Donor Transductant Number genotype genotype proC* proA proC* proA* proB* proD* proB* proD* 2765 proC* proA proB* proD* 3 proC* proA* proC* proA* proB proD* proB* proD* 1838 proC* proA* proB proD* 2 proC* proA* proC* proA* proB" proD proB* proD* 1166 proC* proA* proB* proD

Biology Today and Tomorrow without Physiology (MindTap Course List)
5th Edition
ISBN:9781305117396
Author:Cecie Starr, Christine Evers, Lisa Starr
Publisher:Cecie Starr, Christine Evers, Lisa Starr
Chapter10: Biotechnology
Section: Chapter Questions
Problem 1VQ
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T. Miyake and M. Demerec examined proline-requiring mutations in the bacterium Salmonella typhimurium (). On the basis of complementation testing, they found four proline auxotrophs: proA, proB, proC, and proD. To determine whether proA, proB, proC, and proD loci were located close together on the bacterial chromosome, they conducted a transduction experiment. Bacterial strains that were proC+ and had mutations at proA, proB, or proD were used as donors. The donors were infected with bacteriophages, and progeny phages were allowed to infect recipient bacteria with genotype proC proA+ proB+ proD+. The recipient bacteria were
then plated on a selective medium that allowed only proC+ bacteria to grow. After this, the proC+ transductants were plated on selective media to reveal their genotypes at the other three pro loci. The following results were obtained:

Q.Why are there no proC− genotypes among the transductants?

Donor
Transductant Number
genotype
genotype
proC* proA proC* proA*
proB* proD* proB* proD*
2765
proC* proA
proB* proD*
3
proC* proA* proC* proA*
proB proD* proB* proD*
1838
proC* proA*
proB proD*
2
proC* proA* proC* proA*
proB" proD proB* proD*
1166
proC* proA*
proB* proD
Transcribed Image Text:Donor Transductant Number genotype genotype proC* proA proC* proA* proB* proD* proB* proD* 2765 proC* proA proB* proD* 3 proC* proA* proC* proA* proB proD* proB* proD* 1838 proC* proA* proB proD* 2 proC* proA* proC* proA* proB" proD proB* proD* 1166 proC* proA* proB* proD
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