A) recessive epistasis
B) dominant suppression
C) complementary gene interaction
D) dominant epistasis
E) dominant gene interaction
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A) sex- limited trait
B) lethal allele
C) sex- influenced trait
D) incomplete penetrance
E) variable expressivity
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Multiple Choice
A) dominant negative
B) hypermorphic
C) hypomorphic
D) amorphic
E) neomorphic
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Multiple Choice
A) The genes are part of two distinct biosynthetic pathways.
B) The allele is pleiotropic.
C) The allele exhibits incomplete dominance.
D) More than one gene is involved in determining the phenotype.
E) The two lines exhibit different mutations in the same gene.
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Multiple Choice
A) hypermorphic
B) hypomorphic
C) neomorphic
D) null/ amorphic
E) dominant negative
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Multiple Choice
A) Mutant 1 will cause a build up of metabolite A
B) Mutant 4 blocks a step before all the metabolites
C) Mutant 3 blocks the conversion of metabolite P βmetabolite A
D) Mutant 3 will cause a build up of metabolite T
E) Mutant 2 blocks a step right before metabolite H
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A) incompletely penetrant allele
B) partially dominant allele
C) dominant negative allele
D) temperature- sensitive allele
E) lethal allele
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Multiple Choice
A) hypomorphic
B) dominant negative
C) amorphic
D) hypermorphic
E) neomorphic
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Multiple Choice
A) heterozygotes with a novel phenotype between the dominant and recessive homozygotes
B) 1/3 of the progeny with the dominant phenotypes and 2/3 recessive
C) more than four phenotypes
D) fewer than four phenotypes
E) no change in the 9:3:3:1 ratio
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Multiple Choice
A) The haploid strains have identical mutations in the same genes.
B) The haploid strains must belong to the complementation group encoding the first enzyme in the biosynthetic pathway.
C) The haploid strains have identical mutations in different genes.
D) The haploid strains have mutations in the same gene.
E) The haploid strains have mutations in different genes.
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