Eight
Cytogenetics
VARIATION IN CHROMOSOME NUMBER
18. Is a tetraploid more likely to show irregularities in meiosis or mitosis Explain. What about these processes in a triploid 19. How many chromosomes would a human tetraploid have How many chromosomes would a human monosomic have 20. Do autopolyploids or allopolyploids experience more dif culties during meiosis Do amphidiploids have more or less trouble than auto- or allopolyploids 21. If a diploid species of 2n 16 hybridizes with one of 2n 12, and the resulting hybrid doubles its chromosome number to produce an allotetraploid (amphidiploid), how many chromosomes will it have How many chromosomes will an allotetraploid have if both parent species had 2n 20 22. If nondisjunction of the sex chromosomes occurs in a female at the second meiotic division, what type of eggs will arise
23. How might an X0/XYY human mosaic arise An XX/XXY mosaic How might a trisomy 21 individual arise 24. Plant species P has 2n 18, and species U has 2n 14. A fertile hybrid is found. How many chromosomes does it have 25. A woman with normal vision whose father was color-blind mates with a man with normal vision. They have a color-blind daughter with Turner syndrome. In which parent did nondisjunction occur 26. A color-blind man mates with a woman with normal vision whose father was color-blind. They have a color-blind son with Klinefelter syndrome. In which parent did nondisjunction occur 27. Describe a genetic event that can produce an XYY man. 28. Chromosomal analysis of a spontaneously aborted fetus revealed that the fetus was 92,XXYY. Propose an explanation to account for this unusual karyotype.
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