Introduction and definition of cytology, genetics, and cytogenetics
Easy
A.Cells and their structures
B.Inheritance of traits
C.Chemical reactions in plants
D.Classification of organisms
Correct Answer: Cells and their structures
Explanation:
Cytology is the branch of biology that studies cells, including their structure and functions.
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2What is genetics the study of?
Introduction and definition of cytology, genetics, and cytogenetics
Easy
A.Heredity and variation
B.Cell shape and size
C.Tissue formation
D.Organ classification
Correct Answer: Heredity and variation
Explanation:
Genetics deals with heredity, the transmission of traits, and variation among organisms.
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3Cytogenetics is the study of the relationship between genetics and which cell component?
Introduction and definition of cytology, genetics, and cytogenetics
Easy
A.Cytoplasm
B.Ribosomes
C.Chromosomes
D.Cell wall
Correct Answer: Chromosomes
Explanation:
Cytogenetics combines cytology and genetics to study chromosomes and their role in heredity.
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4Which structure carries many genes in a cell?
Introduction and definition of cytology, genetics, and cytogenetics
Easy
A.Cell membrane
B.Chromosome
C.Golgi body
D.Vacuole
Correct Answer: Chromosome
Explanation:
Chromosomes contain DNA, and genes are specific regions of that DNA.
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5How are cytology and genetics related?
Interrelation of cytology, genetics, and cytogenetics
Easy
A.Cytology studies only organisms without genes
B.The two fields study completely unrelated subjects
C.Cytology studies cells where genetic material is found
D.Genetics studies cells but never heredity
Correct Answer: Cytology studies cells where genetic material is found
Explanation:
Cytology examines cells and chromosomes, while genetics explains how genetic information is inherited.
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6Which field helps identify chromosome abnormalities associated with genetic disorders?
Interrelation of cytology, genetics, and cytogenetics
Easy
A.Physiology
B.Taxonomy
C.Cytogenetics
D.Ecology
Correct Answer: Cytogenetics
Explanation:
Cytogenetics examines chromosome number and structure to detect abnormalities.
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7In a complete dominance relationship, what is the phenotype of a heterozygote?
Dominance relationships
Easy
A.It shows both traits equally
B.It resembles the dominant homozygote
C.It always resembles the recessive homozygote
D.It shows a completely new trait
Correct Answer: It resembles the dominant homozygote
Explanation:
With complete dominance, the dominant allele masks the effect of the recessive allele in a heterozygote.
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8What is the relationship in which both alleles are expressed in a heterozygote?
Dominance relationships
Easy
A.Complete dominance
B.Codominance
C.Recessiveness
D.Lethal interaction
Correct Answer: Codominance
Explanation:
In codominance, both alleles contribute visibly to the phenotype.
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9Which example demonstrates codominance?
Dominance relationships
Easy
A.Tall pea plants
B.White flower color only
C.Wrinkled pea seeds
D.AB blood group
Correct Answer: AB blood group
Explanation:
In the AB blood group, both the and alleles are expressed.
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10What is incomplete dominance?
Dominance relationships
Easy
A.Only the recessive allele is expressed
B.The phenotype is controlled by many unrelated genes
C.The heterozygote has an intermediate phenotype
D.Both alleles are expressed separately and fully
Correct Answer: The heterozygote has an intermediate phenotype
Explanation:
In incomplete dominance, the heterozygous phenotype is intermediate between the two homozygous phenotypes.
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11Red flowers crossed with white flowers produce pink flowers. This is an example of:
Dominance relationships
Easy
A.Incomplete dominance
B.Complete dominance
C.Codominance
D.Cytoplasmic inheritance
Correct Answer: Incomplete dominance
Explanation:
Pink flowers show an intermediate phenotype between red and white, indicating incomplete dominance.
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12A recessive allele is expressed phenotypically in a diploid organism when it is usually present in:
Dominance relationships
Easy
A.A heterozygous condition
B.A single chromosome regardless of its partner
C.A codominant condition only
D.A homozygous condition
Correct Answer: A homozygous condition
Explanation:
A recessive trait is generally expressed when two copies of the recessive allele are present.
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13What is epistasis?
Epistatic interactions with examples
Easy
A.Expression of both alleles in one individual
B.Interaction in which one gene masks another gene
C.Exchange of segments between homologous chromosomes
D.Random movement of chromosomes during cell division
Correct Answer: Interaction in which one gene masks another gene
Explanation:
Epistasis occurs when the allele of one gene affects or masks the expression of another gene.
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14In Labrador retrievers, the genotype prevents pigment deposition in the fur. This is an example of:
Epistatic interactions with examples
Easy
A.Cytoplasmic inheritance
B.Incomplete dominance
C.Codominance
D.Recessive epistasis
Correct Answer: Recessive epistasis
Explanation:
The homozygous recessive genotype at one locus masks the expression of another pigment-color gene.
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15In dominant epistasis, the masking effect is produced by:
Epistatic interactions with examples
Easy
A.Two recessive alleles only
B.A chromosome with no genes
C.A dominant allele
D.A mitochondrial gene only
Correct Answer: A dominant allele
Explanation:
Dominant epistasis occurs when at least one dominant allele at one locus masks the expression of another locus.
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16Which type of interaction involves two genes working together to produce a single phenotype?
Epistatic interactions with examples
Easy
A.Independent assortment
B.Epistatic interaction
C.Simple mutation
D.Chromosome duplication
Correct Answer: Epistatic interaction
Explanation:
Epistatic interactions occur when genes at different loci influence one another's expression.
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17Cytoplasmic inheritance is mainly controlled by genes located in the:
Cytoplasmic inheritance
Easy
A.Spindle fibers
B.Cell wall
C.Cytoplasm
D.Nuclear membrane
Correct Answer: Cytoplasm
Explanation:
Cytoplasmic inheritance results from genetic material outside the nucleus, especially in mitochondria and chloroplasts.
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18Which organelles commonly contain genetic material involved in cytoplasmic inheritance?
Cytoplasmic inheritance
Easy
A.Mitochondria and chloroplasts
B.Centrioles and cell walls
C.Ribosomes and lysosomes
D.Golgi bodies and vacuoles
Correct Answer: Mitochondria and chloroplasts
Explanation:
Mitochondria and chloroplasts contain their own DNA and can transmit some traits independently of nuclear genes.
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19Why is mitochondrial inheritance often described as maternal inheritance?
Cytoplasmic inheritance
Easy
A.The sperm always contains two nuclei
B.Nuclear chromosomes are absent from the egg
C.The egg usually contributes most of the cytoplasm
D.Mitochondria are found only in male cells
Correct Answer: The egg usually contributes most of the cytoplasm
Explanation:
The egg contributes most of the zygote's cytoplasm, including many mitochondria, so mitochondrial traits often come from the mother.
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20Which statement best distinguishes cytoplasmic inheritance from nuclear inheritance?
Cytoplasmic inheritance
Easy
A.It prevents all traits from being passed to offspring
B.It involves genes outside the nucleus
C.It occurs only in organisms without chromosomes
D.It is controlled exclusively by proteins in the cell wall
Correct Answer: It involves genes outside the nucleus
Explanation:
Cytoplasmic inheritance involves genetic information located in organelles such as mitochondria or chloroplasts.
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21In snapdragons, red flowers are crossed with white flowers, and all plants have pink flowers. If two pink plants are crossed, what phenotypic ratio is expected in the generation?
Dominance relationships
Medium
A. red : pink : white
B. red : pink : white
C. red : white
D. red : pink
Correct Answer: red : pink : white
Explanation:
This is incomplete dominance. The heterozygote is pink, so an cross produces red , pink , and white .
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22A person with blood group AB has a child with a person who has blood group O. Which blood groups are possible among their children?
Dominance relationships
Medium
A.A, B, AB, and O
B.AB and O only
C.A and B only
D.A, B, and AB only
Correct Answer: A and B only
Explanation:
The cross is . Children can inherit either or , producing blood group A or B.
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23A heterozygous genotype has a measurable enzyme activity of 80 units, while the two homozygotes have activities of 50 and 80 units. Which dominance relationship best describes enzyme activity?
Dominance relationships
Medium
A.Codominance
B.Complete dominance
C.Overdominance
D.Incomplete dominance
Correct Answer: Complete dominance
Explanation:
The heterozygote has the same measured phenotype as the 80-unit homozygote, indicating complete dominance for enzyme activity.
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24In a plant species, genotypes , , and produce 20, 28, and 12 seeds per plant, respectively. Which relationship is shown by the heterozygote?
Dominance relationships
Medium
A.Incomplete dominance
B.Overdominance
C.Complete dominance
D.Codominance
Correct Answer: Overdominance
Explanation:
The heterozygote has a higher seed yield than either homozygote. This superior heterozygous phenotype is called overdominance.
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25In Labrador retrievers, produces black pigment and produces brown pigment, but prevents pigment deposition and produces yellow fur. What phenotype is expected for a dog with genotype ?
Epistatic interactions with examples
Medium
A.Black fur
B.Yellow fur
C.Black-and-brown fur
D.Brown fur
Correct Answer: Yellow fur
Explanation:
The homozygous genotype blocks pigment deposition regardless of the locus. Thus, is recessively epistatic and produces yellow fur.
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26Two dihybrid Labrador retrievers, , are crossed. If produces yellow fur, what fraction of the offspring is expected to be yellow?
Epistatic interactions with examples
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Yellow fur occurs with , independent of the locus. In an cross, the probability of is .
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27Flower pigment is produced only when a plant has at least one dominant allele at both the and loci. What phenotypic ratio is expected from ?
Epistatic interactions with examples
Medium
A. colored : white
B. colored : white
C. colored : white
D. colored : white
Correct Answer: colored : white
Explanation:
Color requires the genotype , which occurs in of the offspring. The remaining lack a dominant allele at one or both loci and are white.
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28In summer squash, produces white fruit regardless of the second locus, while produces yellow fruit and produces green fruit. Which ratio is expected from ?
Epistatic interactions with examples
Medium
A. white : yellow : green
B. white : yellow : green
C. white : yellow : green
D. white : yellow : green
Correct Answer: white : yellow : green
Explanation:
The dominant allele masks the locus in offspring. Among offspring, are yellow and is green.
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29Two independently assorting genes perform the same function, so a dominant allele at either locus produces the normal phenotype. Only is mutant. What ratio is expected from ?
Epistatic interactions with examples
Medium
A. normal : mutant
B. normal : mutant
C. normal : mutant
D. normal : mutant
Correct Answer: normal : mutant
Explanation:
Any genotype containing or is normal. Only , occurring with probability , is mutant, giving a ratio.
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30A person has the genotype at the ABO locus but at the H locus and is phenotypically blood group O. What best explains this result?
Epistatic interactions with examples
Medium
A.The ABO locus is recessively epistatic to H
B.The H locus is recessively epistatic to ABO
C.The alleles and show incomplete dominance
D.The allele is dominant over both antigen alleles
Correct Answer: The H locus is recessively epistatic to ABO
Explanation:
The genotype prevents formation of the H substance needed to display A or B antigens. It therefore masks the ABO genotype, as in the Bombay phenotype.
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31A variegated female branch of Mirabilis jalapa is crossed with a green male branch, and the offspring include green, white, and variegated seedlings. Which observation best supports chloroplast inheritance?
Cytoplasmic inheritance
Medium
A.Offspring phenotype depends mainly on the maternal branch
B.Offspring phenotype depends mainly on the paternal branch
C.All offspring show the same intermediate phenotype
D.The offspring follow a consistent ratio
Correct Answer: Offspring phenotype depends mainly on the maternal branch
Explanation:
Egg cells contribute most of the cytoplasm and chloroplasts to the zygote. Therefore, seedling color depends mainly on the chloroplast types present in the maternal branch.
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32A mitochondrial disorder is present in a woman and all her children, but an affected man does not transmit it to any of his children. Which inheritance pattern is most consistent with this pedigree?
Cytoplasmic inheritance
Medium
A.Autosomal recessive inheritance
B.Maternal cytoplasmic inheritance
C.X-linked dominant inheritance
D.Y-linked inheritance
Correct Answer: Maternal cytoplasmic inheritance
Explanation:
Mitochondria are usually inherited through the egg. Affected mothers may transmit mitochondrial variants to all children, whereas affected fathers usually do not transmit them.
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33Two siblings inherit the same pathogenic mitochondrial variant from their mother but show different disease severity. Which concept best explains this difference?
Cytoplasmic inheritance
Medium
A.Crossing over between sex chromosomes
B.Heteroplasmy and threshold effects
C.Codominance at an autosomal locus
D.Independent assortment of homologues
Correct Answer: Heteroplasmy and threshold effects
Explanation:
Different cells or offspring may receive different proportions of mutant mitochondria. Symptoms vary depending on whether the mutant proportion exceeds a tissue-specific threshold.
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34Reciprocal crosses for a trait produce different offspring phenotypes even though the nuclear genotypes of the offspring are equivalent. What is the most appropriate initial hypothesis?
Cytoplasmic inheritance
Medium
A.The alleles must segregate during meiosis II
B.The trait must involve complete dominance
C.The genes must be tightly linked on an autosome
D.The trait may involve cytoplasmic inheritance
Correct Answer: The trait may involve cytoplasmic inheritance
Explanation:
Different outcomes from reciprocal crosses suggest that the cytoplasm supplied by the egg influences the trait, although maternal effects should also be tested.
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35A researcher wants to distinguish mitochondrial inheritance from an autosomal dominant pattern. Which result would provide the strongest evidence for mitochondrial inheritance?
Cytoplasmic inheritance
Medium
A.Unaffected parents produce affected children of both sexes
B.Both sexes transmit the trait equally to half of their children
C.Affected fathers transmit the trait to half of their children
D.Affected mothers transmit the trait, but affected fathers do not
Correct Answer: Affected mothers transmit the trait, but affected fathers do not
Explanation:
Strong maternal transmission combined with absence of paternal transmission is characteristic of mitochondrial inheritance and differs from autosomal dominant inheritance.
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36A scientist uses microscopy to compare chromosome number and structure in normal and abnormal cells. Which field most directly covers this investigation?
Introduction and definition of cytology, genetics, and cytogenetics
Medium
A.Cytogenetics
B.Biochemistry
C.Genetics
D.Cytology
Correct Answer: Cytogenetics
Explanation:
Cytogenetics studies chromosomes, including their number, structure, behavior, and relationship to inheritance and variation.
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37Which pairing correctly matches each discipline with its primary focus?
Introduction and definition of cytology, genetics, and cytogenetics
Medium
A.Cytology: cells; genetics: heredity; cytogenetics: chromosomes and inheritance
Correct Answer: Cytology: cells; genetics: heredity; cytogenetics: chromosomes and inheritance
Explanation:
Cytology focuses on cell structure and function, genetics examines heredity and variation, and cytogenetics connects chromosome biology with inheritance.
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38A child has developmental abnormalities, and a pedigree alone does not reveal the cause. A karyotype shows three copies of chromosome 21. How does this illustrate the interrelation of the three fields?
Interrelation of cytology, genetics, and cytogenetics
Medium
A.Cell analysis reveals a chromosomal basis for an inherited condition
B.Tissue culture reveals a biochemical basis for natural selection
C.Protein analysis reveals a cytoplasmic basis for a dominant trait
D.Population analysis reveals an environmental basis for cell division
Correct Answer: Cell analysis reveals a chromosomal basis for an inherited condition
Explanation:
Cytological examination of cells identifies the extra chromosome, while genetics relates that chromosome abnormality to the observed condition. This combined approach is cytogenetic.
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39A geneticist predicts that a mutation is caused by deletion of part of a chromosome. Which investigation most directly connects the genetic prediction with cellular evidence?
Interrelation of cytology, genetics, and cytogenetics
Medium
A.Counting phenotypes without examining chromosomes
B.Measurement of respiration using a respirometer
C.Comparison of proteins using chromatography
D.Chromosome analysis using karyotyping or FISH
Correct Answer: Chromosome analysis using karyotyping or FISH
Explanation:
Karyotyping or FISH can visualize the suspected chromosomal deletion, connecting a genetic phenotype with a cytological chromosome abnormality.
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40During meiosis, homologous chromosomes fail to separate, producing gametes with abnormal chromosome numbers. Which statement best integrates cytology and genetics?
Interrelation of cytology, genetics, and cytogenetics
Medium
A.A cytoplasmic organelle can replace homologous chromosomes
B.A metabolic pathway can prevent all chromosome mutations
C.A dominant allele can control every stage of cell division
D.A cellular segregation error can alter genetic transmission
Correct Answer: A cellular segregation error can alter genetic transmission
Explanation:
Nondisjunction is observed as an error in chromosome behavior within cells, and it changes how genetic material is transmitted to offspring.
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41At a pigment locus, genotypes , , and produce red, roan, and white coats, respectively. Microscopy shows that each hair in a roan animal is either entirely red or entirely white. Which interpretation best fits these observations?
Dominance relationships
Hard
A.The white allele is recessive because pigment is absent from some hairs
B.The alleles are codominant because both cellular products remain distinguishable
C.The red allele is completely dominant because the coat appears partly red
D.The alleles show incomplete dominance because every hair has intermediate pigment
Correct Answer: The alleles are codominant because both cellular products remain distinguishable
Explanation:
Roan animals express both parental phenotypes as distinct red and white hairs. This is codominance, not blending within individual hairs.
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42Allele causes a short-tail phenotype in mice but is embryonic lethal in mice; mice have normal tails. Two short-tailed mice are crossed. Among 180 live offspring, what result is most consistent with the model?
Dominance relationships
Hard
A.About 60 short-tailed and 120 normal-tailed mice
B.About 90 short-tailed and 90 normal-tailed mice
C.About 135 short-tailed and 45 normal-tailed mice
D.About 120 short-tailed and 60 normal-tailed mice
Correct Answer: About 120 short-tailed and 60 normal-tailed mice
Explanation:
The conception ratio is , but embryos die. Surviving offspring therefore occur in a short-to-normal ratio.
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43A heterozygote has 60 enzyme units, whereas the two homozygotes have 100 and 0 units. Disease occurs below 40 units, so the heterozygote is clinically normal. Which conclusion is most accurate?
Dominance relationships
Hard
A.Dominance depends on the measured trait and its physiological threshold
B.The functional allele must be codominant at every phenotypic level
C.The null allele must be dominant because enzyme output is reduced
D.The heterozygote proves that enzyme quantity is inherited polygenically
Correct Answer: Dominance depends on the measured trait and its physiological threshold
Explanation:
The heterozygote is intermediate for enzyme amount but resembles the normal homozygote clinically. Dominance can differ across molecular and organismal phenotype levels.
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44At one locus, adult viability relative to is 1.0 for , 1.4 for , and 0.7 for . Which dominance relationship applies specifically to adult viability?
Dominance relationships
Hard
A.Incomplete dominance, because the heterozygote is quantitatively intermediate
B.Codominance, because both alleles contribute separate viability values
C.Overdominance, because the heterozygote exceeds both homozygotes
D.Complete dominance, because masks in the heterozygote
Correct Answer: Overdominance, because the heterozygote exceeds both homozygotes
Explanation:
For the measured trait, has greater viability than either homozygote. That heterozygote advantage is overdominance.
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45Two pure lines with flower pigment scores 0 and 10 produce an score of 5. The contains scores 0, 5, and 10 in a ratio. Assuming one locus, which model is best supported?
Dominance relationships
Hard
A.Complete dominance with variable penetrance in one homozygous class
B.Codominance with separate pigment patches in every heterozygous flower
C.Incomplete dominance with the heterozygote showing an intermediate score
D.Recessive lethality followed by compensation among surviving progeny
Correct Answer: Incomplete dominance with the heterozygote showing an intermediate score
Explanation:
An intermediate and a phenotypic ratio matching genotypes support incomplete dominance at a single locus.
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46In a dihybrid self, phenotype classes follow recessive epistasis: and are distinct, while and share a third phenotype. What is the probability that an individual with the third phenotype is ?
Epistatic interactions with examples
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The epistatic phenotype totals : contributes and contributes . Thus the conditional probability is .
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47A cross yields three phenotypes in the ratio . Genotypes and have the same phenotype. Which interaction explains the ratio?
Epistatic interactions with examples
Hard
A.Duplicate recessive epistasis, requiring both dominant alleles
B.Dominant epistasis, with masking the locus
C.Duplicate dominant epistasis, requiring either dominant allele
D.Recessive epistasis, with masking the locus
Correct Answer: Dominant epistasis, with masking the locus
Explanation:
combines the and classes into ; and form the and classes.
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48Flower pigment requires dominant alleles at both loci: only is purple, while every or plant is white. A purple dihybrid is selfed. Among white progeny, what fraction is expected to be ?
Epistatic interactions with examples
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Duplicate recessive epistasis gives purple and white. The class is , so among white progeny its fraction is .
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49Either dominant allele at loci or produces capsules; only lacks capsules. In a self-cross of , capsule-bearing offspring are testcrossed to . Which parental genotype can produce only capsule-bearing testcross progeny?
Epistatic interactions with examples
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Under duplicate dominant epistasis, any or offspring bears capsules. transmits both dominant alleles to every testcross offspring, whereas the other genotypes can generate .
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50In a dominant-suppression system, suppresses color regardless of , while is colored and is colorless. What phenotypic ratio is expected from ?
Epistatic interactions with examples
Hard
A. colorless : colored : pale
B. colorless : colored
C. colored : colorless
D. colored : colorless
Correct Answer: colorless : colored
Explanation:
accounts for colorless progeny and adds ; only , or , is colored.
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51A woman has genotype at the ABO locus but at the H locus. A man is . Assuming classical Bombay epistasis, what blood-group phenotype does the woman express?
Epistatic interactions with examples
Hard
A.A phenotype, because the paternal H allele activates only A antigen
B.AB phenotype, because and are codominant alleles
C.Bombay phenotype, because prevents A and B antigen expression
D.O phenotype, because the woman must have genotype at ABO
Correct Answer: Bombay phenotype, because prevents A and B antigen expression
Explanation:
The H precursor is required for A or B antigen formation. The genotype is recessively epistatic to ABO, so even is phenotypically Bombay.
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52In Labrador retrievers, gives black pigment and gives brown pigment, but prevents pigment deposition and produces yellow. A black dog of genotype is crossed with a yellow dog of genotype . What ratio is expected?
Epistatic interactions with examples
Hard
A. black, brown, yellow
B. black, brown, yellow
C. black, brown, yellow
D. black, brown, yellow
Correct Answer: black, brown, yellow
Explanation:
At , half the offspring are and half . Among the half, are and are , giving black, brown, and yellow.
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53Reciprocal crosses between a resistant female line and a sensitive male line produce resistant offspring, whereas the reverse cross produces sensitive offspring. Repeated backcrossing of daughters to males of the opposite phenotype preserves the maternal phenotype. Which hypothesis is strongest?
Cytoplasmic inheritance
Hard
A.A nuclear recessive allele controls resistance through random segregation
C.A Y-linked allele controls resistance through the paternal lineage
D.An autosomal dominant allele controls resistance with full penetrance
Correct Answer: A maternally transmitted cytoplasmic determinant controls resistance
Explanation:
Persistent resemblance to the female parent in reciprocal crosses and backcrosses supports cytoplasmic inheritance, such as mitochondrial or plastid transmission.
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54A heteroplasmic mother carries 30% mutant mitochondrial DNA in blood. Her children show mutant loads of 5%, 28%, and 82% and differ greatly in disease severity. Which mechanism best explains this dispersion?
Cytoplasmic inheritance
Hard
A.A mitochondrial bottleneck followed by replicative segregation
B.Complete dominance of mutant mitochondrial genomes in each child
C.Crossing over between maternal and paternal mitochondria
D.Independent assortment of two nuclear mitochondrial loci
Correct Answer: A mitochondrial bottleneck followed by replicative segregation
Explanation:
Sampling relatively few mitochondrial genomes during oogenesis and their later random proliferation can produce large shifts in heteroplasmy among siblings.
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55A yeast petite mutant crossed with a wild-type strain yields almost exclusively petite descendants, but nuclear markers segregate normally. Which observation most strongly favors a cytoplasmic suppressive-petite mutation?
Cytoplasmic inheritance
Hard
A.A dominant nuclear allele remains linked to every wild-type marker
B.A mating-type allele prevents recombination across the mitochondrial genome
C.Petite mitochondria preferentially dominate the mixed cytoplasm after mating
D.A recessive nuclear allele segregates into half the meiotic products
Correct Answer: Petite mitochondria preferentially dominate the mixed cytoplasm after mating
Explanation:
Suppressive petites carry abnormal mitochondrial genomes that can outcompete wild-type mitochondrial DNA in the zygote, despite normal segregation of nuclear markers.
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56A snail's coiling direction is determined by the mother's nuclear genotype because gene products deposited in the egg establish early cleavage orientation. Why is this not cytoplasmic inheritance in the strict genetic sense?
Cytoplasmic inheritance
Hard
A.The phenotype results from heteroplasmy and random organelle segregation
B.The causal alleles reside in the nuclear genome despite a maternal phenotypic delay
C.The causal alleles reside in mitochondria but are expressed only after fertilization
D.The phenotype is transmitted through sperm cytoplasm rather than through the egg
Correct Answer: The causal alleles reside in the nuclear genome despite a maternal phenotypic delay
Explanation:
This is a maternal effect: maternal nuclear genes determine substances loaded into the egg. Cytoplasmic inheritance instead involves heritable extranuclear genomes or cytoplasmic elements.
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57A researcher correlates a visible reciprocal translocation with semisterility and maps its breakpoints using chromosome banding. Which discipline most directly integrates all parts of this investigation?
Introduction and definition of cytology, genetics, and cytogenetics
Hard
A.Biochemistry
B.Classical genetics
C.Cytogenetics
D.Cytology
Correct Answer: Cytogenetics
Explanation:
Cytogenetics links chromosome structure and behavior with inheritance and phenotype. Cytology alone emphasizes cells, while genetics alone need not directly visualize chromosomes.
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58Which statement most precisely distinguishes cytology from genetics while preserving their overlap?
Introduction and definition of cytology, genetics, and cytogenetics
Hard
A.Cytology and genetics are identical except that genetics excludes cell division
B.Cytology studies inheritance; genetics studies all nonheritable cellular structures
C.Cytology studies only chromosomes; genetics studies only DNA nucleotide sequences
D.Cytology studies cellular structure and processes; genetics studies heredity and variation
Correct Answer: Cytology studies cellular structure and processes; genetics studies heredity and variation
Explanation:
Cytology focuses broadly on cells, whereas genetics focuses on inheritance and variation. Their overlap includes chromosomes, cell division, and gene expression.
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59A phenotypically normal individual repeatedly produces conceptions with trisomy 21 caused by an inherited Robertsonian translocation. Which combined evidence best connects cytology, genetics, and cytogenetics?
Interrelation of cytology, genetics, and cytogenetics
Hard
Correct Answer: Microscopy identifies the rearrangement, pedigrees track transmission, and meiotic analysis explains imbalance
Explanation:
Cellular observation reveals chromosome architecture, genetic analysis traces inheritance, and cytogenetic study explains how meiotic segregation generates unbalanced gametes.
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60A deletion is too small for routine karyotyping but is suspected from a Mendelian phenotype and developmental abnormalities. Which strategy best integrates the three fields?
Interrelation of cytology, genetics, and cytogenetics
Hard
A.Use phenotype and pedigree data to target locus-specific FISH or chromosomal microarray analysis
B.Use a testcross alone to determine the physical size and endpoints of the deletion
C.Use mitochondrial sequencing to detect every nuclear copy-number change directly
D.Use light microscopy alone to infer the deleted nucleotide sequence from cell shape
Correct Answer: Use phenotype and pedigree data to target locus-specific FISH or chromosomal microarray analysis
Explanation:
Genetic evidence localizes the suspected region, while cytogenetic or genomic visualization detects a submicroscopic copy-number loss that routine cytology may miss.
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