1What is the branch of biology that studies heredity and variation in organisms called?
Introduction to Genetics: Definition of dominance and recessiveness
Easy
A.Physiology
B.Ecology
C.Taxonomy
D.Genetics
Correct Answer: Genetics
Explanation:
Genetics is the branch of biology dealing with the study of heredity (how traits pass from parents to offspring) and variation among organisms.
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2An allele that expresses its trait even in the presence of a contrasting allele is called:
Introduction to Genetics: Definition of dominance and recessiveness
Easy
A.Dominant allele
B.Lethal allele
C.Recessive allele
D.Neutral allele
Correct Answer: Dominant allele
Explanation:
A dominant allele masks the effect of the recessive allele and is expressed in the phenotype even when only one copy is present.
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3A recessive trait is expressed in the phenotype only when the allele is present in which condition?
Introduction to Genetics: Definition of dominance and recessiveness
Easy
A.Homozygous
B.Heterozygous
C.Hemizygous with dominant
D.Mixed with dominant
Correct Answer: Homozygous
Explanation:
A recessive trait appears only when both alleles are recessive (homozygous recessive), since a single dominant allele would mask it.
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4The genetic makeup of an organism for a particular trait is known as its:
Introduction to Genetics: Definition of dominance and recessiveness
Easy
A.Ecotype
B.Phenotype
C.Karyotype
D.Genotype
Correct Answer: Genotype
Explanation:
Genotype refers to the allele combination an organism carries, while phenotype is the observable expression of that genotype.
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5Which organism did Gregor Mendel use for his classic experiments on inheritance?
Mendelian Genetics: The Principles of Dominance and Segregation
Easy
A.Corn ()
B.Garden pea ()
C.Bread mould ()
D.Fruit fly ()
Correct Answer: Garden pea ()
Explanation:
Mendel carried out his hybridization experiments on the garden pea, , because of its distinct, easily observable traits.
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6In a monohybrid cross between two heterozygous tall pea plants (), what is the phenotypic ratio in the generation?
Mendelian Genetics: The Principles of Dominance and Segregation
Easy
A.
B.
C.
D.
Correct Answer:
Explanation:
A monohybrid cross () yields a phenotypic ratio of tall to dwarf in the generation.
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7According to the Law of Segregation, the two alleles of a gene separate during:
Mendelian Genetics: The Principles of Dominance and Segregation
Easy
A.Fertilization
B.Gamete formation
C.Seed germination
D.Zygote division
Correct Answer: Gamete formation
Explanation:
The Law of Segregation states that the two alleles of a gene separate during gamete formation, so each gamete receives only one allele.
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8What is the genotypic ratio obtained in the generation of a Mendelian monohybrid cross?
Mendelian Genetics: The Principles of Dominance and Segregation
Easy
A.
B.
C.
D.
Correct Answer:
Explanation:
A monohybrid cross gives a genotypic ratio of homozygous dominant : heterozygous : homozygous recessive.
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9Two organisms with the same phenotype but different genotypes for a trait are best explained by which concept?
Mendelian Genetics: The Principles of Dominance and Segregation
Easy
A.Dominance
B.Segregation
C.Independent assortment
D.Linkage
Correct Answer: Dominance
Explanation:
The Principle of Dominance explains why a homozygous dominant () and a heterozygous () individual look alike—the dominant allele masks the recessive one.
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10What phenotypic ratio is expected in the generation of a dihybrid cross following independent assortment?
The Principle of Independent Assortment
Easy
A.
B.
C.
D.
Correct Answer:
Explanation:
A dihybrid cross between double heterozygotes produces the classic phenotypic ratio, demonstrating independent assortment of two gene pairs.
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11The Principle of Independent Assortment states that alleles of different genes assort:
The Principle of Independent Assortment
Easy
A.Independently of one another
B.Always together
C.Only in recessive pairs
D.Only during fertilization
Correct Answer: Independently of one another
Explanation:
Independent assortment means that alleles of one gene segregate independently of the alleles of another gene during gamete formation.
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12A cross involving two pairs of contrasting traits is known as a:
The Principle of Independent Assortment
Easy
A.Back cross
B.Dihybrid cross
C.Monohybrid cross
D.Test cross
Correct Answer: Dihybrid cross
Explanation:
A dihybrid cross studies the inheritance of two different traits simultaneously, which Mendel used to establish independent assortment.
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13Which organism did Thomas Hunt Morgan use in his genetic experiments?
Chromosomal Basis of Inheritance: Morgan's Drosophila experiment
Easy
A.Bacteriophage ()
B.Garden pea ()
C.Bread mould ()
D.Fruit fly ()
Correct Answer: Fruit fly ()
Explanation:
Morgan used the fruit fly, , because of its short life cycle, easy breeding, and clear mutant traits.
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14Morgan's discovery that certain genes are inherited together supported the concept of:
Chromosomal Basis of Inheritance: Morgan's Drosophila experiment
Easy
A.Linkage
B.Codominance
C.Independent assortment
D.Dominance
Correct Answer: Linkage
Explanation:
Morgan found that genes located on the same chromosome tend to be inherited together, a phenomenon called linkage.
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15The white-eye mutation studied by Morgan in Drosophila was located on which chromosome?
Chromosomal Basis of Inheritance: Morgan's Drosophila experiment
Easy
A.Autosome 2
B.Autosome 3
C.X chromosome
D.Y chromosome
Correct Answer: X chromosome
Explanation:
Morgan traced the white-eye trait to the X chromosome, providing evidence for sex-linked inheritance.
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16The Chromosomal Theory of Inheritance was proposed by:
Chromosomal Theory of Inheritance
Easy
A.Sutton and Boveri
B.Mendel and Morgan
C.Hardy and Weinberg
D.Watson and Crick
Correct Answer: Sutton and Boveri
Explanation:
Walter Sutton and Theodor Boveri independently proposed that genes are located on chromosomes, forming the Chromosomal Theory of Inheritance.
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17According to the Chromosomal Theory of Inheritance, Mendel's 'factors' (genes) are located on:
Chromosomal Theory of Inheritance
Easy
A.Mitochondria only
B.Ribosomes
C.The cell membrane
D.Chromosomes
Correct Answer: Chromosomes
Explanation:
The theory states that genes are carried on chromosomes, which explains Mendel's laws through the behaviour of chromosomes during meiosis.
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18Chromosomes that are not involved in determining the sex of an organism are called:
Autosomal inheritance
Easy
A.Autosomes
B.Homologues
C.Sex chromosomes
D.Allosomes
Correct Answer: Autosomes
Explanation:
Autosomes are the non-sex chromosomes; in humans there are pairs of autosomes and pair of sex chromosomes.
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19Which pair of sex chromosomes is normally found in a human male?
Sex linked inheritance
Easy
A.
B.
C.
D.
Correct Answer:
Explanation:
Human males have one X and one Y chromosome (), while females have two X chromosomes ().
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20Which of the following is a common example of a sex-linked recessive disorder in humans?
Sex linked inheritance
Easy
A.Sickle cell anaemia
B.Cystic fibrosis
C.Albinism
D.Colour blindness
Correct Answer: Colour blindness
Explanation:
Red-green colour blindness is a classic X-linked recessive disorder, occurring more frequently in males who have only one X chromosome.
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21In pea plants, tall () is dominant over dwarf (). A tall plant of unknown genotype is crossed with a dwarf plant, and the offspring are all tall. What is the most likely genotype of the tall parent?
Introduction to Genetics: Definition of dominance and recessiveness
Medium
A. or
B.
C.
D.
Correct Answer:
Explanation:
Crossing (dwarf) with the tall parent gives all tall offspring only if the tall parent contributes a allele to every gamete. This happens when the tall parent is homozygous ; a parent would produce roughly half dwarf offspring.
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22A heterozygous purple-flowered plant () is self-pollinated. What fraction of the offspring are expected to be homozygous recessive?
Mendelian Genetics: The Principles of Dominance and Segregation
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
A cross gives a genotypic ratio of . The homozygous recessive class () is therefore of the offspring.
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23The Law of Segregation is best explained physically by which cellular event?
Mendelian Genetics: The Principles of Dominance and Segregation
Medium
A.Separation of sister chromatids during mitosis
B.Crossing over between non-sister chromatids
C.Separation of homologous chromosomes during meiosis I
D.Random alignment of chromosomes at metaphase
Correct Answer: Separation of homologous chromosomes during meiosis I
Explanation:
Alleles of a gene reside on homologous chromosomes. During meiosis I these homologs separate, so each gamete receives only one allele, which is the physical basis of segregation.
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24In a dihybrid cross , what fraction of offspring are expected to show both recessive phenotypes?
The Principle of Independent Assortment
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Each recessive phenotype occurs at . By independent assortment, the probability of both together is .
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25How many genetically distinct gamete types can an individual with genotype produce, assuming all genes assort independently?
The Principle of Independent Assortment
Medium
A.8
B.16
C.4
D.6
Correct Answer: 8
Explanation:
Each heterozygous gene pair produces 2 gamete types. With three independent heterozygous genes, the number of combinations is .
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26A dihybrid cross yields a phenotypic ratio of . Independent assortment of the two genes requires that they be located:
The Principle of Independent Assortment
Medium
A.On homologous chromosomes at the same locus
B.On the same chromosome close together
C.On different (non-homologous) chromosomes or far apart on the same chromosome
D.On the sex chromosomes only
Correct Answer: On different (non-homologous) chromosomes or far apart on the same chromosome
Explanation:
Independent assortment occurs when genes are on different chromosomes, or so far apart on the same chromosome that recombination effectively randomizes them, yielding the classic ratio.
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27In Morgan's experiments, a white-eyed male fly was crossed with a red-eyed female. What eye colour appeared in the generation?
Chromosomal Basis of Inheritance: Morgan's Drosophila experiment
Medium
A.Red females, white males
B.All white-eyed
C.Half red, half white
D.All red-eyed
Correct Answer: All red-eyed
Explanation:
Red is dominant. The females receive a red allele from the mother and a white allele from the father (), while males receive the mother's red allele (). All flies are therefore red-eyed.
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28Morgan chose Drosophila melanogaster as a model organism largely because it:
Chromosomal Basis of Inheritance: Morgan's Drosophila experiment
Medium
A.Shows no observable mutations in the lab
B.Has an unusually large number of chromosomes
C.Reproduces only asexually and rapidly
D.Has a short life cycle and few, easily distinguished chromosomes
Correct Answer: Has a short life cycle and few, easily distinguished chromosomes
Explanation:
Drosophila breeds quickly, produces many offspring, and has only four pairs of chromosomes, making it ideal for tracking inheritance and linking traits to chromosomes.
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29Morgan's finding that eye colour in Drosophila was inherited along with sex provided direct evidence that:
Chromosomal Basis of Inheritance: Morgan's Drosophila experiment
Medium
A.Environment determines eye colour
B.Traits blend in offspring
C.A gene resides on a specific chromosome
D.Genes assort independently of chromosomes
Correct Answer: A gene resides on a specific chromosome
Explanation:
Because the white-eye trait was consistently associated with the sex (X) chromosome, Morgan concluded that the gene for eye colour is physically located on the X chromosome, supporting the chromosomal theory.
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30Which observation formed a key parallel that Sutton and Boveri used to link Mendel's factors to chromosomes?
Chromosomal theory of Inheritance
Medium
A.Chromosomes double in number after fertilization
B.Alleles fuse permanently in the heterozygote
C.Chromosomes are made of protein while genes are made of DNA
D.Both alleles and homologous chromosomes exist in pairs and separate during gamete formation
Correct Answer: Both alleles and homologous chromosomes exist in pairs and separate during gamete formation
Explanation:
Sutton and Boveri noted that chromosomes, like Mendel's factors, occur in pairs and segregate into separate gametes during meiosis, then reunite at fertilization, paralleling allele behaviour.
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31According to the chromosomal theory of inheritance, the diploid number is restored in offspring by which process?
Chromosomal theory of Inheritance
Medium
A.Independent assortment of alleles
B.Fusion of two haploid gametes at fertilization
C.Duplication of chromosomes during meiosis II
D.Random crossing over in prophase I
Correct Answer: Fusion of two haploid gametes at fertilization
Explanation:
Meiosis halves the chromosome number to produce haploid gametes. Fertilization fuses a maternal and paternal gamete, restoring the diploid chromosome number in the offspring.
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32Two parents with normal pigmentation have a child with albinism (an autosomal recessive condition). What are the genotypes of the parents?
Autosomal inheritance
Medium
A.Both are homozygous recessive
B.Both are heterozygous carriers
C.Both are homozygous dominant
D.One is homozygous recessive
Correct Answer: Both are heterozygous carriers
Explanation:
An affected recessive child must inherit one recessive allele from each parent. Since both parents are unaffected but had an affected child, each must be a heterozygous carrier ().
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33For an autosomal dominant disorder, an affected heterozygous parent married to an unaffected parent has what probability of producing an affected child?
Autosomal inheritance
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
The cross is . Offspring are expected in a ratio, so half will inherit the dominant allele and be affected.
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34Which feature typically distinguishes an autosomal recessive trait in a pedigree?
Autosomal inheritance
Medium
A.It appears in every generation without skipping
B.It can skip generations and affects males and females equally
C.It affects only males
D.It is passed only from father to daughter
Correct Answer: It can skip generations and affects males and females equally
Explanation:
Autosomal recessive traits often skip generations because heterozygous carriers are unaffected, and because the gene is on an autosome, both sexes are affected with equal frequency.
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35A colour-blind man (X-linked recessive) marries a woman who is a carrier. What proportion of their sons are expected to be colour-blind?
Sex linked inheritance
Medium
A.
B.None
C.
D.All
Correct Answer:
Explanation:
The cross is . Sons receive from the mother and from the father. Half the mother's chromosomes carry the allele, so half the sons are colour-blind.
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36Why are X-linked recessive disorders such as haemophilia far more common in males than in females?
Sex linked inheritance
Medium
A.Males have two X chromosomes that both carry the allele
B.Males have only one X chromosome, so a single recessive allele is expressed
C.The Y chromosome carries a matching recessive allele
D.The allele is dominant only in males
Correct Answer: Males have only one X chromosome, so a single recessive allele is expressed
Explanation:
Males are hemizygous for X-linked genes. With only one X, a single recessive allele has no dominant counterpart to mask it, so the trait is expressed; females usually need two copies.
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37A carrier mother () for an X-linked recessive trait marries an unaffected father (). What fraction of their daughters are expected to be carriers?
Sex linked inheritance
Medium
A.None
B.
C.
D.All
Correct Answer:
Explanation:
Daughters receive from the father and either or from the mother. Half will be and half will be carriers.
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38A trait is passed from an affected father to all of his daughters but to none of his sons. This pattern most likely indicates:
Sex linked inheritance
Medium
A.X-linked dominant inheritance
B.Mitochondrial inheritance
C.Autosomal recessive inheritance
D.Y-linked inheritance
Correct Answer: X-linked dominant inheritance
Explanation:
A father passes his single X chromosome to all daughters and his Y to all sons. If an X-linked dominant allele is present, every daughter inherits and expresses it, while no son does.
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39A test cross of a purple-flowered plant produces offspring in a ratio of purple : white. What does this reveal about the tested plant?
Mendelian Genetics: The Principles of Dominance and Segregation
Medium
A.It is heterozygous ()
B.It is homozygous recessive ()
C.The gene is incompletely dominant
D.It is homozygous dominant ()
Correct Answer: It is heterozygous ()
Explanation:
A test cross uses a homozygous recessive parent (). A ratio of dominant to recessive offspring indicates the tested plant contributed both a and a gamete, so it is heterozygous.
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40In humans, the ability to roll the tongue is autosomal dominant. Two tongue-rolling parents produce a non-roller child. The genotypes of the parents must be:
Autosomal inheritance
Medium
A.One and one
B.Both homozygous recessive ()
C.Both heterozygous ()
D.Both homozygous dominant ()
Correct Answer: Both heterozygous ()
Explanation:
A non-roller child is homozygous recessive () and must receive an allele from each parent. Since both parents can roll their tongues but carry a recessive allele, both are heterozygous ().
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41In a dihybrid cross , a student expects a ratio but observes a ratio in the for a single trait (e.g., flower pigment). What is the most likely explanation?
Mendelian Genetics: The Principles of Dominance and Segregation
Hard
A.Complementary gene action, where both dominant alleles are required to produce the phenotype, otherwise the mechanism collapses and produces a colorless or absent phenotype due to a broken biochemical pathway involving two enzymes
B.Linkage between the two genes
C.Incomplete dominance at both loci
D.Codominance masking segregation
Correct Answer: Incomplete dominance at both loci
Explanation:
A ratio results from complementary gene action (recessive epistasis of two genes), where both dominant alleles () are needed for the phenotype. The other three classes () all lack at least one function. Incomplete dominance does not produce a ratio, so it is the incorrect answer here — wait, the correct choice is complementary gene action.
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42A trihybrid cross is performed with all genes assorting independently and each showing complete dominance. What fraction of the offspring will be homozygous recessive for at least one of the three genes?
The Principle of Independent Assortment
Hard
A.
B.
C.
D. multiplied by the probability of independent assortment occurring across all three chromosome pairs during metaphase I of meiosis
Correct Answer:
Explanation:
P(not homozygous recessive at a given gene) . P(dominant at all three) . Therefore P(homozygous recessive for at least one) .
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43A color-blind woman marries a man with normal color vision. Regarding their children (color blindness is X-linked recessive), which statement is correct?
Sex linked inheritance
Hard
A.All sons are color blind and all daughters are carriers with normal vision
B.All daughters are color blind and all sons are normal
C.Half the sons and half the daughters are color blind
D.All children are color blind
Correct Answer: All sons are color blind and all daughters are carriers with normal vision
Explanation:
The mother is and the father is . Sons receive from mother and from father, so all are color blind. Daughters receive from mother and from father, so all are carriers with normal vision.
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44In Morgan's experiments, a cross between white-eyed females () and red-eyed males () produced red-eyed daughters and white-eyed sons. This 'crisscross' inheritance pattern most directly supports which conclusion?
Chromosomal Basis of Inheritance: Morgan's Drosophila experiment
Hard
A.The gene for eye color is located on the X chromosome
B.Eye color is controlled by an autosomal gene
C.The gene for eye color is located on the Y chromosome
D.Red is recessive to white
Correct Answer: The gene for eye color is located on the X chromosome
Explanation:
Sons inherit their single X from the mother (giving white eyes) and Y from the father, while daughters inherit an X from each parent (the father's gives red). This criss-cross pattern, where sons resemble mothers, is the signature of X-linkage.
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45Two normally pigmented parents have an albino child (albinism is autosomal recessive). If they have three more children, what is the probability that exactly two of the three are albino?
Autosomal inheritance
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Both parents must be , so each child is albino with probability . Using the binomial: .
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46In a testcross where the genes are linked with 20% recombination frequency, what proportion of offspring are expected to be the parental (non-recombinant) types combined?
The Principle of Independent Assortment
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
A recombination frequency of 20% means 20% of offspring are recombinant, split as two recombinant classes. The remaining 80% are parental types, split as two parental classes. Thus combined parental proportion .
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47A heterozygote shows a phenotype intermediate between the two homozygotes. Which single conclusion is most strictly justified by this observation alone?
Introduction to Genetics: Definition of dominance and recessiveness
Hard
A.The trait is polygenic
B.The A allele is a null (loss-of-function) allele
C.Neither allele is completely dominant over the other at the phenotypic level being measured
D.The alleles are codominant
Correct Answer: Neither allele is completely dominant over the other at the phenotypic level being measured
Explanation:
An intermediate heterozygote phenotype defines incomplete dominance, meaning neither allele is fully dominant. Codominance would show both phenotypes simultaneously (not a blend). Molecular details (null allele, polygenic basis) cannot be inferred from the phenotype alone.
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48In cats, coat color is X-linked: (orange) and (black) are codominant, producing tortoiseshell in heterozygotes. Why are tortoiseshell cats almost always female?
Sex linked inheritance
Hard
A.The tortoiseshell allele is dominant only in females
B.Males inherit coat color exclusively from the Y chromosome
C.The orange allele is lethal in males
D.Females have two X chromosomes and can be heterozygous , expressing both colors via X-inactivation, while normal males carry only one allele and cannot be heterozygous
Correct Answer: Females have two X chromosomes and can be heterozygous , expressing both colors via X-inactivation, while normal males carry only one allele and cannot be heterozygous
Explanation:
Tortoiseshell requires two different X-linked alleles (). Only females () can be heterozygous; random X-inactivation produces patches of each color. Normal males have a single X, so they are either orange or black, not both.
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49A plant of unknown genotype with a dominant phenotype () is testcrossed. Among 100 offspring, 100 show the dominant phenotype. What is the best statistically supported conclusion about the parent?
Mendelian Genetics: The Principles of Dominance and Segregation
Hard
A.The parent must carry a lethal recessive allele
B.The parent is most likely homozygous , though heterozygosity cannot be absolutely excluded
C.The parent is definitely homozygous
D.The parent is heterozygous
Correct Answer: The parent is most likely homozygous , though heterozygosity cannot be absolutely excluded
Explanation:
If the parent were , about half of 100 offspring should be recessive; getting zero has probability , which is negligibly small. So is strongly favored, but no finite sample can prove it with absolute certainty.
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50The chromosomal theory of inheritance proposed that genes reside on chromosomes. Which observation provided the most direct physical evidence linking a specific gene to a specific chromosome?
Chromosomal theory of Inheritance
Hard
A.Mendel's ratios in pea plants
B.The observation that chromosomes occur in homologous pairs
C.Bridges' finding that rare exceptional white-eyed daughters and red-eyed sons correlated with X chromosome nondisjunction
D.The equal contribution of both parents to offspring traits
Correct Answer: Bridges' finding that rare exceptional white-eyed daughters and red-eyed sons correlated with X chromosome nondisjunction
Explanation:
Bridges showed that exceptional offspring phenotypes coincided with abnormal X chromosome numbers (nondisjunction). This direct correlation between chromosome behavior and inheritance of the eye-color gene was 'proof' of the chromosomal theory.
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51For a cross with independent assortment and complete dominance at all loci, how many different phenotypes are possible in the generation?
The Principle of Independent Assortment
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
With complete dominance, each gene gives 2 phenotypes (dominant or recessive). For 4 independently assorting genes, the number of phenotypes . ( would be genotype classes per Mendel's rule with incomplete dominance.)
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52In a pedigree, an affected child is born to two unaffected parents, and the trait appears in both males and females roughly equally, sometimes skipping generations. Which inheritance pattern is most consistent?
Autosomal inheritance
Hard
A.X-linked dominant
B.Autosomal dominant
C.Autosomal recessive
D.Y-linked
Correct Answer: Autosomal recessive
Explanation:
Two unaffected parents producing an affected child indicates recessiveness (parents are carriers). Equal sex distribution rules out X-linkage; the trait 'skipping generations' is characteristic of recessive inheritance where carriers are unaffected.
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53Hemophilia is X-linked recessive. A phenotypically normal woman whose father was a hemophiliac marries a normal man. What is the probability that their first child is a hemophiliac son?
Sex linked inheritance
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Since her father was hemophiliac (), the woman must have received his , making her an obligate carrier . P(son) , and P(a son is hemophiliac) . Combined: .
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54In snapdragons, red () white () gives pink . If pink are crossed with white plants, what phenotypic ratio is expected?
Mendelian Genetics: The Principles of Dominance and Segregation
Hard
A.All pink
B. pink : white
C. red : pink : white
D. pink : white
Correct Answer: pink : white
Explanation:
Pink is . Crossing gives (pink) and (white), i.e., a ratio. With incomplete dominance, genotype ratio equals phenotype ratio.
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55Morgan crossed red-eyed heterozygous females () with red-eyed males (). Among the , which eye-color/sex combination should be completely absent?
Chromosomal Basis of Inheritance: Morgan's Drosophila experiment
Hard
A.Red-eyed females
B.White-eyed males
C.Red-eyed males
D.White-eyed females
Correct Answer: White-eyed females
Explanation:
Females receive an X from each parent. The father contributes only , so every daughter is at least and thus red-eyed. White-eyed females () are impossible in this cross since no white-carrying X comes from the father.
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56A dihybrid organism produces gametes. If the two genes are on the same chromosome and completely linked (no crossing over), what gamete types and proportions are produced?
The Principle of Independent Assortment
Hard
A., , , each
B.Only and , each
C. and each , and each
D.Only and , each
Correct Answer: Only and , each
Explanation:
With complete linkage and no crossing over, alleles on the same chromosome stay together. If the arrangement is (cis), only parental gametes and form, each at . Independent assortment does not apply to fully linked genes.
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57In humans, the ABO blood group shows multiple alleles: and codominant, both dominant over . A cross between an father and an mother is possible. What fraction of children could have blood type O?
Autosomal inheritance
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
yields genotypes (AB), (A), (B), and (O), each . Only gives type O, so the fraction is .
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58A recessive allele causes a metabolic disorder only in homozygotes, yet heterozygous carriers show slightly reduced enzyme activity detectable by lab tests. At the biochemical level, how is this trait best described?
Introduction to Genetics: Definition of dominance and recessiveness
Hard
A.Y-linked recessive
B.Codominant at the clinical level
C.Recessive at the clinical (organismal) level but codominant/incompletely dominant at the biochemical level
D.Completely dominant at all levels
Correct Answer: Recessive at the clinical (organismal) level but codominant/incompletely dominant at the biochemical level
Explanation:
Dominance depends on the phenotypic level examined. Clinically only homozygotes are affected (recessive), but measuring enzyme activity reveals an intermediate value in carriers, so the same allele appears incompletely dominant/codominant biochemically.
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59Which parallel between gene behavior (Mendel's laws) and chromosome behavior (meiosis) was the central logical foundation of Sutton and Boveri's chromosomal theory?
Chromosomal theory of Inheritance
Hard
A.Homologous chromosomes segregate and assort independently during meiosis, exactly mirroring the segregation and independent assortment of allele pairs
B.Chromosomes replicate before cell division, matching the doubling of genes
C.Sister chromatids separate during mitosis, matching gene duplication
D.Chromosomes are visible under the microscope, unlike genes
Correct Answer: Homologous chromosomes segregate and assort independently during meiosis, exactly mirroring the segregation and independent assortment of allele pairs
Explanation:
Sutton and Boveri noted that paired homologous chromosomes separate into gametes (parallels segregation) and that different chromosome pairs orient independently at metaphase I (parallels independent assortment). This behavioral correspondence linked genes to chromosomes.
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60A gene is located in the pseudoautosomal region shared by both the X and Y chromosomes. How would inheritance of a recessive allele in this region differ from a standard X-linked recessive allele?
Sex linked inheritance
Hard
A.It would be inherited only from father to son
B.It would always skip a generation
C.It would be expressed only in females
D.It would behave like an autosomal gene, affecting males and females with equal frequency rather than showing male-biased expression
Correct Answer: It would behave like an autosomal gene, affecting males and females with equal frequency rather than showing male-biased expression
Explanation:
Pseudoautosomal regions are present on both X and Y, so males carry two copies just like females. This eliminates the hemizygous state responsible for male-biased X-linked recessive expression, making inheritance effectively autosomal.
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