Deck 6: Matters of Sex
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Deck 6: Matters of Sex
1
The Y chromosome was challenging to sequence because
A)it is very small.
B)the sequence has many sites of high symmetry called palindromes.
C)it is very similar to the X chromosome.
D)not enough men volunteered to have their Y chromosomes sequenceD.
A)it is very small.
B)the sequence has many sites of high symmetry called palindromes.
C)it is very similar to the X chromosome.
D)not enough men volunteered to have their Y chromosomes sequenceD.
B
2
The two interesting types of people who led researchers to discovery of the SRY gene were
A)physicists and chemists.
B)XX males and XY females.
C)XY males and XX females.
D)XXX females and XYY males.
A)physicists and chemists.
B)XX males and XY females.
C)XY males and XX females.
D)XXX females and XYY males.
B
3
The male-specific region of the Y chromosome
A)lies between the two pseudoautosomal regions.
B)is completely identical to its counterparts on the X chromosome.
C)has an abundance of protein-encoding genes.
D)has regions called amplicons that include few palindromic sequences.
A)lies between the two pseudoautosomal regions.
B)is completely identical to its counterparts on the X chromosome.
C)has an abundance of protein-encoding genes.
D)has regions called amplicons that include few palindromic sequences.
A
4
Femaleness or maleness is genetically set at
A)conception.
B)fertilization.
C)the embryonic period.
D)the fetal perioD.
A)conception.
B)fertilization.
C)the embryonic period.
D)the fetal perioD.
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5
Renfrew is a male boa constrictor.He has two copies of a sex chromosome called Z chromosome.Renfrew is a member of the _____ sex.
A)homozygous
B)homogametic
C)hemizygous
D)heterozygous
A)homozygous
B)homogametic
C)hemizygous
D)heterozygous
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6
A male with a missing SRY gene would be phenotypically a
A)female.
B)male.
C)a female until age 12,and then a male.
D)a male until age 12,and then a female.
A)female.
B)male.
C)a female until age 12,and then a male.
D)a male until age 12,and then a female.
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7
Unspecialized structures in embryos that develop into female sex organs are the
A)Mullerian ducts.
B)Wolffian ducts.
C)oocytes.
D)Barr bodies.
A)Mullerian ducts.
B)Wolffian ducts.
C)oocytes.
D)Barr bodies.
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8
A daughter can inherit an X-linked recessive disorder when her father is affected and her mother is a carrier.
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9
Indifferent gonads develop
A)during the first two weeks of prenatal development.
B)during the fifth week of prenatal development.
C)during the ninth week of prenatal development.
D)when the embryo becomes a fetus.
A)during the first two weeks of prenatal development.
B)during the fifth week of prenatal development.
C)during the ninth week of prenatal development.
D)when the embryo becomes a fetus.
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10
The idea that femaleness is simply what happens when an embryo does not develop as a male is no longer supported by evidence because of the discovery of
A)the SRY gene in females.
B)genes whose expression is necessary for female structures to develop.
C)gene that suppress all of the genes on a female's Y chromosome.
D)hormones that suppress expression of SRY genes in females.
A)the SRY gene in females.
B)genes whose expression is necessary for female structures to develop.
C)gene that suppress all of the genes on a female's Y chromosome.
D)hormones that suppress expression of SRY genes in females.
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11
A gene on the Y chromosome that determines maleness is
A)ABO.
B)XIST.
C)SRY.
D)
E)BOY.
A)ABO.
B)XIST.
C)SRY.
D)
E)BOY.
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12
The pseudoautosomal regions of the Y chromosome correspond to
A)male-specific regions of the Y chromosome.
B)female-specific regions of the Y chromosome.
C)counterparts on the X chromosome with which they can cross over.
D)places on the interior of the nuclear membrane where the Y chromosome attaches during cell division.
A)male-specific regions of the Y chromosome.
B)female-specific regions of the Y chromosome.
C)counterparts on the X chromosome with which they can cross over.
D)places on the interior of the nuclear membrane where the Y chromosome attaches during cell division.
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13
In humans,if the SRY gene is not expressed,the unspecialized gonads develop into
A)testes.
B)ovaries.
C)a tumorous mass.
D)gametes.
A)testes.
B)ovaries.
C)a tumorous mass.
D)gametes.
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14
Human females are the _____ sex.
A)homozygous
B)homogametic
C)hemizygous
D)heterozygous
A)homozygous
B)homogametic
C)hemizygous
D)heterozygous
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15
Sex ratio at birth is called the _____ sex ratio.rev: 10_25_2013_QC_38233
A)primary
B)secondary
C)tertiary
D)quaternary
A)primary
B)secondary
C)tertiary
D)quaternary
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16
A boy developed signs of sexual maturity at age 3.A possible diagnosis is
A)XY female syndrome.
B)XX male syndrome.
C)congenital adrenal hyperplasia due to 21-hydroxylase deficiency.
D)pseudohermaphroditism due to 5-alpha reductase deficiency.
A)XY female syndrome.
B)XX male syndrome.
C)congenital adrenal hyperplasia due to 21-hydroxylase deficiency.
D)pseudohermaphroditism due to 5-alpha reductase deficiency.
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17
The calculation for determining sex ratio is
A)averaging the percentage of students who are female in many large school populations.
B)the number of males divided by the number of females multiplied by 1,000 for people of a particular age.
C)1,000 minus the number of whichever sex is in excess.
D)the number of Y chromosomes in a population divided by one-third the number of X chromosomes.
A)averaging the percentage of students who are female in many large school populations.
B)the number of males divided by the number of females multiplied by 1,000 for people of a particular age.
C)1,000 minus the number of whichever sex is in excess.
D)the number of Y chromosomes in a population divided by one-third the number of X chromosomes.
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18
Homosexuality
A)is seen only in humans.
B)reflects the input of a number of genes and environmental factors.
C)is inherited from a mutation on the X chromosome.
D)is only the result of environmental influences.
A)is seen only in humans.
B)reflects the input of a number of genes and environmental factors.
C)is inherited from a mutation on the X chromosome.
D)is only the result of environmental influences.
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19
Human males are the _____ sex.
A)homozygous
B)homogametic
C)heterogametic
D)heterozygous
A)homozygous
B)homogametic
C)heterogametic
D)heterozygous
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20
Indifferent gonads are
A)the gonads of people who have no interest in having sex.
B)paired structures in the embryo that can develop as either testes or ovaries.
C)paired structures in the embryo that follow a male developmental program and a female pathway in the same person at the same time.
D)the gonads that develop when a person uses birth control.
A)the gonads of people who have no interest in having sex.
B)paired structures in the embryo that can develop as either testes or ovaries.
C)paired structures in the embryo that follow a male developmental program and a female pathway in the same person at the same time.
D)the gonads that develop when a person uses birth control.
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21
Number of eggs laid per week and milk yield are traits that are
A)sex-linked.
B)sex-limited.
C)sex-influenced.
D)sex-driven.
A)sex-linked.
B)sex-limited.
C)sex-influenced.
D)sex-driven.
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22
X-linked genes have different patterns of expression in females and males because
A)they are suppressed in males.
B)they are expressed in females only.
C)males have only one copy of these genes.
D)they determine maleness or femaleness.
A)they are suppressed in males.
B)they are expressed in females only.
C)males have only one copy of these genes.
D)they determine maleness or femaleness.
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23
The probability that a boy whose mother is heterozygous for an X-linked trait inherits the recessive allele is
A)1/16.
B)1/8.
C)1/4.
D)1/2.
A)1/16.
B)1/8.
C)1/4.
D)1/2.
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24
A daughter can inherit an X-linked recessive disorder if
A)her mother is a carrier and her father has the disorder.
B)her mother is affected with the disorder.
C)her father is hemizygous for the disorder and her mother is wild type.
D)her father is a carrier of the disorder.
A)her mother is a carrier and her father has the disorder.
B)her mother is affected with the disorder.
C)her father is hemizygous for the disorder and her mother is wild type.
D)her father is a carrier of the disorder.
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25
Sean has congenital generalized hypertrichosis,an X-linked dominant condition that produces dense hair on the face and upper body.He can pass this trait
A)definitely to a daughter and definitely not to a son.
B)definitely to a son and definitely not to a daughter.
C)with equal probability to a son or daughter.
D)with a probability of 1/2 to a son and 1/4 to a daughter.
A)definitely to a daughter and definitely not to a son.
B)definitely to a son and definitely not to a daughter.
C)with equal probability to a son or daughter.
D)with a probability of 1/2 to a son and 1/4 to a daughter.
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26
X-linked dominant traits are typically expressed
A)much more severely in females because they have two X chromosomes.
B)much more severely in males because they have two Y chromosomes.
C)much more severely in males because they have only one X chromosome.
D)only if X-linked recessive conditions with similar symptoms are also inheriteD.
A)much more severely in females because they have two X chromosomes.
B)much more severely in males because they have two Y chromosomes.
C)much more severely in males because they have only one X chromosome.
D)only if X-linked recessive conditions with similar symptoms are also inheriteD.
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27
Cliff has colorblindness and icthyosis,which causes scaly skin.Both traits are X-linked recessive.The probability that he transmits both traits to his sons is
A)0
B)1/4
C)1/2
D)3/4
A)0
B)1/4
C)1/2
D)3/4
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28
Microphthalmia is a condition that causes chickens to have very small eyes,but it only appears in hens.The condition is autosomal recessive.Microphthalmia is sex-influenced and not sex-limited because
A)only females express the trait.
B)only males express the trait.
C)it is not transmitted on a sex chromosome.
D)both sexes have eyeballs.
A)only females express the trait.
B)only males express the trait.
C)it is not transmitted on a sex chromosome.
D)both sexes have eyeballs.
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29
In males,genes on the X chromosome are
A)expressed.
B)disease-causing.
C)mutant.
D)autosomal.
A)expressed.
B)disease-causing.
C)mutant.
D)autosomal.
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30
An allele that is dominant in one sex but recessive in the other is
A)X-linked.
B)sex-limited.
C)sex-influenced.
D)Y-linkeD.
A)X-linked.
B)sex-limited.
C)sex-influenced.
D)Y-linkeD.
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31
Sixteen-year-old Rhapsody has just learned that her younger brother Clyde is colorblind.Although she knows she has color vision because her cat,Juice,is clearly orange,and she reads that nearly all people with colorblindness are boys,she is concerned about her own sons one day.If she is a carrier for colorblindness,then the risk that a son of hers is colorblind is
A)dependent on the genes the child's father contributes.
B)1/8.
C)1/4.
D)1/2.
A)dependent on the genes the child's father contributes.
B)1/8.
C)1/4.
D)1/2.
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32
A human male inherits
A)an X chromosome from both parents.
B)an X chromosome from his mother and a Y chromosome from his father.
C)both X and Y chromosomes from his father.
D)his father's Y chromosome and an X chromosome from either his father or mother.
A)an X chromosome from both parents.
B)an X chromosome from his mother and a Y chromosome from his father.
C)both X and Y chromosomes from his father.
D)his father's Y chromosome and an X chromosome from either his father or mother.
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33
Chloe has the scaly skin condition icthyosis,which is X-linked recessive.Which of the following is most likely true?
A)Her mother and father were both unaffected carriers.
B)Her mother was affected and her father was unaffected.
C)Her father was a carrier.
D)Her mother was a carrier and her father was affecteD.
A)Her mother and father were both unaffected carriers.
B)Her mother was affected and her father was unaffected.
C)Her father was a carrier.
D)Her mother was a carrier and her father was affecteD.
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34
A gene that determines the heaviness of a man's beard is
A)X-linked.
B)sex-limited.
C)sex-influenced.
D)Y-linkeD.
A)X-linked.
B)sex-limited.
C)sex-influenced.
D)Y-linkeD.
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35
In cattle,mahogany spots are dominant in males and recessive in females.This trait is
A)sex-linked.
B)sex-limited.
C)sex-influenced.
D)sexually determineD.
A)sex-linked.
B)sex-limited.
C)sex-influenced.
D)sexually determineD.
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36
Human males and females are genetically equivalent because
A)one of a female's two X chromosomes is inactivated.
B)males only have one X chromosome.
C)one X chromosome is inactive in male cells.
D)males are hemizygous.
A)one of a female's two X chromosomes is inactivated.
B)males only have one X chromosome.
C)one X chromosome is inactive in male cells.
D)males are hemizygous.
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37
The probability that the daughter of a woman with a dominant disease-causing allele on the X chromosome and a normal male will be affected with the disorder is
A)2/3.
B)1/2.
C)3/16.
D)1/3.
A)2/3.
B)1/2.
C)3/16.
D)1/3.
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38
Amed has scaly skin due to the X-linked recessive condition icthyosis.He is _____ for the trait.
A)autosomal dominant
B)heterozygous
C)homozygous
D)hemizygous
A)autosomal dominant
B)heterozygous
C)homozygous
D)hemizygous
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39
Plumage in chickens is of two varieties,a "hen" pattern and a "cock" pattern.They differ because the trait is sex-limited;males have different feather arrangements than females.The autosomal gene H controls the trait in this manner:
Henrietta is one of a flock of hens who has chicks with Boris,the lone rooster.He has tantalizingly beautiful plumage in the cock pattern.If Henrietta is genotype Hh,the probability that a male chick will have his father's gorgeous plumage is
A)1/8.
B)1/4.
C)1/2.
D)1/3.
Henrietta is one of a flock of hens who has chicks with Boris,the lone rooster.He has tantalizingly beautiful plumage in the cock pattern.If Henrietta is genotype Hh,the probability that a male chick will have his father's gorgeous plumage is
A)1/8.
B)1/4.
C)1/2.
D)1/3.
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40
A healthy man and a healthy woman have a son with Lesch-Nyhan syndrome,an X-linked recessive trait.What are the chances that a daughter of this couple will inherit Lesch-Nyhan syndrome?
A)0
B)1/4
C)1/2
D)3/4
A)0
B)1/4
C)1/2
D)3/4
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41
Prader-Willi and Angelman syndromes both arise from the same area of chromosome 15,illustrating
A)epistasis.
B)X inactivation.
C)genomic imprinting.
D)behavior modification.
A)epistasis.
B)X inactivation.
C)genomic imprinting.
D)behavior modification.
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42
X inactivation is controlled by
A)the SRY gene.
B)the XIST gene.
C)the XTASY gene.
D)the location of the spindle in mitosis.
A)the SRY gene.
B)the XIST gene.
C)the XTASY gene.
D)the location of the spindle in mitosis.
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43
In genomic imprinting,the expression of a genetic disorder depends on
A)the age of the mother when she became pregnant.
B)whether the trait is X-linked or autosomal.
C)which parent transmits the disease-causing allele.
D)the number of pseudoautosomal genes transmitteD.
A)the age of the mother when she became pregnant.
B)whether the trait is X-linked or autosomal.
C)which parent transmits the disease-causing allele.
D)the number of pseudoautosomal genes transmitteD.
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44
Imprinting disorders illustrate
A)epistasis.
B)epigenetics.
C)epidermics.
D)apogenetics.
A)epistasis.
B)epigenetics.
C)epidermics.
D)apogenetics.
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45
Tamryn has a son who has Duchenne muscular dystrophy,which is inherited as an X-linked recessive trait.At a molecular level,the disease is due to lack of the protein dystrophin.Tamryn participates in a study that looks at dystrophin levels in various muscles.The study samples cells from 10 different muscles.The study finds that some cells make dystrophin and some do not.An explanation for this finding is that
A)the mutation is only in some muscle cells.
B)Tamryn is making less dystrophin as she gets older.The study should be repeated at different ages.
C)the X chromosome that bears the mutation is turned on in some cells but off in others.
D)Tamryn does not have a Y chromosome.
A)the mutation is only in some muscle cells.
B)Tamryn is making less dystrophin as she gets older.The study should be repeated at different ages.
C)the X chromosome that bears the mutation is turned on in some cells but off in others.
D)Tamryn does not have a Y chromosome.
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46
In female mammals,
A)the maternally inherited X chromosome is shut off in every cell.
B)the paternally inherited X chromosome is shut off in some cells.
C)one X chromosome is shut off in a germline cell.
D)both SRY genes are activateD.
A)the maternally inherited X chromosome is shut off in every cell.
B)the paternally inherited X chromosome is shut off in some cells.
C)one X chromosome is shut off in a germline cell.
D)both SRY genes are activateD.
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47
A human cell with two Barr bodies and no Y chromosome is from
A)a male with two X chromosomes.
B)a female with three X chromosomes.
C)a chromosomally normal female.
D)a chromosomally normal male.
A)a male with two X chromosomes.
B)a female with three X chromosomes.
C)a chromosomally normal female.
D)a chromosomally normal male.
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48
Imprinting affects the phenotype when
A)both alleles of a gene are imprinted.
B)both alleles of a gene are inactivated or deleted.
C)one allele is imprinted and the other is inactivated or deleted.
D)an embryo arises from two female genomes or two male genomes.
A)both alleles of a gene are imprinted.
B)both alleles of a gene are inactivated or deleted.
C)one allele is imprinted and the other is inactivated or deleted.
D)an embryo arises from two female genomes or two male genomes.
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49
Marbles is a calico cat with a Manx tail.She wants to have kittens with a male calico,but can't find one.Male calicos are rare;the only ones have the sex chromosome constitution XXY.Male calicos are therefore rare because
A)all male cats have a dominant gene on the Y chromosome that masks the calico gene on the X chromosome.
B)most male cats only have one Y chromosome,so it cannot be shut off.
C)most male cats have only one X chromosome,so it cannot be shut off.
D)male calico cats lack sex chromosomes.
A)all male cats have a dominant gene on the Y chromosome that masks the calico gene on the X chromosome.
B)most male cats only have one Y chromosome,so it cannot be shut off.
C)most male cats have only one X chromosome,so it cannot be shut off.
D)male calico cats lack sex chromosomes.
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50
A carrier of an X-linked recessive trait who expresses the phenotype is called a(n)
A)manifesting homozygote.
B)manifesting mutant.
C)manifesting heterozygote.
D)imprinting heterozygote.
A)manifesting homozygote.
B)manifesting mutant.
C)manifesting heterozygote.
D)imprinting heterozygote.
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